Home
  >  
Section 19

EurekaMag PDF full texts Chapter 18,132



References:

Uhlik, M.T.; Temple, B.; Bencharit, S. 2005: Structural and Evolutionary Division of Phosphotyrosine Binding (PTB) Domains. Journal of Molecular Biology 345(1): 20
Bienstock, R.J.; Skorvaga, M.; Mandavilli, B.S. 2003: Structural and Fucntional Characterization of the Human DNA Repair Helicase XPD by Comparative Molecular Modeling and Site-directed Mutagenesis of the Bacterial Repair Protein UvrB. Journal of Biological Chemistry 278(7): 09-16
Xing, L.; Huhtala, M.; Pietiainen, V. 2004: Structural and Functional Analysis of Integrin a2I Domain Interaction with Echovirus 1. Journal of Biological Chemistry 279(12): 632-638
Watkins, H.A.; Baker, E.N. 2006: Structural and functional analysis of Rv3214 from Mycobacterium tuberculosis, a protein with conflicting functional annotations, leads to its characterization as a phosphatase. Journal of Bacteriology 188(10): 3589-3599
Saijo-Hamano, Y.; Minamino, T.; Macnab, R.M.; Namba, K. 2004: Structural and functional analysis of the C-terminal cytoplasmic domain of FlhA, an integral membrane component of the type III flagellar protein export apparatus in Salmonella. Journal of Molecular Biology 343(2): 457-466
Kirchhoferi, D.; Yao, X.; Peek, M. 2004: Structural and Functional Basis of the Serine Protease-like Hepatocyte Growth Factor b-Chain in Met Binding and Signaling. Journal of Biological Chemistry 279(38): 915-924
Mizutani, K.; Okamoto, I.; Fujita, K.; Yamamoto, K.; Hirose, M. 2004: Structural and functional characterization of ovotransferrin produced by Pichia pastoris. Bioscience Biotechnology and Biochemistry 68(2): 376-383
Lentze, N.; Studer, S.; Narberhaus, F. 2003: Structural and Functional Defects Caused by Point Mutations in the a-Crystallin Domain of a Bacterial a-Heat Shock Protein. Journal of Molecular Biology 328(4): 7-37
Kim, T.D.; Paik, S.R.; Yang, C.H.k 2002: Structural and Functional Implications of C-Terminal Regions of a-Synuclein. Biochemistry (American Chemical Society) 41(46): 782-90
Tang, Y.; Lee, H.Y.; Tang, Y. 2006: Structural and Functional Studies on SCO1815: A b-Ketoacyl-Acyl Carrier Protein Reductase from Streptomyces coelicolor A3(2). Biochemistry (American Chemical Society) 45(47): 085-93
Davis, T.L.; Bonacci, T.M.; Sprang, S.R. 2005: Structural and Molecular Characterization of a Preferred Protein Interaction Surface on G Protein bg Subunits. Biochemistry (American Chemical Society) 44(31): 593-604
Sweeney, T.R.; Roque Rosell, N.; Birtley, J.R. 2007: Structural and Mutagenic Analysis of Foot-and-Mouth Disease Virus 3C Protease Reveals the Role of the b-Ribbon in Proteolysis. Journal of Virology 81(1): 5-24
Lubman, O.Y.; Waksman, G. 2003: Structural and Thermodynamic Basis for the Interaction of the Src SH2 Domain with the Activated Form of the PDGF b-receptor. Journal of Molecular Biology 328(3): 5-68
Cherny, I.; Overgaard, M.; Borch, J.; Bram, Y.; Gerdes, K.; Gazit, E. 2007: Structural and thermodynamic characterization of the Escherichia coli RelBE toxin-antitoxin system: indication for a functional role of differential stability. Biochemistry 46(43): 12152-12163
Diaw, L.; Magnac, C.; Pritsch, O.; Buckle, M.; Alzari, P.M.; Dighiero, G. 1997: Structural and affinity studies of IgM polyreactive natural autoantibodies. Journal of Immunology 158(2): 968-976
Surdo, P.L.; Bottomley, M.J.; Arcaro, A. 1999: Structural and biochemical evaluation of the interaction of the phosphatidylinositol 3-kinase p85a Src homology 2 domains with phosphoinositides and inositol polyphosphates. Journal of Biological Chemistry 274(22): 678-685
Shorter, A.L.; Haromy, T.P.; Scalzo-Brush, T.; Knight, W.B.; Dunaway-Mariano, D.; Sundaralingam, M. 1987: Structural and biochemical properties of bidentate tetraaquarhodium(III) complexes of inorganic pyrophosphate and adenosine 5'-diphosphate. Biochemistry 26(7): 2060-2066
Andersson, S.; Russell, D.W. 1990: Structural and biochemical properties of cloned and expressed human and rat steroid 5a-reductases. Proceedings of the National Academy of Sciences of the United States of America 87(10): 40-4
Sagan, S.; Milcent, T.; Ponsinet, R. 2003: Structural and biological effects of a b2- or b3-amino acid insertion in a peptide. Application to molecular recognition of substance P by the neurokinin-1 receptor. European Journal of Biochemistry 270(5): 9-49
Rose, T.; Brune, M.; Wittinghofer, A. 1991: Structural and catalytic properties of a deletion derivative (D133-157) of Escherichia coli adenylate kinase. Journal of Biological Chemistry 266: 781-786
Taga, E.M.; Waheed, A.; Van Etten, R.L. 1984: Structural and chemical characterization of a homogeneous peptide N-glycosidase from almond. Biochemistry 23(5): 815-822
Sternini, C. 1988: Structural and chemical organization of the myenteric plexus. Annual Review of Physiology 50: 81-93
Mohan Reddy, I.; Kella, N.K.D.; Kinsella, J.E. 1988: Structural and conformational basis of the resistance of b-lactoglobulin to peptic and chymotryptic digestion. Journal of Agricultural and Food Chemistry 36: 7-41
Lee, M.; Chang, D.K.; Hartley, J.A.; Pon, R.T.; Krowicki, K.; Lown, J.W. 1988: Structural and dynamic aspects of binding of a prototype lexitropsin to the decadeoxyribonucleotide d(CGCAATTGCG)2 deduced from high-resolution 1H NMR Studies. Biochemistry 27(1): 445-455
Campbell-Burk, S. 1989: Structural and dynamic differences between normal and transforming N-ras gene products: a 31P and isotope-edited 1H NMR study. Biochemistry 28(24): 9478-9484
Van Eps, N.; Oldham, W.M.; Hamm, H.E. 2006: Structural and dynamical changes in an a-subunit of a heterotrimeric G protein along the activation pathway. Proceedings of the National Academy of Sciences of the United States of America 103(44): 9
Lecomte, J.T.; Smit, J.D.; Winterhalter, K.H.; La Mar, G.N. 1989: Structural and electronic properties of the liver fluke heme cavity by nuclear magnetic resonance and optical spectroscopy. Evidence for a distal tyrosine residue in a normally functioning hemoglobin. Journal of Molecular Biology 209(2): 235-247
Kamoda, S.; Saburi, Y. 1993: Structural and enzymatical comparison of lignostilbene-a,b-dioxygenase isozymes, I, II, and III, from Pseudomonas paucimobilis TMY1009. Bioscience, Biotechnology, and Biochemistry 57: 1-4
Wong, S.W.; Paborsky, L.R.; Fisher, P.A. 1986: Structural and enzymological characterization of immunoaffinity-purified DNA polymerase a DNA primase complex from KB cells. Journal of Biological Chemistry 261: 58-68
Gillespie, M.T.; Lyon, B.R.; Skurray, R.A. 1988: Structural and evolutionary relationships of b-lactamase transposons from Staphylococcus aureus. The Journal of General Microbiology 134: 57-66
Sohn, Y.C.; Suetake, H.; Yoshiura, Y. 1998: Structural and expression analyses of gonadotropin Ib subunit genes in goldfish (Carassius auratus). Gene 222(2): 7-67
D'Antona, G.; Brocca, L.; Pansarasa, O.; Rinaldi, C.; Tupler, R.; Bottinelli, R. 2007: Structural and functional alterations of muscle fibres in the novel mouse model of facioscapulohumeral muscular dystrophy. Journal of Physiology 584(Part 3): 997-1009
Wiersma, E.J.; Collins, C.; Fazel, S.; Shulman, M.J. 1998: Structural and functional analysis of J chain-deficient IgM. Journal of Immunology 160(12): 5979-5989
Ravnikar, P.D.; Somerville, R.L. 1987: Structural and functional analysis of a cloned segment of Escherichia coli DNA that specifies proteins of a C4 pathway of serine biosynthesis. Journal of Bacteriology 169(10): 4716-4721
Kelley, W.L.; Patel, I.; Bastia, D. 1992: Structural and functional analysis of a replication enhancer: separation of the enhancer activity from origin function by mutational dissection of the replication origin c of plasmid R6K. Proceedings of the National Academy of Sciences of the United States of America 89: 78-82
Yu, J.; Russell, J.Eric 2001: Structural and functional analysis of an mRNP complex that mediates the high stability of human b-globin mRNA. Molecular and Cellular Biology 21(17): 79-88
Tanabe, M.; Sekimata, M.; Ferrone, S. 1992: Structural and functional analysis of monomorphic determinants recognized by monoclonal antibodies reacting with the HLA class I a3 domain. Journal of Immunology 148: 02-9
Henderson, L.P.; Kuffler, D.P.; Nicholls, J.; Zhang, R. 1983: Structural and functional analysis of synaptic transmission between identified leech neurones in culture. Journal of Physiology 340: 347-358
Schmitz, M.Lienhard; Dos Santos Silva, M.A.; Altmann, H. 1994: Structural and functional analysis of the NF-kB p65 C terminus. An acidic and modular transactivation domain with the potential to adopt an a-helical conformation. Journal of Biological Chemistry 269: 613-620
Yoshioka, H.; Greenwel, P.; Inoguchi, K. 1995: Structural and functional analysis of the promoter of the human a1(XI) collagen gene. Journal of Biological Chemistry 270: 8-24
Mouw, A.R.; Rice, D.A.; Meade, J.C. 1989: Structural and functional analysis of the promoter region of the gene encoding mouse steroid 11b-hydroxylase. Journal of Biological Chemistry 264: 05-09
Talts, J.F.; Sasaki, T.; Miosge, N. 2000: Structural and functional analysis of the recombinant G domain of the laminin a4 chain and its proteolytic processing in tissues. Journal of Biological Chemistry 275(45): 9
Gagliardi, J.V.; Buyer, J.S.; Angle, J.S. 2001: Structural and functional analysis of whole-soil microbial communities for risk and efficacy following microbial incolulation of wheat roots in diverse soils. Soil Biology and Biochemistry 33(1): 40
Cresswell, P.; Blum, J.S.; Marks, M.S.; Roche, P.A. 1989: Structural and functional aspects of HLA class Ii glycoproteins and the associated invariant chain. Cold Spring Harbor Symposia on Quantitative Biology 54 Pt 1: 309-318
Feller, Georges; Le Bussy, Olivier; Houssier, Corinne 1996: Structural and functional aspects of chloride binding to Alteromonas haloplanctis a-amylase. Journal of Biological Chemistry 271: 836-841
Wisselaar, H.A.; Kroos, M.A.; Hermans, M.M.P. 1993: Structural and functional changes of lysosomal acid a-glucosidase during intracellular transport and maturation. Journal of Biological Chemistry 268: 23-31
Straight, D.L.; Sherrill, G.Bradley; Noyes, C.M. 1985: Structural and functional characteristics of activated human factor IX after chemical modification of c-carboxyglutamic acid residues. Journal of Biological Chemistry 260: 90-93
Mark, B.L.; Wasney, G.A.; Salo, T.J.S. 1998: Structural and functional characterization of Streptomyces plicatus b-N-acetylhexosaminidase by comparative molecular modeling and site-directed mutagenesis. Journal of Biological Chemistry 273(31): 618-624
Weil, D.; D'alessio, M.; Ramirez, F. 1990: Structural and functional characterization of a splicing mutation in the Pro-a2(I) collagen gene of an Ehlers-Danlos type VII patient. Journal of Biological Chemistry 265: 007-011
Yoshida, T.; Yohda, M.; IIda, T. 1997: Structural and functional characterization of homo-oligomeric complexes of a and b chaperonin subunits from the hyperthermophilic archaeum Thermococcus strain KS-1. Journal of Molecular Biology 273: 5-45
Recny, M.A.; Neidhardt, E.A.; Sayre, P.H. 1990: Structural and functional characterization of the CD2 immunoadhesion domain. Evidence for inclusion of CD2 in an a-b protein folding class. Journal of Biological Chemistry 265: 42-49
Ymer, S.; Draguhn, A.; Wisden, W. 1990: Structural and functional characterization of the c1 subunit of GABAA/benzodiazepine receptors. The EMBO Journal 9: 61-7
Iozzo, R.V.; Pillarisetti, J.; Sharma, B. 1997: Structural and functional characterization of the human perlecan gene promoter. Transcriptional activation by transforming growth factor-b via a nuclear factor 1-binding element. Journal of Biological Chemistry 272: 8
Straight, D.L.; Hassett, M.Alycia; Mckee, P.A. 1985: Structural and functional characterization of the inhibition of urokinase by a2-macroglobulin. Biochemistry (American Chemical Society) 24: 02-7
Hohenegger, M.; Nanoff, C.; Ahorn, H. 1994: Structural and functional characterization of the interaction between 2',3'-dialdehyde guanine nucleotide analogues and the stimulatory G protein a-subunit. Journal of Biological Chemistry 269: 008-015
Anderson, K.; Lai, F.A.; Liu, Q.Y.; Rousseau, E.; Erickson, H.P.; Meissner, G. 1989: Structural and functional characterization of the purified cardiac ryanodine receptor-Ca2+ release channel complex. Journal of Biological Chemistry 264(2): 1329-1335
Lafyatis, R.; Lechleider, R.; Kim, S.J.n 1990: Structural and functional characterization of the transforming growth factor b3 promoter. A cAMP-responsive element regulates basal and induced transcription. Journal of Biological Chemistry 265: 128-136
Qing, J.; Zhang, Y.; Derynck, R. 2000: Structural and functional characterization of the transforming growth factor-b-induced Smad3/c-Jun transcriptional cooperativity. Journal of Biological Chemistry 275(49): 802-812
Kersh, G.J.; Miley, M.J.; Nelson, C.A.; Grakoui, A.; Horvath, S.; Donermeyer, D.L.; Kappler, J.; Allen, P.M.; Fremont, D.H. 2001: Structural and functional consequences of altering a peptide MHC anchor residue. Journal of Immunology 166(5): 3345-3354
Kumar, L.V.Siva; Ramakrishna, T.; Rao, C.Mohan 1999: Structural and functional consequences of the mutation of a conserved arginine residue in aA and aB crystallins. Journal of Biological Chemistry 274(34): 137-141
Saitoh, N.; Bell, A.C.; Recillas Targa, F. 2000: Structural and functional conservation at the boundaries of the chicken b-globin domain. The EMBO Journal 0): 15-22
Zhu, J.S.; Conklin, K.A.; Scheving, L.A. 1991: Structural and functional correlates of sucrase-a-dextrinase in intact brush border membranes. Biochemistry (American Chemical Society) 30: 399-408
Meissner, G.; Rousseau, E.; Lai, F.A. 1989: Structural and functional correlation of the trypsin-digested Ca2+ release channel of skeletal muscle sarcoplasmic reticulum. Journal of Biological Chemistry 264(3): 1715-1722
Mcdowell, J.C.; Dean, A. 1999: Structural and functional cross-talk between a distant enhancer and the e-globin gene promoter shows interdependence of the two elements in chromatin. Molecular and Cellular Biology 1): 00-9
Bennett, A.F. 1988: Structural and functional determinates of metabolic rate. American Zoologist 28(2 ): 9-708
Hara, T.J.; Zielinski, B. 1989: Structural and functional development of the olfactory organ in teleosts. Transactions of the American Fisheries Society 118(2): 183-194
Steinbach, J.H. 1989: Structural and functional diversity in vertebrate skeletal muscle nicotinic acetylcholine receptors. Annual Review of Physiology 51: 353-365
Sutherland, D.Robert; Bicknell, D.C.; Downward, J. 1986: Structural and functional features of a cell surface phosphoglycoprotein associated with tumorigenic phenotype in human fibroblast (times) HeLa cell hybrids. Journal of Biological Chemistry 261: 18-24
Bonaldo, P.; Russo, V.; Bucciotti, F. 1990: Structural and functional features of the a3 chain indicate a bridging role for chicken collagen VI in connective tissues. Biochemistry (American Chemical Society) 29: 45-54
Hasler, U.; Crambert, G.; Horisberger, J.D.niel 2001: Structural and functional features of the transmembrane domain of the Na,K-ATPase b subunit revealed by tryptophan scanning. Journal of Biological Chemistry 276(19): 356-364
Djavadi-Ohaniance, L.; Friguet, B.; Goldberg, M.E. 1984: Structural and functional influence of enzyme-antibody interactions: effects of eight different monoclonal antibodies on the enzymatic activity of Escherichia coli tryptophan synthase. Biochemistry 23(1): 97-104
Taylor, C.R. 1987: Structural and functional limits to oxidative metabolism: insights from scaling. Annual Review of Physiology 49: 135-146
Mavrodi, D.V.; Ksenzenko, V.N.; Chatuev, B.M. 1997: Structural and functional organization of Pseudomonas fluorescens genes encoding enzymes of phenazine-1-carboxylic acid biosynthesis. Molecular Biology 31: 8
Sadykov, M.R.; Ivashina, T.V.; Kanapin, A.A. 1998: Structural and functional organization of the exopolysaccharide biosynthesis genes in Rhizobium leguminosarum bv. viciae VF39. Molecular Biology 32(5): 5-71
Akopian, T.A.; Doronin, K.K.; Zakharchuk, A.N. 1998: Structural and functional organization of the fowl adenovirus EDS-76 genome. Sequencing and analysis of the 0-10.6% segment. Molecular Biology 32(3): 1-6
Church, F.C.; Pratt, C.W.; Noyes, C.M. 1989: Structural and functional properties of human a-thrombin, phosphopyridoxylated a-thrombin, and cT-thrombin. Identification of lysyl residues in a-thrombin that are critical for heparin and fibrin(ogen) interactions. Journal of Biological Chemistry 264: 419-425
Torronen, A.; Rouvinen, J. 1997: Structural and functional properties of low molecular weight endo-1,4-b-xylanases. Journal of Biotechnology 57: 7-49
Santos, E.; Nebreda, A.R. 1989: Structural and functional properties of ras proteins. Faseb Journal: Official Publication of the Federation of American Societies for Experimental Biology 3(10): 2151-2163
Faus, I.; Richardson, J.P. 1990: Structural and functional properties of the segments of l cro mRNA that interact with transcription termination factor Rho. Journal of Molecular Biology 212: 66
Boyd, D.; Vecoli, C.; Belcher, D.M.; Jain, S.K.; Drysdale, J.W. 1985: Structural and functional relationships of human ferritin H and L chains deduced from cDNA clones. Journal of Biological Chemistry 260(21): 11755-11761
Sun, Y.; Bojikova Fournier, Svetla; Macrae, Thomas, H. 2006: Structural and functional roles for b-strand 7 in the a-crystallin domain of p26, a polydisperse small heat shock protein from Artemia franciscana. The FEBS Journal 273(5): 20-34
Chavez, M.D.; Courtney, S.H.; Chance, M.R.; Kiula, D.; Nocek, J.; Hoffman, B.M.; Friedman, J.M.; Ondrias, M.R. 1990: Structural and functional significance of inhomogeneous line broadening of band IIi in hemoglobin and Fe-Mn hybrid hemoglobins. Biochemistry 29(20): 4844-4852
Merck, K.B.; Groenen, P.J.T.A.; Voorter, C.E.M. 1993: Structural and functional similarities of bovine a-crystallin and mouse small heat-shock protein. A family of chaperones. Journal of Biological Chemistry 268: 46-52
Yi, F.; Denker, B.M.; Neer, E.J. 1991: Structural and functional studies of cross-linked go protein subunits. Journal of Biological Chemistry 266(6): 3900-3906
Nakayama, N.; Arai, N.; Kaziro, Y.; Arai, K. 1984: Structural and functional studies of the dnaB protein using limited proteolysis. Characterization of domains for DNA-dependent ATP hydrolysis and for protein association in the primosome. Journal of Biological Chemistry 259(1): 88-96
Heldin, C.H. 1992: Structural and functional studies on platelet-derived growth factor. EMBO Journal 11(12): 4251-4259
Rose-John, S.; Hipp, E.; Lenz, D.; Legrés, L.G.; Korr, H.; Hirano, T.; Kishimoto, T.; Heinrich, P.C. 1991: Structural and functional studies on the human interleukin-6 receptor. Binding, cross-linking, internalization, and degradation of interleukin-6 by fibroblasts transfected with human interleukin-6-receptor cDNA. Journal of Biological Chemistry 266(6): 3841-3846
Kanner, B.I.; Keynan, S.; Radian, R. 1989: Structural and functional studies on the sodium- and chloride-coupled c-aminobutyric acid transporter: deglycosylation and limited proteolysis. Biochemistry (American Chemical Society) 28: 22-8
Huang, C.; Zang, Q.; Takagi, J. 2000: Structural and functional studies with antibodies to the integrin b2 subunit. A model for the I-like domain. Journal of Biological Chemistry 275(28): 514-524
Matthews, B.W. 1993: Structural and genetic analysis of protein stability. Annual Review of Biochemistry 62: 139-160
Von Wronski, M.A.; Shiota, S.; Tano, K.; Mitra, S.; Bigner, D.D.; Brent, T.P. 1991: Structural and immunological comparison of indigenous human O6-methylguanine-DNA methyltransferase with that encoded by a cloned cDNA. Journal of Biological Chemistry 266(2): 1064-1070
Rosenfeld, S.S.; Xing, J.; Rener, B. 1994: Structural and kinetic studies of the 10 S(if and only if)6 S transition in smooth muscle myosin. Journal of Biological Chemistry 269: 187-194
Theriault, T.P.; Leahy, D.J.; Levitt, M.; McConnell, H.M.; Rule, G.S. 1991: Structural and kinetic studies of the Fab fragment of a monoclonal anti-spin label antibody by nuclear magnetic resonance. Journal of Molecular Biology 221(1): 257-270
McIntosh, J.R. 1991: Structural and mechanical control of mitotic progression. Cold Spring Harbor Symposia on Quantitative Biology 56: 613-619
Basta, T.; Buerger, S.; Stolz, A. 2005: Structural and replicative diversity of large plasmids from sphingomonads that degrade polycyclic aromatic compounds and xenobiotics. Microbiology 151(Pt 6): 2025-2037
Lee, C.P.; Seong, B.L.; RajBhandary, U.L. 1991: Structural and sequence elements important for recognition of Escherichia coli formylmethionine tRNA by methionyl-tRNA transformylase are clustered in the acceptor stem. Journal of Biological Chemistry 266(27): 18012-18017
Haseley, S.R.; Holst, O.; Brade, H. 1997: Structural and serological characterisation of the O-antigenic polysaccharide of the lipopolysaccharide from Acinetobacter haemolyticus strain ATCC 17906. European Journal of Biochemistry 244(3): 761-766
Daopin, S.; Alber, T.; Baase, W.A. 1991: Structural and thermodynamic analysis of the packing of two a-helices in bacteriophage T4 lysozyme. Journal of Molecular Biology 221: 7-67
Deléage, G.; Roux, B.; Marion, C. 1986: Structural aspects and orientation mechanism of mitochondrial F1 adenosinetriphosphatase. Evidence for a negative electric birefringence due to a permanent moment perpendicular to the long axes of the particle. Biochemistry 25(10): 2854-2858
Hendrickson, W.A.; Kwong, P.D.; Leahy, D.J.; Ryu, S.E.; Yamaguchi, H.; Fleury, S.; Sékaly, R.P. 1992: Structural aspects of CD4 and CD8 involvement in the cellular immune response. Cold Spring Harbor Symposia on Quantitative Biology 57: 549-556
Wong, P.T.; Huang, C.H. 1989: Structural aspects of pressure effects on infrared spectra of mixed-chain phosphatidylcholine assemblies in D2O. Biochemistry 28(3): 1259-1263
Field, K.A.; Holowka, D.; Baird, B. 1999: Structural aspects of the association of FceRI with detergent-resistant membranes. Journal of Biological Chemistry 274(3): 53-58
Carney, D.F.; Haviland, D.L.; Noack, D.; Wetsel, R.A.; Vik, D.P.; Tack, B.F. 1991: Structural aspects of the human C5 gene. Intron/exon organization, 5'-flanking region features, and characterization of two truncated cDNA clones. Journal of Biological Chemistry 266(28): 18786-18791
Steele, J.C.; Young, S.P.; Goodall, J.C.; Gallimore, P.H. 1998: Structural aspects of the interaction between heterogeneic human papillomavirus type 1 E4-specific T cell receptors and the same peptide/HLA-DQ8 complex. Journal of Immunology 161(9): 4745-4752
Jay, D.; Cantley, L. 1986: Structural aspects of the red cell anion exchange protein. Annual Review of Biochemistry 55: 511-538
Kaibara, C.; Matsui, T.; Hisabori, T. 1996: Structural asymmetry of F1-ATPase caused by the c subunit generates a high affinity nucleotide binding site. Journal of Biological Chemistry 271: 33-38
Tepper, A.W.J.W.; Bubacco, L.; Canters, G.W. 2002: Structural basis and mechanism of the inhibition of type-3 copper protein tyrosinase from Streptomyces antibioticus by halide ions. Journal of Biological Chemistry 277(34): 436-444
Taouis, M.; Levy Toledano, R.; Roach, P. 1994: Structural basis by which a recessive mutation in the a-subunit of the insulin receptor affects insulin binding. Journal of Biological Chemistry 269: 912-918
Meyer, P.; Schneider, B.; Sarfati, S. 2000: Structural basis for activation of a-boranophosphate nucleotide analogues targeting drug-resistant reverse transcriptase. The EMBO Journal 4): 20-9
Nureki, O.; Fukai, S.; Sekine, S. 2001: Structural basis for amino acid and tRNA recognition by class I aminoacyl-tRNA synthetases. Cold Spring Harbor Symposia on Quantitative Biology 66 2001: 7-73
Ilag, L.L.; Incardona, N.L. 1993: Structural basis for bacteriophage fX174 assembly and eclipse as defined by temperature-sensitive mutations. Virology 8-68
Olosz, F.; Malek, T.R. 2002: Structural basis for binding multiple ligands by the common cytokine receptor c-chain. Journal of Biological Chemistry 277(14): 047-052
Asano, K.; Niimi, T.; Yokoyama, S.; Mizobuchi, K. 1998: Structural basis for binding of the plasmid ColIb-P9 antisense Inc RNA to its target RNA with the 5'-rUUGGCG-3' motif in the loop sequence. Journal of Biological Chemistry 273(19): 11826-11838
Bone, R.; Fujishige, A.; Kettner, C.A. 1991: Structural basis for broad specificity in a-lytic protease mutants. Biochemistry (American Chemical Society) 30: 388-98
Hrmova, Maria; De Gori, Ross; Smith, Brian J. 2002: Structural basis for broad substrate specificity in higher plant b-D-glucan glucohydrolases. Plant Cell 14(5): 33-52
Barnes, H.J.; Nordlund-Möller, L.; Nord, M.; Gustafsson, J.; Lund, J.; Gillner, M. 1996: Structural basis for calcium binding by uteroglobins. Journal of Molecular Biology 256(2): 392-404
Ishikawa, M.; Tsuchiya, D.; Oyama, T. 2004: Structural basis for channelling mechanism of a fatty acid b-oxidation multienzyme complex. EMBO Journal 23(14): 45-54
Lee, J.K.; Kozono, D.; Remis, J.; Kitagawa, Y.; Agre, P.; Stroud, R.M. 2005: Structural basis for conductance by the archaeal aquaporin AqpM at 1.68 A. Proceedings of the National Academy of Sciences of the United States of America 102(52): 18932-18937
Ghosh, M.; Rumpal, N.; Varshney, U. 2002: Structural basis for poor uracil excision for hairpin DNA: an ANM study. European Journal of Biochemistry 269(7): 86-94
Bunting, K.A.; Roe, S.Mark; Pearl, L.H. 2003: Structural basis for recruitment of translesion DNA polymerase Pol IV/DinB to the b-clamp. The EMBO Journal 22(21): 83-92
Gessner, R.V.; Quigley, G.J.; Wang, A.H.; van der Marel, G.A.; van Boom, J.H.; Rich, A.; Rich, A. 1985: Structural basis for stabilization of Z-DNA by cobalt hexaammine and magnesium cations. Biochemistry 24(2): 237-240
Su, H.-P.; Golden, J.W.; Gittis, A.G.; Hooper, J.W.; Garboczi, D.N. 2007: Structural basis for the binding of the neutralizing antibody, 7D11, to the poxvirus L1 protein. Virology 368(2): 331-341
Herzberg, O.; Kapadia, G.; Blanco, B. 1991: Structural basis for the inactivation of the p54 mutant of b-lactamase from Staphylococcus aureus PC1. Biochemistry (American Chemical Society) 30: 03-9
Bayliss, R.; Littlewood, T.; Stewart, M. 2000: Structural basis for the interaction between FxFG nucleoporin repeats and importin-b in nuclear trafficking. Cell 102(1): 108
Woulfe, D.S.; Stadel, J.M. 1999: Structural basis for the selectivity of the RGS protein, GAIP, for Gai family members. Identification of a single amino acid determinant for selective interaction of Gai subunits with GAIP. Journal of Biological Chemistry 274(25): 718-724
Hunt, H.D.; Pullen, J.K.; Dick, R.F. 1990: Structural basis of Kbm8 alloreactivity. Amino acid substitutions on the b-pleated floor of the antigen recognition site. Journal of Immunology 145: 56-62
Garcia, K.C.; Teyton, L.; Wilson, I.A. 1999: Structural basis of T cell recognition. Annual Review of Immunology 17: 369-397
Arnon, R.; Van Regenmortel, M.H. 1992: Structural basis of antigenic specificity and design of new vaccines. Faseb Journal: Official Publication of the Federation of American Societies for Experimental Biology 6(14): 3265-3274
Maveyraud, L.; Saves, I.; Burlet Schiltz, O. 1996: Structural basis of extended spectrum TEM b-lactamases. Crystallographic, kinetic, and mass spectrometric investigations of enzyme mutants. Journal of Biological Chemistry 271: 482-489
Wilson, I.A.; Cox, N.J. 1990: Structural basis of immune recognition of influenza virus hemagglutinin. Annual Review of Immunology 8: 737-771
Weis, W.I.; Drickamer, K. 1996: Structural basis of lectin-carbohydrate recognition. Annual Review of Biochemistry 65: 441-473
Boix, E.; Zhang, Y.; Swaminathan, G.Jawahar 2002: Structural basis of ordered binding of donor an acceptor substrates to the retaining glycosyltransferase, a-1,3-glycosyltransferase. Journal of Biological Chemistry 277(31): 310-318
Wess, J.; Liu, J.; Blin, N.; Yun, J.; Lerche, C.; Kostenis, E. 1997: Structural basis of receptor/G protein coupling selectivity studied with muscarinic receptors as model systems. Life Sciences 60(13-14): 1007-1014
Doherty, D.G.; Penzotti, J.E.; Koelle, D.M.; Kwok, W.W.; Lybrand, T.P.; Masewicz, S.; Nepom, G.T. 1998: Structural basis of specificity and degeneracy of T cell recognition: pluriallelic restriction of T cell responses to a peptide antigen involves both specific and promiscuous interactions between the T cell receptor, peptide, and HLA-DR. Journal of Immunology 161(7): 3527-3535
Chapman, A.D.M.; Cortes, A.; Dafforn, T.R. 1999: Structural basis of substrate specificity in malate dehydrogenases: crystal structure of a ternary complex of porcine cytoplasmic malate dehydrogenase, a-ketomalonate and tetrahydoNAD. Journal of Molecular Biology 285(2): 3-12
Flaherty, K.M.; Wilbanks, S.M.; DeLuca-Flaherty, C.; McKay, D.B. 1994: Structural basis of the 70-kilodalton heat shock cognate protein ATP hydrolytic activity. II. Structure of the active site with ADP or ATP bound to wild type and mutant ATPase fragment. Journal of Biological Chemistry 269(17): 12899-12907
Karray, S.; Juompan, L.; Maroun, R.C.; Isenberg, D.; Silverman, G.J.; Zouali, M. 1998: Structural basis of the gp120 superantigen-binding site on human immunoglobulins. Journal of Immunology 161(12): 6681-6688
Bailey, C.H.; Kandel, E.R. 1993: Structural changes accompanying memory storage. Annual Review of Physiology 55: 397-426
Sears, T.A. 1987: Structural changes in intercostal motoneurones following axotomy. Journal of Experimental Biology 132: 93-109
Khan, M.Y.; Jaikaria, N.S.; Frenz, D.A.; Villanueva, G.; Newman, S.A. 1988: Structural changes in the NH2-terminal domain of fibronectin upon interaction with heparin. Relationship to matrix-driven translocation. Journal of Biological Chemistry 263(23): 11314-11318
Robertson, J.S.; Bootman, J.S.; Newman, R.; Oxford, J.S.; Daniels, R.S.; Webster, R.G.; Schild, G.C. 1987: Structural changes in the haemagglutinin which accompany egg adaptation of an influenza A(H1N1) virus. Virology 160(1): 31-37
Mizuochi, T.; Hamako, J.; Nose, M.; Titani, K. 1990: Structural changes in the oligosaccharide chains of IgG in autoimmune MRL/Mp-lpr/lpr mice. Journal of Immunology 145(6): 1794-1798
Frado, L.L.; Craig, R. 1989: Structural changes induced in Ca2+-regulated myosin filaments by Ca2+ and ATP. Journal of Cell Biology 109(2): 529-538
Loidl, J.; Greilhuber, J. 1983: Structural changes of Ag-stained nucleolus organizing regions and nucleoli during meiosis in Allium flavum. Canadian Journal of Genetics and Cytology. Journal Canadien de Genetique et de Cytologie 25(5): 524-529
Xiang, Y.; Morais, M.C.; Battisti, A.J. 2006: Structural changes of bacteriophage F29 upon DNA packaging and release. The EMBO Journal 25(21): 29-39
Baldwin, R.L.; Stolowitz, M.L.; Hood, L. 1996: Structural changes of tumor necrosis factor a associated with membrane insertion and channel formation. Proceedings of the National Academy of Sciences of the United States of America 93: 21-6
Johnson, A.E.; Esmon, N.L.; Laue, T.M. 1983: Structural changes required for activation of protein C are induced by Ca2+ binding to a high affinity site that does not contain c-carboxyglutamic acid. Journal of Biological Chemistry 258: 54-60
Vibert, P.; Craig, R. 1985: Structural changes that occur in scallop myosin filaments upon activation. Journal of Cell Biology 101(3): 830-837
Nyman, T.A.; Kalkkinen, N.; Tolo, H. 1998: Structural characterisation of N-linked and O-linked oligosaccharides derived from interferon-a2b and interferon-a14c produced by Sendai-virus-induced human peripheral blood leukocytes. European Journal of Biochemistry 253(2): 5-93
Sillanaukee, P.; Hurme, L.; Tuominen, J. 1996: Structural characterisation of acetaldehyde adducts formed by a synthetic peptide mimicking the N-terminus of the hemoglobin b-chain under reducing and nonreducing conditions. European Journal of Biochemistry 240: 6
Alberti, S.; Steffensen, K.R.; Gustafsson, J.A. 2000: Structural characterisation of the mouse nuclear oxysterol receptor genes LXRa and LXRb. Gene 243(1-2): 103
Chai, W.; Lawson, A.M.; Gradwell, M.J. 1998: Structural characterisation of two hexasaccharides and an octasaccharide from chondroitin sulphate C containing the unusual sequence (4-sulpho)-N-acetylgalactosamine-b1-4-(2-sulpho)-glucuronic acid-b1-3-(6-sulpho)-N-acetylgalactosamine. European Journal of Biochemistry 251: 4-21
Phillips, L.G.; Hawks, S.E.; German, J.B. 1995: Structural characteristics and foaming properties of b-lactoglobulin: effects of shear rate and temperature. Journal of Agricultural and Food Chemistry 43: 3-19
Karle, I.L. .; Balaram, P. 1990: Structural characteristics of a-helical peptide molecules containing Aib residues. Biochemistry (American Chemical Society) 29: 47-56
De Freitas, Fernando A.; Yunes, Jose Andres; Da Silva, Marcio J. 1994: Structural characterization and promoter activity analysis of the c-kafirin gene from sorghum. Molecular and General Genetics 245: 7-86
Johal, S.; Partridge, B.E.; Chollet, R. 1985: Structural characterization and the determination of negative cooperativity in the tight binding of 2-carboxyarabinitol bisphosphate to higher plant ribulose bisphosphate carboxylase. Journal of Biological Chemistry 260(17): 9894-9904
Maras, Marleen; De Bruyn, Andre; Schraml, Jan 1997: Structural characterization of N-linked oligosaccharides from cellobiohydrolase I secreted by the filamentous Trichoderma reesei RUTC 30. European Journal of Biochemistry 245: 7-25
Pelton, J.G.; Wemmer, D.E. 1989: Structural characterization of a 2:1 distamycin A d(CGCAAATTGGC) complex by two-dimensional NMR. Proceedings of the National Academy of Sciences of the United States of America 86(15): 23-7
Mumby, M.C.; Green, D.D.; Russell, K.L. 1985: Structural characterization of cardiac protein phosphatase with a monoclonal antibody. Evidence that the Mr = 38,000 phosphatase is the catalytic subunit of the native enzyme(s). Journal of Biological Chemistry 260(25): 13763-13770
Rasia, R.M.; Bertoncini, C.W.; Marsh, D. 2005: Structural characterization of copper(II) binding to a-synuclein: Insights into the bioinorganic chemistry of Parkinson's disease. Proceedings of the National Academy of Sciences of the United States of America 102(12): 94-9
Fan, P.; Bracken, C.; Baum, J. 1993: Structural characterization of monellin in the alcohol-denatured state by NMR: evidence for b-sheet to a-helix conversion. Biochemistry (American Chemical Society) 32: 73-82
Slomiany, B.L.; Zdebska, E.; Slomiany, A. 1984: Structural characterization of neutral oligosaccharides of human H+Leb+ gastric mucin. Journal of Biological Chemistry 259(5): 2863-2869
Matsuura, F.; Jones, M.Z. 1985: Structural characterization of novel complex oligosaccharides accumulated in the caprine b-mannosidosis kidney. Occurrence of tetra- and pentasaccharides containing a b-linked mannose residue at the nonreducing terminus. Journal of Biological Chemistry 260: 239-245
Birkenmeyer, L.; Sugisaki, H.; Ray, D.S. 1987: Structural characterization of site-specificity discontinuities associated with replication origins of minicircle DNA from Crithidia fasciculata. Journal of Biological Chemistry 262: 84-92
Leung, A.T.; Imagawa, T.; Campbell, K.P. 1987: Structural characterization of the 1,4-dihydropyridine receptor of the voltage-dependent Ca2+ channel from rabbit skeletal muscle. Evidence for two distinct high molecular weight subunits. Journal of Biological Chemistry 262(17): 7943-7946
Yurewicz, E.C.; Sacco, A.G.; Subramanian, M.G. 1987: Structural characterization of the Mr = 55,000 antigen (ZP3) of porcine oocyte zona pellucida. Purification and characterization of a- and b-glycoproteins following digestion of lactosaminoglycan with endo-b-galactosidase. Journal of Biological Chemistry 262: 4-71
Jay, S.D.; Sharp, A.H.; Kahl, S.D. 1991: Structural characterization of the dihydropyridine-sensitive calcium channel a2-subunit and the associated d peptides. Journal of Biological Chemistry 266: 87-93
Seeholzer, S.H.; Wand, A.J. 1989: Structural characterization of the interactions between calmodulin and skeletal muscle myosin light chain kinase: effect of peptide (576-594)G binding on the Ca2+-binding domains. Biochemistry 28(9): 4011-4020
Sage, J.Timothy; Jee, W. 1997: Structural characterization of the myoglobulin active site using infrared crystallography. Journal of Molecular Biology 274: 6
Amoresano, A.; Minchiotti, L.; Cosulich, M.E. 2000: Structural characterization of the oligosaccharide chains of human a1-microglobulin from urine and amniotic fluid. European Journal of Biochemistry 267(7): 05-12
Yamagaki, T.; Maeda, M.; Kanazawa, K. 1997: Structural clarification of Caulerpa cell wall b-1,3-xylan by NMR spectroscopy. Bioscience, Biotechnology, and Biochemistry 61: 77-80
Yu, J.C.; Mahadevan, D.; Larochelle, W.J. 1994: Structural coincidence of aPDGFR epitopes binding to platelet-derived growth factor-AA and a potent neutralizing monoclonal antibody. Journal of Biological Chemistry 269: 668-674
Jones, P.J.; Holak, T.A.; Prestegard, J.H. 1987: Structural comparison of acyl carrier protein in acylated and sulfhydryl forms by two-dimensional 1H NMR spectroscopy. Biochemistry 26(12): 3493-3500
Jarvis, D.L.; Lanford, R.E.; Butel, J.S. 1984: Structural comparisons of wild-type and nuclear transport-defective simian virus 40 large tumor antigens. Virology 134(1): 168-176
Stevens, R.C.; Gouaux, J.E.; Lipscomb, W.N. 1990: Structural consequences of effector binding to the T state of aspartate carbamoyltransferase: crystal structures of the unligated and ATP- and CTP-complexed enzymes at 2.6-A resolution. Biochemistry 29(33): 7691-7701
Holmes, M.A.; Foote, J. 1997: Structural consequences of humanizing an antibody. Journal of Immunology 158(5): 2192-2201
Wilmanns, M.; Hyde, C.Craig; Davies, D.R. 1991: Structural conservation in parallel b/a-barrel enzymes that catalyze three sequential reactions in the pathway of tryptophan biosynthesis. Biochemistry (American Chemical Society) 30: 61-9
Raney, A.; Shaw, A.Y.; Foster, J.L.; Garcia, J.V. 2007: Structural constraints on human immunodeficiency virus type 1 Nef function. Virology 368(1): 7-16
Vilen, B.J.; Penta, J.F.; Ting, P.Y. 1992: Structural constraints within a trimeric transcriptional regulatory region. Constitutive and interferon-c-inducible expression of the HLA-DRA gene. Journal of Biological Chemistry 267: 728-734
Tamura, M.; Milenic, D.E.; Iwahashi, M.; Padlan, E.; Schlom, J.; Kashmiri, S.V. 2000: Structural correlates of an anticarcinoma antibody: identification of specificity-determining residues (SDRs) and development of a minimally immunogenic antibody variant by retention of SDRs only. Journal of Immunology 164(3): 1432-1441
Gassmann, A.; Shorthouse, J.D. 1990: Structural damage and gall induction by Pegomya curticornis and Pegomya euphorbiae (Diptera: Anthomyiidae) within the stems of leafy spurge (Euphorbia (times) pseudovirgata) (Euphorbiacea). Canadian Entomologist 122: 9-39
White, J.G. 1990: Structural defects in inherited and giant platelet disorders. Advances in Human Genetics 19: 133-234
Bean, A.G.; Roach, D.R.; Briscoe, H.; France, M.P.; Korner, H.; Sedgwick, J.D.; Britton, W.J. 1999: Structural deficiencies in granuloma formation in TNF gene-targeted mice underlie the heightened susceptibility to aerosol Mycobacterium tuberculosis infection, which is not compensated for by lymphotoxin. Journal of Immunology 162(6): 3504-3511
Qazi, U.; Gettins, P.G.W.; Strickland, D.K. 1999: Structural details of proteinase entrapment by human a2-macroglobulin emerge from three-dimensional reconstructions of Fab labeled native, half-transformed, and transformed molecules. Journal of Biological Chemistry 274(12): 37-42
Marchand, C.; Zhang, X.; Pais, G.C.G. 2002: Structural determinants for HIV-1 integrase inhibition by b-diketo acids. Journal of Biological Chemistry 277(15): 596-603
Yan, K.; Gautam, N. 1997: Structural determinants for interaction with three different effectors on the G protein b subunit. Journal of Biological Chemistry 272: 56-59
Deutsch, P.J.; Hoeffler, J.P.; Jameson, J.L.; Lin, J.C.; Habener, J.F. 1988: Structural determinants for transcriptional activation by cAMP-responsive DNA elements. Journal of Biological Chemistry 263(34): 18466-18472
Theunissen, O.; Rudt, F.; Pieler, T. 1998: Structural determinants in 5S RNA and TFIIIA for 7S RNP formation. European Journal of Biochemistry 258(2): 8-67
DeMaria, C.T.; Sun, Y.; Long, L.; Wagner, B.J.; Brewer, G. 1997: Structural determinants in AUF1 required for high affinity binding to a + U-rich elements. Journal of Biological Chemistry 272(44): 27635-27643
Yokote, K.; Mori, S.; Siegbahn, A. 1996: Structural determinants in the platelet-derived growth factor a-receptor implicated in modulation of chemotaxis. Journal of Biological Chemistry 271: 01-11
Mclane, K.E.; Wu, X.; Diethelm, B. 1991: Structural determinants of a-bungarotoxin binding to the sequence segment 181-200 of the muscle nicotinic acetylcholine receptor a subunit: effects of cysteine/cystine modification and species-specific amino acid substitutions. Biochemistry (American Chemical Society) 30: 25-34
Ulens, C.; Hogg, R.C.; Celie, P.H. 2006: Structural determinants of selective a-conotoxin binding to a nicotinic acetylcholine receptor homolog AChBP. Proceedings of the National Academy of Sciences of the United States of America 103(10): 15-20
Karthikeyan, S.; Leung, T.; Ladias, J.A.A. 2002: Structural determinants of the Na+/H+ exchanger regulatory factor interaction with the b2 adrenergic and platelet-derived growth factor receptors. Journal of Biological Chemistry 277(21): 973-978
Strichartz, G. 1984: Structural determinants of the affinity of saxitoxin for neuronal sodium channels. Electrophysiological studies on frog peripheral nerve. Journal of General Physiology 84(2): 281-305
Mclane, K.E.; Wu, X.; Conti Tronconi, B.M. 1991: Structural determinants within residues 180-199 of the rodent a5 nicotinic acetylcholine receptor subunit involved in a-bungarotoxin binding. Biochemistry (American Chemical Society) 30: 730-8
Lee, H.C.; Walseth, T.F.; Bratt, G.T.; Hayes, R.N.; Clapper, D.L. 1989: Structural determination of a cyclic metabolite of NAD+ with intracellular Ca2+-mobilizing activity. Journal of Biological Chemistry 264(3): 1608-1615
Yamada, S.; Yamane, Y.; Sakamoto, K. 1998: Structural determination of sulfated tetrasaccharides and hexasaccharides containing a rare disaccharide sequence, -3GalNAc(4,6-disulfate)b1-4IdoAa1-, isolated from porcine intestinal dermatan sulfate. European Journal of Biochemistry 258(2): 5-83
Hygge Blakeman, K.; Weintraub, A.; Widmalm, G. 1998: Structural determination of the O-antigenic polysaccharide from the enterotoxigenic Escherichia coli O147. European Journal of Biochemistry 251(1-2): 534-537
Ishii Karakasa, I.; Iwase, H.; Hotta, K. 1997: Structural determination of the O-linked sialyl oligosaccharides liberated from fetuin with endo-a-N-acetylgalactosaminidase-S by HPLC analysis and 600-MHz 1H-NMR spectroscopy. European Journal of Biochemistry 247: 9-15
Lamphear, J.G.; Bohach, G.A.; Rich, R.R. 1998: Structural dichotomy of staphylococcal enterotoxin C superantigens leading to MHC class II-independent activation of T lymphocytes. Journal of Immunology 160(5): 2107-2114
Heidenreich, K.A.; Zahniser, N.R.; Berhanu, P.; Brandenburg, D.; Olefsky, J.M. 1983: Structural differences between insulin receptors in the brain and peripheral target tissues. Journal of Biological Chemistry 258(14): 8527-8530
Vogel, H.J.; Drakenberg, T.; Forsén, S.; O'Neil, J.D.; Hofmann, T. 1985: Structural differences in the two calcium binding sites of the porcine intestinal calcium binding protein: a multinuclear NMR study. Biochemistry 24(15): 3870-3876
Williams, A.F.; Davis, S.J.; He, Q.; Barclay, A.N. 1989: Structural diversity in domains of the immunoglobulin superfamily. Cold Spring Harbor Symposia on Quantitative Biology 54 Pt 2: 637-647
Ninkina, N.N.; Buchman, V.L. 1998: Structural diversity of neurotrophin receptors. Molecular Biology 32(6): 2-9
Soragna, A.; Mari, S.Anna.; Pisani, R.; Peres, A.; Castagna, M.; Sacchi, V.Franca.; Bossi, E. 2004: Structural domains involved in substrate selectivity in two neutral amino acid transporters. American Journal of Physiology. Cell Physiology 287(3): C754-C761
Serafini, R.; Bracamontes, J.; Steinbach, J.H.nry 2000: Structural domains of human GABAA receptor b3 subunit involved in the actions of pentobarbital. The Journal of Physiology 524(3): 9-76
Daniel, E.E.; Posey-Daniel, V.; Jager, L.P.; Berezin, I.; Jury, J. 1987: Structural effects of exposure of smooth muscle in sucrose gap apparatus. American Journal of Physiology 252(1 Part 1): C77-C87
Quiram, P.A.; Sine, S.M. 1998: Structural elements in a-conotoxin ImI essential for binding to neuronal a7 receptors. Journal of Biological Chemistry 273(18): 007-011
Jan, L.Y.; Jan, Y.N. 1992: Structural elements involved in specific K+ channel functions. Annual Review of Physiology 54: 537-555
Conklin, B.R.; Bourne, H.R. 1993: Structural elements of Ga subunits that interact with Gbc, receptors and effectors. Cell 73: 1-41
Renard, S.; Olivier, A.; Granger, P. 1999: Structural elements of the c-aminobutyric acid type A receptor conferring subtype selectivity for benzodiazepine site ligands. Journal of Biological Chemistry 274(19): 370-374
Koga, K.; Berliner, L.J. 1985: Structural elucidation of a hydrophobic box in bovine a-lactalbumin by NMR: nuclear Overhauser effects. Biochemistry (American Chemical Society) 24: 57-62
Fukuchi, N.; Nakayama, J.; Takayama, S.; Isogai, A.; Suzuki, A. 1992: Structural Elucidation of Rotihibin B by Tandem Mass Spectrometry. Bioscience Biotechnology and Biochemistry 56(7): 1152-1153
Mcardle, J. 2004: Structural equation modeling. Quarterly Review of Biology 79(3): 0
Samuel, D.; Kumar, T.K.ishnaswamy Suresh; Balamurugan, K. 2001: Structural events during the refolding of an all b-sheet protein. Journal of Biological Chemistry 276(6): 34-41
Hillier, B.J.; Vacquier, V.D. 2007: Structural features and functional domains of amassin-1, a cell-binding olfactomedin protein. Biochemistry and Cell Biology 85(5): 552-562
Iametti, S.; Scaglioni, L.; Mazzini, S. 1998: Structural features and reversible association of different quaternary structures of b-lactoglobulin. Journal of Agricultural and Food Chemistry 46(6): 59-66
Nussinov, R.; Lennon, G.G. 1984: Structural features are as important as sequence homologies in Drosophila heat shock gene upstream regions. Journal of Molecular Evolution 20(2): 106-110
Kozak, M. 1991: Structural features in eukaryotic mRNAs that modulate the initiation of translation. Journal of Biological Chemistry 266(30): 19867-19870
Krowczynska, A.; Brawerman, G. 1986: Structural features in the 3'-terminal region of polyribosome-bound rabbit globin messenger RNAs. Journal of Biological Chemistry 261(1): 397-402
Nothwehr, S.F.; Gordon, J.I. 1990: Structural features in the NH2-terminal region of a model eukaryotic signal peptide influence the site of its cleavage by signal peptidase. Journal of Biological Chemistry 265(28): 17202-17208
Kanaseki, T.; Ikeuchi, Y.; Sugiura, H.; Yamauchi, T. 1991: Structural features of Ca2+/calmodulin-dependent protein kinase Ii revealed by electron microscopy. Journal of Cell Biology 115(4): 1049-1060
Hausmann, S.; Martin, M.; Gauthier, L.; Wucherpfennig, K.W. 1999: Structural features of autoreactive TCR that determine the degree of degeneracy in peptide recognition. Journal of Immunology 162(1): 338-344
Soengas, M.S.; Mateo, C.Reyes; Rivas, G. 1997: Structural features of f29 single-stranded DNA-binding protein. II. Global conformation of f29 single-stranded DNA-binding protein and the effects of complex formation on the protein and the single-stranded DNA. Journal of Biological Chemistry 272: 3-10
Rouhier, P.; Kopp, M.; Begot, V. 1995: Structural features of fungal b- D-glucans for the efficient inhibition of the initiation of virus infection on Nicotiana tabacum. Phytochemistry 39(1 ): 62
Morita, C.T.; Lee, H.K.; Wang, H. 2001: Structural features of nonpeptide prenyl pyrophosphates that determine their antigenicity for human cd T cells. Journal of Immunology 167(1): 41
Maryanski, J.L.; Abastado, J.P.; Corradin, G.; Cerottini, J.C. 1989: Structural features of peptides recognized by H-2Kd-restricted T cells. Cold Spring Harbor Symposia on Quantitative Biology 54 Pt 1: 545-550
Coll, A.; Folch, J.M.; Sanchez, A. 1995: Structural features of the 5' flanking region of the caprine k-casein gene. Journal of Dairy Science 78: 3-7
Yan, D.; Schulte, M.K.; Bloom, K.E. 1999: Structural features of the liganding-domain of the serotonin 5HT3 receptor. Journal of Biological Chemistry 274(9): 37-41
Prasada Rao, N.V.S.A.V.; Venkata Rao, E. 1986: Structural features of the sulphated polysaccharide from a green seaweed, Caulerpa taxifolia. Phytochemistry 25(7 ): 45-7
Ramana, K.S.; Rao, E.V. 1991: Structural features of the sulphated polysaccharide from a green seaweed, Cladophora socialis. Phytochemistry 30(1): 259-262
Minagawa, T.; Murakami, A.; Ryo, Y.; Yamagishi, H. 1983: Structural features of very fast sedimenting DNA formed by gene 49 defective T4. Virology 126(1): 183-193
Wagner, T.; Rundquist, C.; Gross, M.; Sigler, P.B. 1989: Structural features that underlie the use of bacterial Met-tRNAfMet primarily as an elongator in eukaryotic protein synthesis. Journal of Biological Chemistry 264(31): 18506-18511
Taylor, S.S.; Knighton, D.R.; Zheng, J.; Ten Eyck, L.F.; Sowadski, J.M. 1992: Structural framework for the protein kinase family. Annual Review of Cell Biology 8: 429-462
Gray, G.L.; Mainzer, S.E.; Rey, M.W. 1986: Structural genes encoding the thermophilic a-amylases of Bacillus stearothermophilus and Bacillus licheniformis. Journal of Bacteriology 166: 5-43
Muthukrishnan, S.; Gill, B.S.; Swegle, M. 1984: Structural genes for a-amylases are located on barley chromosomes 1 and 6. Journal of Biological Chemistry 259: 637-639
Bateman, A.; Valencia, A. 2006: Structural genomics meets computational biology. Bioinformatics 22(19): 2319
Ratnam, M.; Gullick, W.; Spies, J. 1986: Structural heterogeneity of the a subunits of the nicotinic acetylcholine receptor in relation to agonist affinity alkylation and antagonist binding. Biochemistry (American Chemical Society) 25: 68-75
Jackson, M.D.; Denu, J.M. 2002: Structural identification of 2'- and -O-acetyl-ADP-ribose as novel metabolites derived from the Sir2 family of b-NAD+-dependent histone/protein deacetylases. Journal of Biological Chemistry 277(21): 535-544
Amzel, L.M.; Gaffney, B.J. 1995: Structural immunology: problems in molecular recognition. Faseb Journal: Official Publication of the Federation of American Societies for Experimental Biology 9(1): 7-8
Van Scharrenburg, G.J.; Jansen, E.H.; Egmond, M.R.; de Haas, G.H.; Slotboom, A.J. 1984: Structural importance of the amino-terminal residue of pancreatic phospholipase A2. Biochemistry 23(25): 6285-6294
Parker, J.S.; Roe, S.Mark; Barford, D. 2005: Structural insights into mRNA recognition from a PIWI domain-siRNA complex. Nature 434: 3-6
Ogle, J.M.; Ramakrishnan, V. 2005: Structural insights into translational fidelity. Annual Review of Biochemistry 74: 129-177
Larson, P.J.; Stanfield Oakley, S.A.; Vandusen, W.J. 1996: Structural integrity of the c-carboxyglutamic acid domain of human blood coagulation factor IXa is required for its binding to cofactor VIIIa. Journal of Biological Chemistry 271: 69-76
Enders, A.C.; Welsh, A.O. 1993: Structural interactions of trophoblast and uterus during hemochorial placenta formation. Journal of Experimental Zoology 266(6): 578-587
Nall, B.T. 1983: Structural intermediates in folding of yeast iso-2 cytochrome c. Biochemistry 22(6): 1423-1429
Dornmair, K.; Rothenhäusler, B.; McConnell, H.M. 1989: Structural intermediates in the reactions of antigenic peptides with MHC molecules. Cold Spring Harbor Symposia on Quantitative Biology 54 Pt 1: 409-416
Seibert, M.; DeWit, M.; Staehelin, L.A. 1987: Structural localization of the O2-evolving apparatus to multimeric (tetrameric) particles on the lumenal surface of freeze-etched photosynthetic membranes. Journal of Cell Biology 105(5): 2257-2265
Carrascosa, J.L.; Carazo, J.M.; Garcia, N. 1983: Structural localization of the proteins of the head to tail connecting region of bacteriophage f29. Virology 124: 3-43
Colvert, K.K.; Mills, D.A.; Richter, M.L. 1992: Structural mapping of Cysteine-63 of the chloroplast ATP synthase b subunit. Biochemistry (American Chemical Society) 31: 30-5
Divita, G.; Goody, R.S.; Gaytheron, D.C. 1993: Structural mapping of catalytic site with respect to a-subunit and noncatalytic site in yeast mitochondrial F1-ATPase using fluorescence resonance energy transfer. Journal of Biological Chemistry 268: 178-186
Holowka, D.; Conrad, D.H.; Baird, B. 1985: Structural mapping of membrane-bound immunoglobulin E-receptor complexes: use of monoclonal anti-IgE antibodies to probe the conformation of receptor-bound IgE. Biochemistry 24(22): 6260-6267
Darbon, H.; Angelides, K.J. 1984: Structural mapping of the voltage-dependent sodium channel: distance between the tetrodotoxin and Centruroides suffusus suffusus II b-scorpion toxin receptors. Journal of Biological Chemistry 259: 74-84
Prag, G.; Lee, S.; Mattera, R. 2005: Structural mechanism for ubiquitinated-cargo recognition by the Golgi-localized, g-ear-containing, ADP-ribosylation-factor-binding proteins. Proceedings of the National Academy of Sciences of the United States of America 102(7): 34-9
Ghose, A.K.; Viswanadhan, V.N.; Sanghvi, Y.S. 1989: Structural mimicry of adenosine by the antitumor agents 4-methoxy- and 4-amino-8-(b- D-ribofuranosylamino)pyrimido-(5,4-d)pyrimidine as viewed by a molecular modeling method. Proceedings of the National Academy of Sciences of the United States of America 86(21): 42-6
Reilman, M.A.; Gunst, R.F. .; Lakshminarayanan, M.Y. 1985: Structural model estimation with correlated measurement errors. Biometrika 72(3): 669-672
Chen, L.; Durkin, K.A.; Casida, J.E. 2006: Structural model for g-aminobutyric acid receptor noncompetitive antagonist binding: Widely diverse structures fit the same site. Proceedings of the National Academy of Sciences of the United States of America 103(13): 85-90
Morillas, M.; Gomez Puertas, P.; Rubi, B. 2002: Structural model of a malonyl-CoA-binding site of carnitine octaprenyltransferase and carnitine palmitoyltransferase I: mutational analysis of a malonyl-CoA affinity domain. Journal of Biological Chemistry 277(13): 473-480
Moriya, K.; Shibuya, K.; Hattori, Y.; Tsuboi, S.; Shiokawa, K.; Kagabu, S. 1993: Structural Modification of the 6-Chloropyridyl Moiety in the Imidacloprid, Skeleton: Introduction of a Five-membered Heteroaromatic Ring and the Resulting Insecticidal Activity. Bioscience Biotechnology and Biochemistry 57(1): 127-128
Brangeon, J.; Balange, A.P.; Forchioni, A. 1983: Structural modifications and d-aminolevulinate dehydratase synthesis/transport in cotyledons of far-red irradiated radish. Physiologia Plantarum 58: 9-56
Wolterink, G.; van Ree, J.M.; van Nispen, J.W.; de Wied, D. 1991: Structural modifications of the ACTH-(4-9) analog ORG 2766 yields peptides with high biological activity. Life Sciences 48(2): 155-161
Severinov, K.; Mustaev, A.; Kukarin, A. 1996: Structural modules of the large subunits of RNA polymerase. Introducing archaebacterial and chloroplast split sites in the b and b' subunits of Escherichia coli RNA polymerase. Journal of Biological Chemistry 271: 969-974
Graham, K.S.; Dervan, P.B. 1990: Structural motif of the DNA binding domain of cd-resolvase characterized by affinity cleaving. Journal of Biological Chemistry 265: 534-540
Orian, A.; Schwartz, A.L.; Israel, A. 1999: Structural motifs involved in ubiquitin-mediated processing of the NF-kB precursor p105: roles of the glycine-rich region and a downstream ubiquitination domain. Molecular and Cellular Biology ): 64-73
Geisler, C.; Rubin, B.; Caspar Bauguil, S. 1992: Structural mutations of C-domains in members of the Ig superfamily. Consequences for the interactions between the T cell antigen receptor and the z2 homodimer. Journal of Immunology 148: 69-77
Giere, O.; Langheld, C. 1987: Structural organisation, transfer and biological fate of endosymbiotic bacteria in gutless oligochaetes. Marine Biology (Berlin) 93.4: 641-650
Mitsubuchi, H.; Nobukuni, Y.; Endo, F. 1991: Structural organization and chromosomal localization of the gene for the E1b subunit of human branched chain a-keto acid dehydrogenase. Journal of Biological Chemistry 266: 686-691
Zhang, Z.F.; Kelly, D.P.; Kim, J.J.; Zhou, Y.Q.; Ogden, M.L.; Whelan, A.J.; Strauss, A.W. 1992: Structural organization and regulatory regions of the human medium-chain acyl-CoA dehydrogenase gene. Biochemistry 31(1): 81-89
Russo, G.; Vincenti, D.; Ragone, R. 1992: Structural organization and stability of a thermoresistant domain generated by in vivo hydrolysis of the a-crystallin B chain from calf lens. Biochemistry (American Chemical Society) 31: 79-87
Canfield, V.A.; Levenson, R. 1991: Structural organization and transcription of the mouse gastric H+, K+-ATPase b subunit gene. Proceedings of the National Academy of Sciences of the United States of America 88: 47-51
Zampighi, G.; Kyte, J.; Freytag, W. 1984: Structural organization of (Na+ + K+)-ATPase in purified membranes. Journal of Cell Biology 98(5): 1851-1864
Maragos, C.; Hutchison, W.M.; Hayasaka, K. 1989: Structural organization of the gene for the E1a subunit of the human pyruvate dehydrogenase complex. Journal of Biological Chemistry 264: 294-298
Soininen, R.; Huotari, M.; Ganguly, A. 1989: Structural organization of the gene for the a1 chain of human type IV collagen. Journal of Biological Chemistry 264: 565-571
Orum, H.; Nielsen, H.; Engberg, J. 1992: Structural organization of the genes encoding the small nuclear RNAs U1 to U6 of Tetrahymena thermophila is very similar to that of plant small nuclear RNA genes. Journal of Molecular Biology 227(1): 114-121
Yamaki, K.; Tsuda, M.; Kikuchi, T.; Chen, K.H.; Huang, K.P.; Shinohara, T. 1990: Structural organization of the human S-antigen gene. cDNA, amino acid, intron, exon, promoter, in vitro transcription, retina, and pineal gland. Journal of Biological Chemistry 265(34): 20757-20762
Durkin, M.E.; Gautam, M.; Loechel, F. 1996: Structural organization of the human and mouse laminin b2 chain genes, and alternative splicing at the 5' end of the human transcript. Journal of Biological Chemistry 271: 407-416
Yin, D.; Chave, K.J.; Macaluso, C.R. 1999: Structural organization of the human c-glutamyl hydrolase gene. Gene 238(2): 3-70
Kruip, J.; Chitnis, P.R.; Lagoutte, B.; Rögner, M.; Boekema, E.J. 1997: Structural organization of the major subunits in cyanobacterial photosystem 1. Localization of subunits PsaC, -D, -E, -F, and -J. Journal of Biological Chemistry 272(27): 17061-17069
Godar, D.E.; Godar, D.E.; Garcia, V.; Jacobo, A.; Aebi, U.; Yang, D.C. 1988: Structural organization of the multienzyme complex of mammalian aminoacyl-tRNA synthetases. Biochemistry 27(18): 6921-6928
Arkin, I.T.; Adams, P.D.; Mackenzie, K.R. 1994: Structural organization of the pentameric transmembrane a-helices of phospholamban, a cardiac ion channel. The EMBO Journal 13: 57-64
Zulty, J.J.; Barcak, G.J. 1993: Structural organization, nucleotide sequence, and the regulation of the Haemophilus influenzae rec-1+ gene. Journal of Bacteriology 175(22): 69-81
Nakamura, H.; Morita, T.; Sato, C. 1986: Structural organizations of replicon domains during DNA synthetic phase in the mammalian nucleus. Experimental Cell Research 165(2): 291-297
Yoshizawa, S.; Fourmy, D.; Puglisi, J.D. 1998: Structural origin of gentamicin action. The EMBO Journal 17(22): 37-48
Radic, M.Z.; Mascelli, M.A.; Erikson, J.; Shan, H.; Shlomchik, M.; Weigert, M. 1989: Structural patterns in anti-DNA antibodies from MRL/lpr mice. Cold Spring Harbor Symposia on Quantitative Biology 54 Pt 2: 933-946
Sumbilla, C.; Cantilina, T.; Collins, J.H.; Malak, H.; Lakowicz, J.R.; Inesi, G. 1991: Structural perturbation of the transmembrane region interferes with calcium binding by the Ca2+ transport ATPase. Journal of Biological Chemistry 266(19): 12682-12689
Mechelli, A.; Crinion, J.T.; Noppeney, U. 2004: Structural plasticity in the bilingual brain. Nature 431: 7
Casasnovas, J.M.; Huertas, D.; Ortiz-Lombardía, M.; Kypr, J.; Azorín, F. 1993: Structural polymorphism of d(GA.TC)n DNA sequences. Intramolecular and intermolecular associations of the individual strands. Journal of Molecular Biology 233(4): 671-681
Larsen, B.; Gesteland, R.F.; Atkins, J.F. 1997: Structural probing and mutagenic analysis of the stem-loop required for Escherichia coli dnaX ribosomal frameshifting: programmed efficiency of 50%. Journal of Molecular Biology 271(1): 47-60
Williams, A.D.; Sega, M.; Chen, M. 2005: Structural properties of Ab protofibrils stabilized by a small molecule. Proceedings of the National Academy of Sciences of the United States of America 102(20): 15-20
Hug Iten, S.; Escher, F.; Conde Petit, B. 2001: Structural properties of starch in bread and bread model system: influence of an antistaling a-amylase. Cereal Chemistry 78(4): 1-8
Shafferman, A.; Helinski, D.R. 1983: Structural properties of the b origin of replication of plasmid R6K. Journal of Biological Chemistry 258: 83-90
Giraud-Panis, M.J.; Lilley, D.M. 1998: Structural recognition and distortion by the DNA junction-resolving enzyme RusA. Journal of Molecular Biology 278(1): 117-133
Altieri, D.C.; Duperray, A.; Plescia, J. 1995: Structural recognition of a novel fibrinogen c chain sequence (117-133) by intercellular adhesion molecule-1 mediates leukocyte-endothelium interaction. Journal of Biological Chemistry 270: 6-9
Desai, S.A.; Wang, X.; Noronha, E.J. 2000: Structural relatedness of distinct determinants recognized by monoclonal antibody TP25.99 on b2-microglobulin-associated and b2-microglobulin-free HLA class I heavy chains. Journal of Immunology 165(6): 75-83
Walderhaug, M.O.; Post, R.L.; Saccomani, G.; Leonard, R.T.; Briskin, D.P. 1985: Structural relatedness of three ion-transport adenosine triphosphatases around their active sites of phosphorylation. Journal of Biological Chemistry 260(6): 3852-3859
Rouault, T.A.; Stout, C.D.; Kaptain, S.; Harford, J.B.; Klausner, R.D. 1991: Structural relationship between an iron-regulated RNA-binding protein (IRE-BP) and aconitase: functional implications. Cell 64(5): 881-883
Lee, W.H.; Phares, W.; Duesberg, P.H. 1983: Structural relationship between the chicken DNA locus, proto-fps, and the transforming gene of Fujinami sarcoma virus, Dgag- fps. Virology 129: 93
Jansen, H.W.; Trachmann, C.; Bister, K. 1984: Structural relationship between the chicken protooncogene c-mil and the retroviral oncogene v-mil. Virology 137(1): 217-224
Siegal, G.; Turchi, J.J.; Jessee, C.Bret 1992: Structural relationships between two forms of DNA polymerase e from calf thymus. Journal of Biological Chemistry 267: 91-99
Guy, C.S.; Willis, D.W. 1990: Structural relationships of largemouth bass and bluegill populations in South Dakota ponds. North American Journal of Fisheries Management 10 Summer : 8-43
Horikoshi, M.; Sekimizu, K.; Hirashima, S.; Mitsuhashi, Y.; Natori, S. 1985: Structural relationships of the three stimulatory factors of RNA polymerase Ii from Ehrlich ascites tumor cells. Journal of Biological Chemistry 260(9): 5739-5744
Moffett, S.B.; Ridgway, R.L. 1988: Structural repair and functional recovery following cerebral ganglion removal in the pulmonate snail Melampus. American Zoologist 28(4 ): 09-22
Singh, V. 1986: Structural requirement for the recognition of luteinizing hormone releasing hormone (LHRH) by monoclonal and conventional anti-LHRH antibodies. Biochemistry and Cell Biology 64(12): 1372-1377
Hirosaki, T.; Mizushima, H.; Tsubota, Y. 2000: Structural requirement of carboxyl-terminal globular domains of laminin a3 chain for promotion of rapid cell adhesion and migration by laminin-5. Journal of Biological Chemistry 275(29): 495-502
Walker, J.; Green, J.M. 1999: Structural requirements for CD43 function. Journal of Immunology 162(7): 4109-4114
Astermark, J.; Bjork, I.; Ohlin, A.K.istin 1991: Structural requirements for Ca2+ binding to the c-carboxyglutamic acid and epidermal growth factor-like regions of factor IX. Studies using intact domains isolated from controlled proteolytic digests of bovine factor IX. Journal of Biological Chemistry 266: 30-37
De Haan, C.A.; Roestenberg, P.; de Wit, M.; de Vries, A.A.; Nilsson, T.; Vennema, H.; Rottier, P.J. 1998: Structural requirements for O-glycosylation of the mouse hepatitis virus membrane protein. Journal of Biological Chemistry 273(45): 29905-29914
Casey, J.L.; Bergmann, K.F.; Brown, T.L. 1992: Structural requirements for RNA editing in hepatitis d virus: evidence for a uridine-to-cytidine editing mechanism. Proceedings of the National Academy of Sciences of the United States of America 89: 49-53
Wong, Y.W.; Gill, D.S.; Parhami-Seren, B.; Short, M.K.; Sompuram, S.R.; Margolies, M.N. 1998: Structural requirements for a specificity switch and for maintenance of affinity using mutational analysis of a phage-displayed anti-arsonate antibody of Fab heavy chain first complementarity-determining region. Journal of Immunology 160(12): 5990-5997
Krasnoperov, V.; Bittner, M.A.; Holz, R.W. 1999: Structural requirements for a-latrotoxin binding and a-latrotoxin-stimulated secretion. A study with calcium-independent receptor of a-latrotoxin (CIRL) deletion mutants. Journal of Biological Chemistry 274(6): 90-96
Ruggiero, F.; Comte, J.; Cabanas, C. 1996: Structural requirements for a1b1 and a2b1 integrin mediated cell adhesion to collagen V. Journal of Cell Science 109: 65-74
Krugmann, S.; Pleass, R.J.; Atkin, J.D. 1997: Structural requirements for assembly of dimeric IgA probed by site-directed mutagenesis of J chain and a cysteine residue of the a-chain CH2 domain. Journal of Immunology 159: 4-9
Finkelstein, L.D.; Reynolds, P.J.; Hunt, S.W.IIi 1997: Structural requirements for b1 integrin-mediated tyrosine phosphorylation in human T cells. Journal of Immunology 159: 55-63
Rodrigues-Lima, F.; Fensome, A.C.; Josephs, M.; Evans, J.; Veldman, R.J.; Katan, M. 2000: Structural requirements for catalysis and membrane targeting of mammalian enzymes with neutral sphingomyelinase and lysophospholipid phospholipase C activities. Analysis by chemical modification and site-directed mutagenesis. Journal of Biological Chemistry 275(36): 28316-28325
Reith, M.E.A.; Kim, S.S.; Lajtha, A. 1986: Structural requirements for cocaine congeners to interact with (3H)batrachotoxinin A 20-a-benzoate binding sites on sodium channels in mouse brain synaptosomes. Journal of Biological Chemistry 261: 00-05
Senechal, K.; Heaney, C.; Druker, B.; Sawyers, C.L. 1998: Structural requirements for function of the Crkl adapter protein in fibroblasts and hematopoietic cells. Molecular and Cellular Biology 18(9): 5082-5090
Malhotra, J.D.; Koopmann, M.C.; Kazen Gillespie, K.A. 2002: Structural requirements for interaction of sodium channel b1 subunits with ankyrin. Journal of Biological Chemistry 277(29): 681-688
Briskin, M.J.; Rott, L.; Butcher, E.C. 1996: Structural requirements for mucosal vascular addressin binding to its lymphocyte receptor a4b7. Common themes among integrin-Ig family interactions. Journal of Immunology 156: 9-26
Fu, Y.X.; Vollmer, M.; Kalataradi, H. 1994: Structural requirements for peptides that stimulate a subset of cd T cells. Journal of Immunology 152: 78-88
Green, C.J.; Vold, B.S. 1988: Structural requirements for processing of synthetic tRNAHis precursors by the catalytic RNA component of RNase P. Journal of Biological Chemistry 263(2): 652-657
Polakis, P.; McCormick, F. 1993: Structural requirements for the interaction of p21ras with GAP, exchange factors, and its biological effector target. Journal of Biological Chemistry 268(13): 9157-9160
Aris, L.; Gilchrist, A.; Rens Domiano, S. 2001: Structural requirements for the stabilization of metarhodopsin II by the C terminus of the a subunit of transducin. Journal of Biological Chemistry 276(4): 33-39
Simenel, C.; Van Troys, M.; Vandekerckhove, J. 2000: Structural requirements for thymosin b4 in its contact with actin. An NMR-analysis of thymosin b4 mutants in solution and correlation with their biological activity. European Journal of Biochemistry 267(12): 30-8
Nes, W.David; Janssen, G.G.; Bergenstrahle, A. 1991: Structural requirements for transformation of substrates by the (S)-adenosyl- L-methionine:D24(25)-sterol methyl transferase. Journal of Biological Chemistry 266: 202-212
Janssen, G.G.; Nes, W.David 1992: Structural requirements for transformation of substrates by the S-adenosyl- L-methionine:D24(25)-sterol methyltransferase. Inhibition by analogs of the transition state coordinate. Journal of Biological Chemistry 267: 856-863
Wierzbicka Patynowski, I.; Niewiarowski, S.; Marcinkiewicz, C. 1999: Structural requirements of echistatin for the recognition of avb3 and a5b1 integrins. Journal of Biological Chemistry 274(53): 809-814
Mcnicholl, J.M.; Whitworth, W.C.; Oftung, F. 1995: Structural requirements of peptide and MHC for DR(a,b1*0401)-restricted T cell antigen recognition. Journal of Immunology 155: 51-63
Pawelczyk, T.; Matecki, A. 1997: Structural requirements of phospholipase C d1 for regulation by spermine, sphingosine and sphingomyelin. European Journal of Biochemistry 248: 9-65
Pholpramool, C.; Ruchirawat, S.; Verawatnapakul, V.; Paovalo, C.; Lewin, L.M. 1991: Structural requirements of some sulphonamides that possess an antifertility activity in male rats. Journal of Reproduction and Fertility 92(1): 169-178
Padilla, D.K. 1985: Structural resistance of algae to herbivores. A biochemical approach. ine Biology 90: 3-9
Mahadevan, D.; Yu, J.C.; Saldanha, J.W. 1995: Structural role of extracellular domain 1 of a-platelet-derived growth factor (PDGF) receptor for PDGF-AA and PDGF-BB binding. Journal of Biological Chemistry 270: 595-600
Landgraf, B.; Cohen, F.E.; Smith, K.A.; Gadski, R.; Ciardelli, T.L. 1989: Structural significance of the C-terminal amphiphilic helix of interleukin-2. Journal of Biological Chemistry 264(2): 816-822
Van Belkum, A.; Bingkun, J.; Rietveld, K. 1987: Structural similarities among valine-accepting tRNA-like structures in tymoviral RNAs and elongator tRNAs. Biochemistry (American Chemical Society) 26: 44-51
D'amico, S.; Gerday, C.; Feller, G. 2000: Structural similarities and evolutionary relationships in chloride-dependent a-amylases. Gene 253(1): 105
Perona, J.J.; Rould, M.A.; Steitz, T.A.; Risler, J.L.; Zelwer, C.; Brunie, S. 1991: Structural similarities in glutaminyl- and methionyl-tRNA synthetases suggest a common overall orientation of tRNA binding. Proceedings of the National Academy of Sciences of the United States of America 88(7): 2903-2907