EurekaMag PDF full texts Chapter 51,912
References:
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Ishikura, R.; Ando, K.; Hirota, S.; Okamoto, N.; Fatterpekar, G.; Sacher, M. 2010: Callosal and diffuse white matter lesions with restricted water diffusion in hemophagocytic syndrome. Magnetic Resonance in Medical Sciences: Mrms: An Official Journal of Japan Society of Magnetic Resonance in Medicine 9(2): 91-94
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Guerriero, G.; Giorno, F.; Folgado, R.; Printz, B.; Baric, S.; Hausman, J.-F. 2014: Callose and cellulose synthase gene expression analysis from the tight cluster to the full bloom stage and during early fruit development in Malus × domestica. Journal of Plant Research 127(1): 173-183
Ellinger, D.; Voigt, C.A. 2014: Callose biosynthesis in Arabidopsis with a focus on pathogen response: what we have learned within the last decade. Annals of Botany 114(6): 1349-1358
Vatén, A.; Dettmer, J.; Wu, S.; Stierhof, Y.-D.; Miyashima, S.; Yadav, S.R.; Roberts, C.J.; Campilho, A.; Bulone, V.; Lichtenberger, R.; Lehesranta, S.; Mähönen, A.P.; Kim, J.-Y.; Jokitalo, E.; Sauer, N.; Scheres, B.; Nakajima, K.; Carlsbecker, A.; Gallagher, K.L.; Helariutta, Y.ä 2011: Callose biosynthesis regulates symplastic trafficking during root development. Developmental Cell 21(6): 1144-1155
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Barratt, D.H.P.; Kölling, K.; Graf, A.; Pike, M.; Calder, G.; Findlay, K.; Zeeman, S.C.; Smith, A.M. 2011: Callose synthase GSL7 is necessary for normal phloem transport and inflorescence growth in Arabidopsis. Plant Physiology 155(1): 328-341
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Waller, R.; Gardner, F.; Shaw, D.S.; Dishion, T.J.; Wilson, M.N.; Hyde, L.W. 2015: Callous-unemotional behavior and early-childhood onset of behavior problems: the role of parental harshness and warmth. Journal of Clinical Child and Adolescent Psychology: the Official Journal for the Society of Clinical Child and Adolescent Psychology American Psychological Association Division 53 44(4): 655-667
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Humayun, S.; Kahn, R.E.; Frick, P.J.; Viding, E. 2014: Callous-unemotional traits and anxiety in a community sample of 7-year-olds. Journal of Clinical Child and Adolescent Psychology: the Official Journal for the Society of Clinical Child and Adolescent Psychology American Psychological Association Division 53 43(1): 36-42
Wymbs, B.T.; McCarty, C.A.; Baer, J.S.; King, K.M.; Stoep, A.Vander.; McCauley, E. 2013: Callous-unemotional traits and conduct disorder symptoms as prospective risk factors for adolescent sexual activity. Journal of Clinical Child and Adolescent Psychology: the Official Journal for the Society of Clinical Child and Adolescent Psychology American Psychological Association Division 53 42(5): 693-699
White, S.F.; Frick, P.J.; Lawing, K.; Bauer, D. 2013: Callous-unemotional traits and response to functional family therapy in adolescent offenders. Behavioral Sciences and the Law 31(2): 271-285
Stickle, T.R.; Kirkpatrick, N.M.; Brush, L.N. 2009: Callous-unemotional traits and social information processing: multiple risk-factor models for understanding aggressive behavior in antisocial youth. Law and Human Behavior 33(6): 515-529
Kimonis, E.R.; Frick, P.J.; Munoz, L.C.; Aucoin, K.J. 2008: Callous-unemotional traits and the emotional processing of distress cues in detained boys: testing the moderating role of aggression, exposure to community violence, and histories of abuse. Development and Psychopathology 20(2): 569-589
Hawes, D.J.; Price, M.J.; Dadds, M.R. 2014: Callous-unemotional traits and the treatment of conduct problems in childhood and adolescence: a comprehensive review. Clinical Child and Family Psychology Review 17(3): 248-267
Sharp, C.; Vanwoerden, S.; Van Baardewijk, Y.; Tackett, J.L.; Stegge, H. 2015: Callous-unemotional traits are associated with deficits in recognizing complex emotions in preadolescent children. Journal of Personality Disorders 29(3): 347-359
Muñoz, L.C. 2009: Callous-unemotional traits are related to combined deficits in recognizing afraid faces and body poses. Journal of the American Academy of Child and Adolescent Psychiatry 48(5): 554-562
Dadds, M.R.; Allen, J.L.; McGregor, K.; Woolgar, M.; Viding, E.; Scott, S. 2014: Callous-unemotional traits in children and mechanisms of impaired eye contact during expressions of love: a treatment target?. Journal of Child Psychology and Psychiatry and Allied Disciplines 55(7): 771-780
Kimonis, E.R.; Fanti, K.; Goldweber, A.; Marsee, M.A.; Frick, P.J.; Cauffman, E. 2014: Callous-unemotional traits in incarcerated adolescents. Psychological Assessment 26(1): 227-237
White, S.F.; Brislin, S.J.; Meffert, H.; Sinclair, S.; Blair, R.J.R. 2013: Callous-unemotional traits modulate the neural response associated with punishing another individual during social exchange: a preliminary investigation. Journal of Personality Disorders 27(1): 99-112
Kahn, R.E.; Byrd, A.L.; Pardini, D.A. 2013: Callous-unemotional traits robustly predict future criminal offending in young men. Law and Human Behavior 37(2): 87-97
Blader, J.C.; Pliszka, S.R.; Kafantaris, V.; Foley, C.A.; Crowell, J.A.; Carlson, G.A.; Sauder, C.L.; Margulies, D.M.; Sinha, C.; Sverd, J.; Matthews, T.L.; Bailey, B.Y.; Daviss, W.B. 2013: Callous-unemotional traits, proactive aggression, and treatment outcomes of aggressive children with attention-deficit/hyperactivity disorder. Journal of the American Academy of Child and Adolescent Psychiatry 52(12): 1281-1293
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Yokokura, S.; Yurimoto, S.; Matsuoka, A.; Imataki, O.; Dobashi, H.; Bandoh, S.; Matsunaga, T. 2014: Calmodulin antagonists induce cell cycle arrest and apoptosis in vitro and inhibit tumor growth in vivo in human multiple myeloma. Bmc Cancer 14: 882
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Galindo, B.E.; Darszon, A. 2011: Calmodulin antagonists inhibit sea urchin sperm hyperpolarization necessary for directed movement toward the egg. Proceedings of the Western Pharmacology Society 54: 80-82
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Ma, C.; Tang, K.; Liu, Q.; Zhu, R.; Cao, Z. 2013: Calmodulin as a potential target by which berberine induces cell cycle arrest in human hepatoma Bel7402 cells. Chemical Biology and Drug Design 81(6): 775-783
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Abdel-Hamid, H.; Chin, K.; Shahinas, D.; Moeder, W.; Yoshioka, K. 2010: Calmodulin binding to Arabidopsis cyclic nucleotide gated ion channels. Plant Signaling and Behavior 5(9): 1147-1149
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Taylor, J.E.; Chow, J.Y.H.; Jeffries, C.M.; Kwan, A.H.; Duff, A.P.; Hamilton, W.A.; Trewhella, J. 2012: Calmodulin binds a highly extended HIV-1 MA protein that refolds upon its release. Biophysical Journal 103(3): 541-549
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Lu, Z.; Shen, M.; Cao, Y.; Zhang, H.-M.; Yao, L.-L.; Li, X.-d. 2012: Calmodulin bound to the first IQ motif is responsible for calcium-dependent regulation of myosin 5a. Journal of Biological Chemistry 287(20): 16530-16540
Gol'dshtein, B.N.; Aksirov, A.M.; Zakrzhevskaia, D.T. 2007: Calmodulin can induce and control damping oscillations in the plasma membrane Ca2+ -ATPase activity: a kinetic model. Biofizika 52(6): 1067-1072
Orellana, D.; Liu, X.; Wang, G.-L.; Jin, J.; Iakova, P.; Timchenko, N.A. 2010: Calmodulin controls liver proliferation via interactions with C/EBPbeta-LAP and C/EBPbeta-LIP. Journal of Biological Chemistry 285(30): 23444-23456
Pang, Z.P.; Cao, P.; Xu, W.; Südhof, T.C. 2010: Calmodulin controls synaptic strength via presynaptic activation of calmodulin kinase Ii. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 30(11): 4132-4142
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Lee, J.H.; Lee, J.; Choi, K.Y.; Hepp, R.; Lee, J.-Y.; Lim, M.K.; Chatani-Hinze, M.; Roche, P.A.; Kim, D.G.; Ahn, Y.S.; Kim, C.H.; Roche, K.W. 2008: Calmodulin dynamically regulates the trafficking of the metabotropic glutamate receptor mGluR5. Proceedings of the National Academy of Sciences of the United States of America 105(34): 12575-12580
Van Hook, M.J.; Parmelee, C.M.; Chen, M.; Cork, K.M.; Curto, C.; Thoreson, W.B. 2014: Calmodulin enhances ribbon replenishment and shapes filtering of synaptic transmission by cone photoreceptors. Journal of General Physiology 144(5): 357-378
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Lambert, D.W.; Clarke, N.E.; Hooper, N.M.; Turner, A.J. 2008: Calmodulin interacts with angiotensin-converting enzyme-2 (ACE2) and inhibits shedding of its ectodomain. Febs Letters 582(2): 385-390
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Yu, C.G.; Li, Y.; Raza, K.; Yu, X.X.; Ghoshal, S.; Geddes, J.W. 2013: Calpain 1 knockdown improves tissue sparing and functional outcomes after spinal cord injury in rats. Journal of Neurotrauma 30(6): 427-433
Moreno-Luna, R.ón.; Abrante, A.; Esteban, F.; González-Moles, M.A.; Delgado-Rodríguez, M.; Sáez, M.ía.E.; González-Pérez, A.; Ramírez-Lorca, R.; Real, L.M.; Ruiz, A.ín. 2011: Calpain 10 gene and laryngeal cancer: a survival analysis. Head and Neck 33(1): 72-76
Yilmaz, M.; Yurtçu, E.; Demirci, H.; Ergün, M.A.; Ersoy, R.; Karakoç, A.; Yetkin, I.; Cakir, N.; Ayvaz, G.; Arslan, M. 2009: Calpain 10 gene single-nucleotide 44 polymorphism may have an influence on clinical and metabolic features in patients with polycystic ovary syndrome. Journal of Endocrinological Investigation 32(1): 13-17
Smith, M.A.; McInnes, C.; Whitaker, R.M.; Lindsey, C.C.; Comer, R.F.; Beeson, C.C.; Schnellmann, R.G. 2012: Calpain 10 homology modeling with CYGAK and increased lipophilicity leads to greater potency and efficacy in cells. Acs Chemical Biology 7(8): 1410-1419
Elagib, K.E.; Rubinstein, J.D.; Delehanty, L.L.; Ngoh, V.S.; Greer, P.A.; Li, S.; Lee, J.K.; Li, Z.; Orkin, S.H.; Mihaylov, I.S.; Goldfarb, A.N. 2013: Calpain 2 activation of P-TEFb drives megakaryocyte morphogenesis and is disrupted by leukemogenic GATA1 mutation. Developmental Cell 27(6): 607-620
Kaneko, Y.; Murphy, C.R.; Day, M.L. 2014: Calpain 2 activity increases at the time of implantation in rat uterine luminal epithelial cells and administration of calpain inhibitor significantly reduces implantation sites. Histochemistry and Cell Biology 141(4): 423-430
Svensson, L.; McDowall, A.; Giles, K.M.; Stanley, P.; Feske, S.; Hogg, N. 2010: Calpain 2 controls turnover of LFA-1 adhesions on migrating T lymphocytes. Plos one 5(11): E15090
Jang, H.S.; Lal, S.; Greenwood, J.A. 2010: Calpain 2 is required for glioblastoma cell invasion: regulation of matrix metalloproteinase 2. Neurochemical Research 35(11): 1796-1804
Magnaghi-Jaulin, L.; Marcilhac, A.; Rossel, M.; Jaulin, C.; Benyamin, Y.; Raynaud, F. 2010: Calpain 2 is required for sister chromatid cohesion. Chromosoma 119(3): 267-274
Lal, S.; La Du, J.; Tanguay, R.L.; Greenwood, J.A. 2012: Calpain 2 is required for the invasion of glioblastoma cells in the zebrafish brain microenvironment. Journal of Neuroscience Research 90(4): 769-781
Ho, W.-c.; Pikor, L.; Gao, Y.; Elliott, B.E.; Greer, P.A. 2012: Calpain 2 regulates Akt-FoxO-p27(Kip1) protein signaling pathway in mammary carcinoma. Journal of Biological Chemistry 287(19): 15458-15465
Vattemi, G.; Tonin, P.; Neri, M.; Marini, M.; Gualandi, F.; Guglielmi, V.; Ferlini, A.; Tomelleri, G. 2009: Calpain 3 deficiency presenting as fibre type disproportion. Neuropathology and Applied Neurobiology 35(6): 614-617
De Morrée, A.; Lutje Hulsik, D.; Impagliazzo, A.; van Haagen, H.H.H.B.M.; de Galan, P.; van Remoortere, A.; 't Hoen, P.A.C.; van Ommen, G.B.; Frants, R.R.; van der Maarel, S.èr.M. 2010: Calpain 3 is a rapid-action, unidirectional proteolytic switch central to muscle remodeling. Plos one 5(8): E11940
Kramerova, I.; Kudryashova, E.; Venkatraman, G.; Spencer, M.J. 2007: Calpain 3 participates in sarcomere remodeling by acting upstream of the ubiquitin-proteasome pathway. Human Molecular Genetics 16(8): 1006
Beckmann, J.S.; Spencer, M. 2008: Calpain 3, the "gatekeeper" of proper sarcomere assembly, turnover and maintenance. Neuromuscular Disorders: Nmd 18(12): 913-921
Wernimont, S.A.; Simonson, W.T.N.; Greer, P.A.; Seroogy, C.M.; Huttenlocher, A. 2010: Calpain 4 is not necessary for LFA-1-mediated function in CD4+ T cells. Plos one 5(5): E10513
Singh, R.; Brewer, M.K.; Mashburn, C.B.; Lou, D.; Bondada, V.; Graham, B.; Geddes, J.W. 2014: Calpain 5 is highly expressed in the central nervous system (CNS), carries dual nuclear localization signals, and is associated with nuclear promyelocytic leukemia protein bodies. Journal of Biological Chemistry 289(28): 19383-19394
Hata, S.; Abe, M.; Suzuki, H.; Kitamura, F.; Toyama-Sorimachi, N.; Abe, K.; Sakimura, K.; Sorimachi, H. 2010: Calpain 8/nCL-2 and calpain 9/nCL-4 constitute an active protease complex, G-calpain, involved in gastric mucosal defense. Plos Genetics 6(7): E1001040
Fontenele, M.; Lim, B.; Oliveira, D.; Buffolo, M.ár.; Perlman, D.H.; Schupbach, T.; Araujo, H. 2013: Calpain a modulates Toll responses by limited Cactus/IκB proteolysis. Molecular Biology of the Cell 24(18): 2966-2980
Vaisid, T.; Barnoy, S.; Kosower, N.S. 2009: Calpain activates caspase-8 in neuron-like differentiated PC12 cells via the amyloid-beta-peptide and CD95 pathways. International Journal of Biochemistry and Cell Biology 41(12): 2450-2458
Gou-Fabregas, M.; Ramírez-Núñez, O.; Cacabelos, D.; Bahi, N.; Portero, M.; Garcera, A.; Soler, R.M. 2014: Calpain activation and CaMKIV reduction in spinal cords from hSOD1G93A mouse model. Molecular and Cellular Neurosciences 61: 219-225
Brustovetsky, T.; Bolshakov, A.; Brustovetsky, N. 2010: Calpain activation and Na+/Ca2+ exchanger degradation occur downstream of calcium deregulation in hippocampal neurons exposed to excitotoxic glutamate. Journal of Neuroscience Research 88(6): 1317-1328
Momeni, H.R.; Azadi, S.; Kanje, M. 2007: Calpain activation and apoptosis in motor neurons of cultured adult mouse spinal cord. Functional Neurology 22(2): 105-110
Bergounioux, J.; Arbibe, L. 2012: Calpain activation by Shigella flexneri regulates key steps in the life and death of bacterium's epithelial niche. Medecine sciences: M/S 28(12): 1029-1031
Yang, G-Ying.; Liang, B.; Zhu, J.; Luo, Z-Ge. 2011: Calpain activation by Wingless-type murine mammary tumor virus integration site family, member 5A (Wnt5a) promotes axonal growth. Journal of Biological Chemistry 286(8): 6566-6576
Simonin, Y.; Disson, O.; Lerat, H.é; Antoine, E.; Binamé, F.; Rosenberg, A.R.; Desagher, S.; Lassus, P.; Bioulac-Sage, P.; Hibner, U. 2009: Calpain activation by hepatitis C virus proteins inhibits the extrinsic apoptotic signaling pathway. Hepatology 50(5): 1370-1379
Bergounioux, J.; Elisee, R.; Prunier, A.-L.; Donnadieu, F.ço.; Sperandio, B.; Sansonetti, P.; Arbibe, L. 2012: Calpain activation by the Shigella flexneri effector VirA regulates key steps in the formation and life of the bacterium's epithelial niche. Cell Host and Microbe 11(3): 240-252
Supinski, G.S.; Callahan, L.Ann. 2010: Calpain activation contributes to endotoxin-induced diaphragmatic dysfunction. American Journal of Respiratory Cell and Molecular Biology 42(1): 80-87
Li, Y.; Li, Y.; Feng, Q.; Arnold, M.; Peng, T. 2009: Calpain activation contributes to hyperglycaemia-induced apoptosis in cardiomyocytes. Cardiovascular Research 84(1): 100-110
Huang, W.; Fileta, J.; Rawe, I.; Qu, J.; Grosskreutz, C.L. 2010: Calpain activation in experimental glaucoma. Investigative Ophthalmology and Visual Science 51(6): 3049-3054
Páramo, B.; Montiel, T.; Hernández-Espinosa, D.R.; Rivera-Martínez, M.; Morán, J.; Massieu, L. 2013: Calpain activation induced by glucose deprivation is mediated by oxidative stress and contributes to neuronal damage. International Journal of Biochemistry and Cell Biology 45(11): 2596-2604
Quintanar, L.; Montiel, T.; Márquez, M.; González, A.; Massieu, L. 2012: Calpain activation is involved in acute manganese neurotoxicity in the rat striatum in vivo. Experimental Neurology 233(1): 182-192
Wang, Y.; Kim, N.S.; Li, X.; Greer, P.A.; Koehler, R.C.; Dawson, V.L.; Dawson, T.M. 2009: Calpain activation is not required for AIF translocation in PARP-1-dependent cell death (parthanatos). Journal of Neurochemistry 110(2): 687-696
Hamelet, J.; Couty, J.-P.; Crain, A.-M.; Noll, C.; Postic, C.; Paul, J.-L.; Delabar, J.-M.; Viguier, M.; Janel, N. 2009: Calpain activation is required for homocysteine-mediated hepatic degradation of inhibitor i kappa B alpha. Molecular Genetics and Metabolism 97(2): 114-120
Liang, B.; Duan, B.-Y.; Zhou, X.-P.; Gong, J.-X.; Luo, Z.-G. 2010: Calpain activation promotes BACE1 expression, amyloid precursor protein processing, and amyloid plaque formation in a transgenic mouse model of Alzheimer disease. Journal of Biological Chemistry 285(36): 27737-27744
Zhang, W.; Liu, J.; Sun, R.; Zhao, L.; Du, J.; Ruan, C.; Dai, K. 2011: Calpain activator dibucaine induces platelet apoptosis. International Journal of Molecular Sciences 12(4): 2125-2137
Tsai, J.-C.; Lin, Y.-W.; Huang, C.-Y.; Lin, F.-Y.; Tsai, C.-S. 2014: Calpain activity and Toll-like receptor 4 expression in platelet regulate haemostatic situation in patients undergoing cardiac surgery and coagulation in mice. Mediators of Inflammation 2014: 484510
Smith, I.J.; Lecker, S.H.; Hasselgren, P.-O. 2008: Calpain activity and muscle wasting in sepsis. American Journal of Physiology. Endocrinology and Metabolism 295(4): E762-E771
Grumelli, C.; Berghuis, P.; Pozzi, D.; Caleo, M.; Antonucci, F.; Bonanno, G.; Carmignoto, G.; Dobszay, M.Benedek.; Harkany, T.; Matteoli, M.; Verderio, C. 2008: Calpain activity contributes to the control of SNAP-25 levels in neurons. Molecular and Cellular Neurosciences 39(3): 314-323
Nassar, D.; Letavernier, E.; Baud, L.; Aractingi, S.; Khosrotehrani, K. 2012: Calpain activity is essential in skin wound healing and contributes to scar formation. Plos one 7(5): E37084
Smith, I.J.; Aversa, Z.; Hasselgren, P.-O.; Pacelli, F.; Rosa, F.; Doglietto, G.B.; Bossola, M. 2011: Calpain activity is increased in skeletal muscle from gastric cancer patients with no or minimal weight loss. Muscle and Nerve 43(3): 410-414
Kaur, J.; Mencl, S.; Sahaboglu, A.; Farinelli, P.; van Veen, T.; Zrenner, E.; Ekström, P.; Paquet-Durand, F.ço.; Arango-Gonzalez, B. 2011: Calpain and PARP activation during photoreceptor cell death in P23H and S334ter rhodopsin mutant rats. Plos one 6(7): E22181
Gladding, C.M.; Sepers, M.D.; Xu, J.; Zhang, L.Y.J.; Milnerwood, A.J.; Lombroso, P.J.; Raymond, L.A. 2012: Calpain and STriatal-Enriched protein tyrosine phosphatase (STEP) activation contribute to extrasynaptic NMDA receptor localization in a Huntington's disease mouse model. Human Molecular Genetics 21(17): 3739-3752
Miyazaki, T.; Koya, T.; Kigawa, Y.; Oguchi, T.; Lei, X-Feng.; Kim-Kaneyama, J-ri.; Miyazaki, A. 2013: Calpain and atherosclerosis. Journal of Atherosclerosis and Thrombosis 20(3): 228-237
Guha, P.; Dey, A.; Dhyani, M.V.; Sen, R.; Chatterjee, M.; Chattopadhyay, S.; Bandyopadhyay, S.K. 2010: Calpain and caspase orchestrated death signal to accomplish apoptosis induced by resveratrol and its novel analog hydroxystilbene-1 [correction of hydroxstilbene-1] in cancer cells. Journal of Pharmacology and Experimental Therapeutics 334(2): 381-394
Martinez, J.A.; Zhang, Z.; Svetlov, S.I.; Hayes, R.L.; Wang, K.K.; Larner, S.F. 2010: Calpain and caspase processing of caspase-12 contribute to the ER stress-induced cell death pathway in differentiated PC12 cells. Apoptosis: An International Journal on Programmed Cell Death 15(12): 1480-1493
Powers, S.K. 2009: Calpain and caspase-3 are required for sepsis-induced diaphragmatic weakness. Journal of Applied Physiology 107(5): 1369
Nguyen, A.T.H.; Campbell, M.; Kenna, P.F.; Kiang, A.-S.; Tam, L.; Humphries, M.M.; Humphries, P. 2012: Calpain and photoreceptor apoptosis. Advances in Experimental Medicine and Biology 723: 547-552
Martinez, L.B.; Walsh, S.M.; Jacobsen, M.T.; Sato, S.; Wiederin, J.; Ciborowski, P.; Ikezu, T. 2009: Calpain and proteasomal regulation of antiretroviral zinc finger protein OTK18 in human macrophages: visualization in live cells by intramolecular FRET. Journal of Neuroimmune Pharmacology: the Official Journal of the Society on Neuroimmune Pharmacology 4(1): 116-128
Sobhan, P.K.; Seervi, M.; Deb, L.; Varghese, S.; Soman, A.; Joseph, J.; Mathew, K.A.; Raghu, G.; Thomas, G.; E, S.; S, M.; R, S.K.T. 2013: Calpain and reactive oxygen species targets Bax for mitochondrial permeabilisation and caspase activation in zerumbone induced apoptosis. Plos one 8(4): E59350
Doshi, S.; Lynch, D.R. 2009: Calpain and the glutamatergic synapse. Frontiers in Bioscience 1(2): 466-476
Samantaray, S.; Ray, S.K.; Banik, N.L. 2008: Calpain as a potential therapeutic target in Parkinson's disease. Cns and Neurological Disorders Drug Targets 7(3): 305-312
Saatman, K.E.; Creed, J.; Raghupathi, R. 2010: Calpain as a therapeutic target in traumatic brain injury. Neurotherapeutics: the Journal of the American Society for Experimental Neurotherapeutics 7(1): 31-42
Sorimachi, H.; Hata, S.; Ono, Y. 2011: Calpain chronicle--an enzyme family under multidisciplinary characterization. Proceedings of the Japan Academy. Series B Physical and Biological Sciences 87(6): 287-327
Atherton, J.; Kurbatskaya, K.; Bondulich, M.; Croft, C.L.; Garwood, C.J.; Chhabra, R.; Wray, S.; Jeromin, A.; Hanger, D.P.; Noble, W. 2014: Calpain cleavage and inactivation of the sodium calcium exchanger-3 occur downstream of Aβ in Alzheimer's disease. Aging Cell 13(1): 49-59
Buddhala, C.; Suarez, M.; Modi, J.; Prentice, H.; Ma, Z.; Tao, R.; Wu, J.Y. 2012: Calpain cleavage of brain glutamic acid decarboxylase 65 is pathological and impairs GABA neurotransmission. Plos one 7(3): E33002
DuVerle, D.A.; Ono, Y.; Sorimachi, H.; Mamitsuka, H. 2011: Calpain cleavage prediction using multiple kernel learning. Plos one 6(5): E19035
Redpath, G.M.I.; Woolger, N.; Piper, A.K.; Lemckert, F.A.; Lek, A.; Greer, P.A.; North, K.N.; Cooper, S.T. 2014: Calpain cleavage within dysferlin exon 40a releases a synaptotagmin-like module for membrane repair. Molecular Biology of the Cell 25(19): 3037-3048
Kaczmarek, J.S.; Riccio, A.; Clapham, D.E. 2012: Calpain cleaves and activates the TRPC5 channel to participate in semaphorin 3A-induced neuronal growth cone collapse. Proceedings of the National Academy of Sciences of the United States of America 109(20): 7888-7892
Clinkinbeard, T.; Ghoshal, S.; Craddock, S.; Creed Pettigrew, L.; Guttmann, R.P. 2013: Calpain cleaves methionine aminopeptidase-2 in a rat model of ischemia/reperfusion. Brain Research 1499: 129-135
Averna, M.; Stifanese, R.; Grosso, R.; Pedrazzi, M.; De Tullio, R.; Salamino, F.; Sparatore, B.; Pontremoli, S.; Melloni, E. 2011: Calpain digestion and HSP90-based chaperone protection modulate the level of plasma membrane F508del-CFTR. Biochimica et Biophysica Acta 1813(1): 50-59
De Maria, A.; Shi, Y.; Kumar, N.M.; Bassnett, S. 2009: Calpain expression and activity during lens fiber cell differentiation. Journal of Biological Chemistry 284(20): 13542-13550
Bralić, M.; Stemberga, V. 2012: Calpain expression in the brain cortex after traumatic brain injury. Collegium Antropologicum 36(4): 1319-1323
Rudinskiy, N.; Grishchuk, Y.; Vaslin, A.; Puyal, J.; Delacourte, Aé.; Hirling, H.; Clarke, P.G.H.; Luthi-Carter, R. 2009: Calpain hydrolysis of alpha- and beta2-adaptins decreases clathrin-dependent endocytosis and may promote neurodegeneration. Journal of Biological Chemistry 284(18): 12447-12458
Beurmanjer, H.; Kamal, R.M.; de Jong, C.A.J.; Dijkstra, B.A.G.; Schellekens, A.F.A. 2018: Baclofen to Prevent Relapse in Gamma-Hydroxybutyrate (GHB)-Dependent Patients: A Multicentre, Open-Label, Non-Randomized, Controlled Trial. Cns Drugs 32(5): 437-442
Liu, J.; Liu, M.C.; Wang, K.K.W. 2008: Calpain in the CNS: from synaptic function to neurotoxicity. Science Signaling 1(14): Re1
Lade, A.; Ranganathan, S.; Luo, J.; Monga, S.P.S. 2012: Calpain induces N-terminal truncation of β-catenin in normal murine liver development: diagnostic implications in hepatoblastomas. Journal of Biological Chemistry 287(27): 22789-22798
Getz, G.S. 2012: Calpain inhibition as a potential treatment of Alzheimer's disease. American Journal of Pathology 181(2): 388-391
Subramanian, V.; Uchida, H.A.; Ijaz, T.; Moorleghen, J.J.; Howatt, D.A.; Balakrishnan, A. 2012: Calpain inhibition attenuates angiotensin II-induced abdominal aortic aneurysms and atherosclerosis in low-density lipoprotein receptor-deficient mice. Journal of Cardiovascular Pharmacology 59(1): 66-76
Smith, A.W.; Das, A.; Guyton, M.K.; Ray, S.K.; Rohrer, B.; Banik, N.L. 2011: Calpain inhibition attenuates apoptosis of retinal ganglion cells in acute optic neuritis. Investigative Ophthalmology and Visual Science 52(7): 4935-4941
Nozaki, K.; Das, A.; Ray, S.K.; Banik, N.L. 2010: Calpain inhibition attenuates intracellular changes in muscle cells in response to extracellular inflammatory stimulation. Experimental Neurology 225(2): 430-435
Gwozdz, A.M.; Leung, R.; Wang, H.; Bang, K.W.Annie.; Packham, M.A.; Freedman, J.; Rand, M.L. 2010: Calpain inhibition by calpeptin does not prevent APLT activity reduction in PS-exposing platelets, but calpeptin has independent pro-apoptotic effects. Thrombosis and Haemostasis 103(6): 1218-1227
Ozaki, Y.; Kato, T.; Kitagawa, M.; Fujita, H.; Kitagawa, S. 2008: Calpain inhibition delays neutrophil apoptosis via cyclic AMP-independent activation of protein kinase a and protein kinase A-mediated stabilization of Mcl-1 and X-linked inhibitor of apoptosis (XIAP). Archives of Biochemistry and Biophysics 477(2): 227-231
Wiemer, A.J.; Lokuta, M.A.; Surfus, J.C.; Wernimont, S.A.; Huttenlocher, A. 2010: Calpain inhibition impairs TNF-alpha-mediated neutrophil adhesion, arrest and oxidative burst. Molecular Immunology 47(4): 894-902
Noma, H.; Kato, T.; Fujita, H.; Kitagawa, M.; Yamano, T.; Kitagawa, S. 2009: Calpain inhibition induces activation of the distinct signalling pathways and cell migration in human monocytes. Immunology 128(1 Suppl): E487-E496
Mani, S.K.; Balasubramanian, S.; Zavadzkas, J.A.; Jeffords, L.B.; Rivers, W.T.; Zile, M.R.; Mukherjee, R.; Spinale, F.G.; Kuppuswamy, D. 2009: Calpain inhibition preserves myocardial structure and function following myocardial infarction. American Journal of Physiology. Heart and Circulatory Physiology 297(5): H1744-H1751
Granic, I.; Nyakas, C.; Luiten, P.G.M.; Eisel, U.L.M.; Halmy, László.G.; Gross, G.; Schoemaker, H.; Möller, A.; Nimmrich, V. 2010: Calpain inhibition prevents amyloid-beta-induced neurodegeneration and associated behavioral dysfunction in rats. Neuropharmacology 59(4-5): 334-342
Averna, M.; Pedrazzi, M.; Minicucci, L.; De Tullio, R.; Cresta, F.; Salamino, F.; Pontremoli, S.; Melloni, E. 2013: Calpain inhibition promotes the rescue of F(508)del-CFTR in PBMC from cystic fibrosis patients. PloS one 8(6): e66089
Undrovinas, A.; Maltsev, V.A.; Sabbah, H.N. 2013: Calpain inhibition reduces amplitude and accelerates decay of the late sodium current in ventricular myocytes from dogs with chronic heart failure. Plos one 8(4): E54436
Simões, A.T.; Gonçalves, N.él.; Nobre, R.J.; Duarte, C.B.; Pereira de Almeida, L.ís. 2014: Calpain inhibition reduces ataxin-3 cleavage alleviating neuropathology and motor impairments in mouse models of Machado-Joseph disease. Human Molecular Genetics 23(18): 4932-4944
Czeiter, E.; Büki, A.ás.; Bukovics, P.ét.; Farkas, O.; Pál, J.óz.; Kövesdi, E.éb.; Dóczi, T.ás.; Sándor, J.án. 2009: Calpain inhibition reduces axolemmal leakage in traumatic axonal injury. Molecules 14(12): 5115-5123
Kuro, M.; Yoshizawa, K.; Uehara, N.; Miki, H.; Takahashi, K.; Tsubura, A. 2011: Calpain inhibition restores basal autophagy and suppresses MNU-induced photoreceptor cell death in mice. In Vivo 25(4): 617-623
Medeiros, R.; Kitazawa, M.; Chabrier, M.A.; Cheng, D.; Baglietto-Vargas, D.; Kling, A.; Moeller, A.; Green, K.N.; LaFerla, F.M. 2012: Calpain inhibitor A-705253 mitigates Alzheimer's disease-like pathology and cognitive decline in aged 3xTgAD mice. American Journal of Pathology 181(2): 616-625
Colak, A.; Kaya, M.; Karaoğlan, A.; Sağmanligil, A.; Akdemir, O.; Sahan, E.; Celik, O. 2009: Calpain inhibitor AK 295 inhibits calpain-induced apoptosis and improves neurologic function after traumatic spinal cord injury in rats. Neurocirugia 20(3): 245-254
Ma, H.; Tochigi, A.; Shearer, T.R.; Azuma, M. 2009: Calpain inhibitor SNJ-1945 attenuates events prior to angiogenesis in cultured human retinal endothelial cells. Journal of Ocular Pharmacology and Therapeutics: the Official Journal of the Association for Ocular Pharmacology and Therapeutics 25(5): 409-414
Baba, K.; Nishida, K. 2012: Calpain inhibitor nanocrystals prepared using Nano Spray Dryer B-90. Nanoscale Research Letters 7(1): 436
Imai, S.; Shimazawa, M.; Nakanishi, T.; Tsuruma, K.; Hara, H. 2010: Calpain inhibitor protects cells against light-induced retinal degeneration. Journal of Pharmacology and Experimental Therapeutics 335(3): 645-652
Khoutorsky, A.; Spira, M.E. 2008: Calpain inhibitors alter the excitable membrane properties of cultured aplysia neurons. Journal of Neurophysiology 100(5): 2784-2793
Ali, M.A.M.; Stepanko, A.; Fan, X.; Holt, A.; Schulz, R. 2012: Calpain inhibitors exhibit matrix metalloproteinase-2 inhibitory activity. Biochemical and Biophysical Research Communications 423(1): 1-5
Lizama, C.; Lagos, C.F.; Lagos-Cabré, Rúl.; Cantuarias, L.; Rivera, F.; Huenchuñir, P.; Pérez-Acle, Tás.; Carrión, F.; Moreno, R.D. 2009: Calpain inhibitors prevent p38 MAPK activation and germ cell apoptosis after heat stress in pubertal rat testes. Journal of Cellular Physiology 221(2): 296-305
Hoang, M.V.; Smith, L.E.H.; Senger, D.R. 2011: Calpain inhibitors reduce retinal hypoxia in ischemic retinopathy by improving neovascular architecture and functional perfusion. Biochimica et Biophysica Acta 1812(4): 549-557
Donkor, I.O. 2011: Calpain inhibitors: a survey of compounds reported in the patent and scientific literature. Expert Opinion on Therapeutic Patents 21(5): 601-636
Je Ma, C.; Jung, W.Joo.; Lee, K.Yong.; Kim, Y.Choong.; Sung, S.Hyun. 2009: Calpain inhibitory flavonoids isolated from Orostachys japonicus. Journal of Enzyme Inhibition and Medicinal Chemistry 24(3): 676-679
Struglics, A.é; Hansson, M. 2010: Calpain is involved in C-terminal truncation of human aggrecan. Biochemical Journal 430(3): 531-538
Eguchi, R.; Fujimori, Y.; Ohta, T.; Kunimasa, K.; Nakano, T. 2010: Calpain is involved in cisplatin-induced endothelial injury in an in vitro three-dimensional blood vessel model. International Journal of Oncology 37(5): 1289-1296
Chang, L.; Wang, A. 2013: Calpain mediated cisplatin-induced ototoxicity in mice. Neural Regeneration Research 8(21): 1995-2002
Xu, P.-T.; Song, Z.; Li, Q.; Zhang, L.; Wang, Y.-Y.; Yu, Z.-B. 2010: Calpain mediates cardiac troponin i degradation in tail-suspended rats. Sheng Li Xue Bao: 62(5): 415-420
Ke, L.; Qi, X.Y.; Dijkhuis, A.-J.; Chartier, D.; Nattel, S.; Henning, R.H.; Kampinga, H.H.; Brundel, B.J.J.M. 2008: Calpain mediates cardiac troponin degradation and contractile dysfunction in atrial fibrillation. Journal of Molecular and Cellular Cardiology 45(5): 685-693
Weber, H.; Müller, L.; Jonas, L.; Schult, C.; Sparmann, G.; Schuff-Werner, P. 2013: Calpain mediates caspase-dependent apoptosis initiated by hydrogen peroxide in pancreatic acinar AR42J cells. Free Radical Research 47(5): 432-446
Lee, Y.A.; Kim, K.A.; Shin, M.H. 2011: Calpain mediates degradation of cytoskeletal proteins during Jurkat T-cell death induced by Entamoeba histolytica. Parasite Immunology 33(6): 349-356
Lai, Y.; Riley, K.; Cai, A.; Leong, J.M.; Herman, I.M. 2011: Calpain mediates epithelial cell microvillar effacement by enterohemorrhagic Escherichia coli. Frontiers in Microbiology 2: 222
Von Reyn, C.R.; Spaethling, J.M.; Mesfin, M.N.; Ma, M.; Neumar, R.W.; Smith, D.H.; Siman, R.; Meaney, D.F. 2009: Calpain mediates proteolysis of the voltage-gated sodium channel alpha-subunit. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 29(33): 10350-10356
Ma, W.; Han, W.; Greer, P.A.; Tuder, R.M.; Toque, H.A.; Wang, K.K.W.; Caldwell, R.W.; Su, Y. 2011: Calpain mediates pulmonary vascular remodeling in rodent models of pulmonary hypertension, and its inhibition attenuates pathologic features of disease. Journal of Clinical Investigation 121(11): 4548-4566
Bastián, Y.; Roa-Espitia, A.L.; Mújica, A.; Hernández-González, E.O. 2010: Calpain modulates capacitation and acrosome reaction through cleavage of the spectrin cytoskeleton. Reproduction 140(5): 673-684
Harbison, R.A.; Ryan, K.R.; Wilkins, H.M.; Schroeder, E.K.; Loucks, F.A.; Bouchard, R.J.; Linseman, D.A. 2011: Calpain plays a central role in 1-methyl-4-phenylpyridinium (MPP+)-induced neurotoxicity in cerebellar granule neurons. Neurotoxicity Research 19(3): 374-388
Azuma, M.; Hammond, K.B.; Nakajima, E.; Shearer, T.R. 2014: Calpain protease causes hypoxia-induced proteolysis in cultured human retina. Current Eye Research 39(4): 421-424
Taneike, M.; Mizote, I.; Morita, T.; Watanabe, T.; Hikoso, S.; Yamaguchi, O.; Takeda, T.; Oka, T.; Tamai, T.; Oyabu, J.; Murakawa, T.; Nakayama, H.; Nishida, K.; Takeda, J.; Mochizuki, N.; Komuro, I.; Otsu, K. 2011: Calpain protects the heart from hemodynamic stress. Journal of Biological Chemistry 286(37): 32170-32177
Berg, U.; Bang, P.; Carlsson-Skwirut, C. 2007: Calpain proteolysis of insulin-like growth factor binding protein (IGFBP) -2 and -3, but not of IGFBP-1. Biological Chemistry 388(8): 859-863
Nabeya, Y.; Suzuki, T.; Furuya, A.; Koide, N.; Ohkoshi, M.; Takiguchi, M.; Ochiai, T.; Matsubara, H.; Hiwasa, T. 2011: Calpain regulates thymidylate synthase-5-fluoro-dUMP complex levels associated with response to 5-fluorouracil in gastric cancer cells. Cancer Science 102(8): 1509-1515
Neuhof, C.; Neuhof, H. 2014: Calpain system and its involvement in myocardial ischemia and reperfusion injury. World Journal of Cardiology 6(7): 638-652
Storr, S.J.; Zaitoun, A.M.; Arora, A.; Durrant, L.G.; Lobo, D.N.; Madhusudan, S.; Martin, S.G. 2012: Calpain system protein expression in carcinomas of the pancreas, bile duct and ampulla. Bmc Cancer 12: 511
Hernando, V.íc.; Inserte, J.; Sartório, C.L.íz.; Parra, V.íc.M.; Poncelas-Nozal, M.; Garcia-Dorado, D. 2010: Calpain translocation and activation as pharmacological targets during myocardial ischemia/reperfusion. Journal of Molecular and Cellular Cardiology 49(2): 271-279
Nakajima, E.; Hammond, K.B.; Rosales, J.L.; Shearer, T.R.; Azuma, M. 2011: Calpain, not caspase, is the causative protease for hypoxic damage in cultured monkey retinal cells. Investigative Ophthalmology and Visual Science 52(10): 7059-7067
Kotecki, M.; Zeiger, A.S.; Van Vliet, K.J.; Herman, I.M. 2010: Calpain- and talin-dependent control of microvascular pericyte contractility and cellular stiffness. Microvascular Research 80(3): 339-348
Mohrhauser, D.A.; Lonergan, S.M.; Huff-Lonergan, E.; Underwood, K.R.; Weaver, A.D. 2014: Calpain-1 activity in bovine muscle is primarily influenced by temperature, not pH decline. Journal of Animal Science 92(3): 1261-1270
Gafni, J.; Cong, X.; Chen, S.F.; Gibson, B.W.; Ellerby, L.M. 2009: Calpain-1 cleaves and activates caspase-7. Journal of Biological Chemistry 284(37): 25441-25449
Wu, Z.; Chen, X.; Liu, F.; Chen, W.; Wu, P.; Wieschhaus, A.J.; Chishti, A.H.; Roche, P.A.; Chen, W-Min.; Lin, T-Jun. 2014: Calpain-1 contributes to IgE-mediated mast cell activation. Journal of Immunology 192(11): 5130-5139
Storr, S.J.; Woolston, C.M.; Barros, F.F.T.; Green, A.R.; Shehata, M.; Chan, S.Y.; Ellis, I.O.; Martin, S.G. 2011: Calpain-1 expression is associated with relapse-free survival in breast cancer patients treated with trastuzumab following adjuvant chemotherapy. International Journal of Cancer 129(7): 1773-1780
Miller, D.J.; Adams, S.E.; Hallett, M.B.; Allemann, R.K. 2013: Calpain-1 inhibitors for selective treatment of rheumatoid arthritis: what is the future?. Future Medicinal Chemistry 5(17): 2057-2074
Wieschhaus, A.; Khan, A.; Zaidi, A.; Rogalin, H.; Hanada, T.; Liu, F.; De Franceschi, L.; Brugnara, C.; Rivera, A.; Chishti, A.H. 2012: Calpain-1 knockout reveals broad effects on erythrocyte deformability and physiology. Biochemical Journal 448(1): 141-152
Hu, X.-Q.; Yuan, P.; Luan, R.-S.; Li, X.-L.; Liu, W.-H.; Feng, F.; Yan, J.; Yang, Y.-F. 2014: Calpain-10 SNP43 and SNP19 polymorphisms and colorectal cancer: a matched case-control study. Asian Pacific Journal of Cancer Prevention: Apjcp 14(11): 6673-6680
Ling, C.; Groop, L.; Guerra, S.D.; Lupi, R. 2009: Calpain-10 expression is elevated in pancreatic islets from patients with type 2 diabetes. Plos one 4(8): E6558
Zaharna, M.M.; Abed, A.A.; Sharif, F.A. 2010: Calpain-10 gene polymorphism in type 2 diabetes mellitus patients in the Gaza Strip. Medical Principles and Practice: International Journal of the Kuwait University Health Science Centre 19(6): 457-462
Buraczynska, M.; Wacinski, P.; Stec, A.; Kuczmaszewska, A. 2013: Calpain-10 gene polymorphisms in type 2 diabetes and its micro- and macrovascular complications. Journal of Diabetes and its Complications 27(1): 54-58
Shen, W.; Li, T.; Hu, Y.; Liu, H.; Song, M. 2013: Calpain-10 genetic polymorphisms and polycystic ovary syndrome risk: a meta-analysis and meta-regression. Gene 531(2): 426-434
Perez-Martinez, P.; Delgado-Lista, J.; Garcia-Rios, A.; Ferguson, J.F.; Gulseth, H.L.; Williams, C.M.; Karlström, B.; Kieć-Wilk, B.; Blaak, E.E.; Helal, O.; Małczewska-Malec, M.; Defoort, C.; Risérus, U.; Saris, W.H.; Lovegrove, J.A.; Drevon, C.A.; Roche, H.M.; Lopez-Miranda, J. 2011: Calpain-10 interacts with plasma saturated fatty acid concentrations to influence insulin resistance in individuals with the metabolic syndrome. American Journal of Clinical Nutrition 93(5): 1136-1141
Cheverud, J.M.; Fawcett, G.L.; Jarvis, J.P.; Norgard, E.A.; Pavlicev, M.; Pletscher, L.S.; Polonsky, K.S.; Ye, H.; Bell, G.I.; Semenkovich, C.F. 2010: Calpain-10 is a component of the obesity-related quantitative trait locus Adip1. Journal of Lipid Research 51(5): 907-913
Subramanian, V.; Moorleghen, J.J.; Balakrishnan, A.; Howatt, D.A.; Chishti, A.H.; Uchida, H.A. 2013: Calpain-2 compensation promotes angiotensin II-induced ascending and abdominal aortic aneurysms in calpain-1 deficient mice. Plos one 8(8): E72214
Zang, Y.; Chen, S-Xia.; Liao, G-Jie.; Zhu, H-Quan.; Wei, X-Hong.; Cui, Y.; Na, X-Dong.; Pang, R-Ping.; Xin, W-Jun.; Zhou, L-Jun.; Liu, X-Guo. 2015: Calpain-2 contributes to neuropathic pain following motor nerve injury via up-regulating interleukin-6 in DRG neurons. Brain Behavior and Immunity 44: 37-47
Storr, S.J.; Safuan, S.; Woolston, C.M.; Abdel-Fatah, T.; Deen, S.; Chan, S.Y.; Martin, S.G. 2012: Calpain-2 expression is associated with response to platinum based chemotherapy, progression-free and overall survival in ovarian cancer. Journal of Cellular and Molecular Medicine 16(10): 2422-2428
Briz, V.; Hsu, Y-Tien.; Li, Y.; Lee, E.; Bi, X.; Baudry, M. 2013: Calpain-2-mediated PTEN degradation contributes to BDNF-induced stimulation of dendritic protein synthesis. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 33(10): 4317-4328
Murphy, R.M.; Lamb, G.D. 2009: Calpain-3 is activated following eccentric exercise. Journal of Applied Physiology 106(6): 2068; Author Reply 2069
Mahajan, V.B.; Skeie, J.M.; Bassuk, A.G.; Fingert, J.H.; Braun, T.A.; Daggett, H.T.; Folk, J.C.; Sheffield, V.C.; Stone, E.M. 2012: Calpain-5 mutations cause autoimmune uveitis, retinal neovascularization, and photoreceptor degeneration. Plos Genetics 8(10): E1003001
Tonami, K.; Hata, S.; Ojima, K.; Ono, Y.; Kurihara, Y.; Amano, T.; Sato, T.; Kawamura, Y.; Kurihara, H.; Sorimachi, H. 2013: Calpain-6 deficiency promotes skeletal muscle development and regeneration. Plos Genetics 9(8): E1003668
Marion, A.; Dieudonné, F.ço.-X.; Patiño-Garcia, A.; Lecanda, F.; Marie, P.J.; Modrowski, D. 2012: Calpain-6 is an endothelin-1 signaling dependent protective factor in chemoresistant osteosarcoma. International Journal of Cancer 130(11): 2514-2525
Tonami, K.; Kurihara, Y.; Arima, S.; Nishiyama, K.; Uchijima, Y.; Asano, T.; Sorimachi, H.; Kurihara, H. 2011: Calpain-6, a microtubule-stabilizing protein, regulates Rac1 activity and cell motility through interaction with GEF-H1. Journal of Cell Science 124(Part 8): 1214-1223
Hong, J.M.; Teitelbaum, S.L.; Kim, T.-H.; Ross, F.P.; Kim, S.-Y.; Kim, H.-J. 2011: Calpain-6, a target molecule of glucocorticoids, regulates osteoclastic bone resorption via cytoskeletal organization and microtubule acetylation. Journal of Bone and Mineral Research: the Official Journal of the American Society for Bone and Mineral Research 26(3): 657-665
Maemoto, Y.; Osako, Y.; Goto, E.; Nozawa, E.; Shibata, H.; Maki, M. 2011: Calpain-7 binds to CHMP1B at its second α-helical region and forms a ternary complex with IST1. Journal of Biochemistry 150(4): 411-421
Uribe, K.B.; Etxebarria, A.; Martín, C.és.; Ostolaza, H. 2013: Calpain-Mediated Processing of Adenylate Cyclase Toxin Generates a Cytosolic Soluble Catalytically Active N-Terminal Domain. Plos one 8(6): E67648
Bozóky, Z.án.; Róna, G.; Klement, Év.; Medzihradszky, K.F.; Merényi, G.áb.; Vértessy, B.át.G.; Friedrich, P. 2011: Calpain-catalyzed proteolysis of human dUTPase specifically removes the nuclear localization signal peptide. Plos one 6(5): E19546
Kopil, C.M.; Vais, H.; Cheung, K.-H.; Siebert, A.P.; Mak, D.-O.D.; Foskett, J.K.; Neumar, R.W. 2011: Calpain-cleaved type 1 inositol 1,4,5-trisphosphate receptor (InsP(3)R1) has InsP(3)-independent gating and disrupts intracellular Ca(2+) homeostasis. Journal of Biological Chemistry 286(41): 35998-36010
Kudo-Sakamoto, Y.; Akazawa, H.; Ito, K.; Takano, J.; Yano, M.; Yabumoto, C.; Naito, A.T.; Oka, T.; Lee, J.-K.; Sakata, Y.; Suzuki, J.-i.; Saido, T.C.; Komuro, I. 2014: Calpain-dependent cleavage of N-cadherin is involved in the progression of post-myocardial infarction remodeling. Journal of Biological Chemistry 289(28): 19408-19419
Wu, C.-Y.C.; Chen, B.; Jiang, Y.-P.; Jia, Z.; Martin, D.W.; Liu, S.; Entcheva, E.; Song, L.-S.; Lin, R.Z. 2014: Calpain-dependent cleavage of junctophilin-2 and T-tubule remodeling in a mouse model of reversible heart failure. Journal of the American Heart Association 3(3): E000527
Jeong, S.-Y.; Martchenko, M.; Cohen, S.N. 2013: Calpain-dependent cytoskeletal rearrangement exploited for anthrax toxin endocytosis. Proceedings of the National Academy of Sciences of the United States of America 110(42): E4007-E4015
Piatkov, K.I.; Oh, J.-H.; Liu, Y.; Varshavsky, A. 2014: Calpain-generated natural protein fragments as short-lived substrates of the N-end rule pathway. Proceedings of the National Academy of Sciences of the United States of America 111(9): E817-E826
Yokoyama, S.; Arakawa, R.; Wu, C-Ai.; Iwamoto, N.; Lu, R.; Tsujita, M.; Abe-Dohmae, S. 2012: Calpain-mediated ABCA1 degradation: post-translational regulation of ABCA1 for HDL biogenesis. Biochimica et Biophysica Acta 1821(3): 547-551
Sahara, S.; Yamashima, T. 2010: Calpain-mediated Hsp70.1 cleavage in hippocampal CA1 neuronal death. Biochemical and Biophysical Research Communications 393(4): 806-811
Domingues, A.F.; Esteves, A.R.F.; Swerdlow, R.H.; Oliveira, C.R.; Cardoso, S.M. 2008: Calpain-mediated MPP+ toxicity in mitochondrial DNA depleted cells. Neurotoxicity Research 13(1): 31-38
Jang, Y.-N.; Jung, Y.-S.; Lee, S.H.; Moon, C.-H.; Kim, C.-H.; Baik, E.J. 2009: Calpain-mediated N-cadherin proteolytic processing in brain injury. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 29(18): 5974-5984
Averna, M.; Stifanese, R.; De Tullio, R.; Beccaria, F.; Salamino, F.; Pontremoli, S.; Melloni, E. 2009: Calpain-mediated activation of NO synthase in human neuroblastoma SK-N-BE cells. Journal of Neurochemistry 110(1): 412-421
Yang, H.; Murthy, S.; Sarkar, F.H.; Sheng, S.; Reddy, G.P.-V.; Dou, Q.P. 2008: Calpain-mediated androgen receptor breakdown in apoptotic prostate cancer cells. Journal of Cellular Physiology 217(3): 569-576
Hübener, J.; Weber, J.J.; Richter, C.; Honold, L.; Weiss, A.; Murad, F.; Breuer, P.; Wüllner, U.; Bellstedt, P.; Paquet-Durand, F.; Takano, J.; Saido, T.C.; Riess, O.; Nguyen, H.P. 2013: Calpain-mediated ataxin-3 cleavage in the molecular pathogenesis of spinocerebellar ataxia type 3 (SCA3). Human Molecular Genetics 22(3): 508-518
Weber, H.; Hühns, S.; Lüthen, F.; Jonas, L. 2009: Calpain-mediated breakdown of cytoskeletal proteins contributes to cholecystokinin-induced damage of rat pancreatic acini. International Journal of Experimental Pathology 90(4): 387-399
Hori, N.; Hayashi, H.; Sugiyama, Y. 2011: Calpain-mediated cleavage negatively regulates the expression level of ABCG1. Atherosclerosis 215(2): 383-391
Zhang, Z.; Ottens, A.K.; Sadasivan, S.; Kobeissy, F.H.; Fang, T.; Hayes, R.L.; Wang, K.K.W. 2007: Calpain-mediated collapsin response mediator protein-1, -2, and -4 proteolysis after neurotoxic and traumatic brain injury. Journal of Neurotrauma 24(3): 460-472
Colacurcio, D.J.; Yeager, A.; Kolson, D.L.; Jordan-Sciutto, K.L.; Akay, C. 2013: Calpain-mediated degradation of MDMx/MDM4 contributes to HIV-induced neuronal damage. Molecular and Cellular Neurosciences 57: 54-62
Wei, G.; Yin, Y.; Li, W.; Bito, H.; She, H.; Mao, Z. 2012: Calpain-mediated degradation of myocyte enhancer factor 2D contributes to excitotoxicity by activation of extrasynaptic N-methyl-D-aspartate receptors. Journal of Biological Chemistry 287(8): 5797-5805
Gustavsson, S.; Karlsson, J.O. 1987: Calpain-mediated degradation of rapidly and slowly axonally transported proteins in retinal ganglion cells. Neurochemistry International 11(2): 155-160
Trümpler, A.; Schlott, B.; Herrlich, P.; Greer, P.A.; Böhmer, F.-D. 2009: Calpain-mediated degradation of reversibly oxidized protein-tyrosine phosphatase 1B. Febs Journal 276(19): 5622-5633
Jungwirth, U.; Gojo, J.; Tuder, T.; Walko, G.; Holcmann, M.; Schöfl, T.; Nowikovsky, K.; Wilfinger, N.; Schoonhoven, S.; Kowol, C.R.; Lemmens-Gruber, R.; Heffeter, P.; Keppler, B.K.; Berger, W. 2014: Calpain-mediated integrin deregulation as a novel mode of action for the anticancer gallium compound KP46. Molecular Cancer Therapeutics 13(10): 2436-2449
Woo, M.G.; Xue, K.; Liu, J.; McBride, H.; Tsang, B.K. 2012: Calpain-mediated processing of p53-associated parkin-like cytoplasmic protein (PARC) affects chemosensitivity of human ovarian cancer cells by promoting p53 subcellular trafficking. Journal of Biological Chemistry 287(6): 3963-3975
Hall, C.M.; Nilsson, E.; Karlsson, J.O. 1989: Calpain-mediated proteolysis of fast transported proteins in nerve terminals of rabbit retinal ganglion cells. Neurochemistry International 14(3): 373-378
Cortesio, C.L.; Boateng, L.R.; Piazza, T.M.; Bennin, D.A.; Huttenlocher, A. 2011: Calpain-mediated proteolysis of paxillin negatively regulates focal adhesion dynamics and cell migration. Journal of Biological Chemistry 286(12): 9998-10006
Kim, H.; Kang, A.-Y.; Ko, A.-r.; Park, H.C.; So, I.; Park, J.H.; Cheong, H.I.; Hwang, Y.-H.; Ahn, C. 2014: Calpain-mediated proteolysis of polycystin-1 C-terminus induces JAK2 and ERK signal alterations. Experimental Cell Research 320(1): 62-68
Gokhin, D.S.; Tierney, M.T.; Sui, Z.; Sacco, A.; Fowler, V.M. 2014: Calpain-mediated proteolysis of tropomodulin isoforms leads to thin filament elongation in dystrophic skeletal muscle. Molecular Biology of the Cell 25(6): 852-865
Kuchay, S.M.; Chishti, A.H. 2007: Calpain-mediated regulation of platelet signaling pathways. Current Opinion in Hematology 14(3): 249-254
Yu, L.; Rostamiani, K.; Hsu, Y.-T.; Wang, Y.; Bi, X.; Baudry, M. 2011: Calpain-mediated regulation of stargazin in adult rat brain. Neuroscience 178: 13-20
Katsube, M.; Kato, T.; Kitagawa, M.; Noma, H.; Fujita, H.; Kitagawa, S. 2008: Calpain-mediated regulation of the distinct signaling pathways and cell migration in human neutrophils. Journal of Leukocyte Biology 84(1): 255-263
Vosler, P.S.; Brennan, C.S.; Chen, J. 2008: Calpain-mediated signaling mechanisms in neuronal injury and neurodegeneration. Molecular Neurobiology 38(1): 78-100
Ferreira, A.; Bigio, E.H. 2011: Calpain-mediated tau cleavage: a mechanism leading to neurodegeneration shared by multiple tauopathies. Molecular Medicine 17(7-8): 676-685
Liu, W.; Zhou, X-Wang.; Liu, S.; Hu, K.; Wang, C.; He, Q.; Li, M. 2009: Calpain-truncated CRMP-3 and -4 contribute to potassium deprivation-induced apoptosis of cerebellar granule neurons. Proteomics 9(14): 3712-3728
Liu, S.H.; Wang, K.B.; Lan, K.H.; Lee, W.J.; Pan, H.C.; Wu, S.M.; Peng, Y.C.; Chen, Y.C.; Shen, C.C.; Cheng, H.C.; Liao, K.K.; Sheu, M.L. 2012: Calpain/SHP-1 interaction by honokiol dampening peritoneal dissemination of gastric cancer in nu/nu mice. Plos one 7(8): E43711
Zanardelli, S.; Christodoulou, N.; Skourides, P.A. 2013: Calpain2 protease: A new member of the Wnt/Ca(2+) pathway modulating convergent extension movements in Xenopus. Developmental Biology 384(1): 83-100
Roperto, S.; De Tullio, R.; Raso, C.; Stifanese, R.; Russo, V.; Gaspari, M.; Borzacchiello, G.; Averna, M.; Paciello, O.; Cuda, G.; Roperto, F. 2010: Calpain3 is expressed in a proteolitically active form in papillomavirus-associated urothelial tumors of the urinary bladder in cattle. Plos one 5(4): E10299
Kulkarni, S.; Saju, L.; Farver, C.; Tubbs, R. 2012: Calpain4 is required for activation of HER2 in breast cancer cells exposed to trastuzumab and its suppression decreases survival and enhances response. International Journal of Cancer 131(10): 2420-2432
Penna, I.; Du, H.; Ferriani, R.; Taylor, H.S. 2008: Calpain5 expression is decreased in endometriosis and regulated by HOXA10 in human endometrial cells. Molecular Human Reproduction 14(10): 613-618
Shang, L.; Huang, J-Fang.; Ding, W.; Chen, S.; Xue, L-Xiang.; Ma, R-Fei.; Xiong, K. 2014: Calpain: a molecule to induce AIF-mediated necroptosis in RGC-5 following elevated hydrostatic pressure. Bmc Neuroscience 15: 63
Burke, G.; Hillier, C.; Cole, J.; Sampson, M.; Bridges, L.; Bushby, K.; Barresi, R.; Hammans, S.R. 2010: Calpainopathy presenting as foot drop in a 41 year old. Neuromuscular Disorders: Nmd 20(6): 407-410
Moretti, D.; Del Bello, B.; Allavena, G.; Maellaro, E. 2014: Calpains and cancer: friends or enemies?. Archives of Biochemistry and Biophysics 564: 26-36
Araújo, I.ês.M.; Carreira, B.P.; Carvalho, C.M.; Carvalho, A.él.P. 2010: Calpains and delayed calcium deregulation in excitotoxicity. Neurochemical Research 35(12): 1966-1969
Bertipaglia, I.; Carafoli, E. 2007: Calpains and human disease. Sub-Cellular Biochemistry 45: 29-53
Pedrozo, Z.; Sánchez, G.; Torrealba, N.; Valenzuela, R.; Fernández, C.; Hidalgo, C.; Lavandero, S.; Donoso, P. 2010: Calpains and proteasomes mediate degradation of ryanodine receptors in a model of cardiac ischemic reperfusion. Biochimica et Biophysica Acta 1802(3): 356-362
Perche, O.; Doly, M.; Ranchon-Cole, I. 2009: Calpains are activated by light but their inhibition has no neuroprotective effect against light-damage. Experimental Eye Research 89(6): 989-994
D'Orsi, B.; Bonner, H.; Tuffy, L.P.; Düssmann, H.; Woods, I.; Courtney, M.J.; Ward, M.W.; Prehn, J.H.M. 2012: Calpains are downstream effectors of bax-dependent excitotoxic apoptosis. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 32(5): 1847-1858
Jang, Y.S.; Song, K.-J.; Kim, J.Y.; Lee, Y.A.; Kim, K.A.; Lee, S.K.; Shin, M.H. 2011: Calpains are involved in Entamoeba histolytica-induced death of HT-29 colonic epithelial cells. Korean Journal of Parasitology 49(2): 177-180
Leloup, L.; Wells, A. 2011: Calpains as potential anti-cancer targets. Expert Opinion on Therapeutic Targets 15(3): 309-323
Letavernier, Béatrice.; Zafrani, L.; Nassar, D.; Perez, Jëlle.; Levi, Cène.; Bellocq, Aès.; Mesnard, L.; Sachon, E.; Haymann, J-Philippe.; Aractingi, S.; Faussat, A-Marie.; Baud, L.; Letavernier, E. 2012: Calpains contribute to vascular repair in rapidly progressive form of glomerulonephritis: potential role of their externalization. Arteriosclerosis Thrombosis and Vascular Biology 32(2): 335-342
Moudilou, E.N.; Mouterfi, N.; Exbrayat, J.-M.; Brun, C. 2010: Calpains expression during Xenopus laevis development. Tissue and Cell 42(5): 275-281
Inserte, J. 2012: Calpains in the cardiovascular system. Cardiovascular Research 96(1): 9-10
Etheridge, T.; Oczypok, E.A.; Lehmann, S.; Fields, B.D.; Shephard, F.; Jacobson, L.A.; Szewczyk, N.J. 2012: Calpains mediate integrin attachment complex maintenance of adult muscle in Caenorhabditis elegans. Plos Genetics 8(1): E1002471
Kumar, V.; Everingham, S.; Hall, C.; Greer, P.A.; Craig, A.W.B. 2014: Calpains promote neutrophil recruitment and bacterial clearance in an acute bacterial peritonitis model. European Journal of Immunology 44(3): 831-841
Rintanen, N.; Karjalainen, M.; Alanko, J.; Paavolainen, L.; Mäki, A.; Nissinen, L.; Lehkonen, M.; Kallio, K.; Cheng, R.H.; Upla, P.; Ivaska, J.; Marjomäki, V. 2012: Calpains promote α2β1 integrin turnover in nonrecycling integrin pathway. Molecular Biology of the Cell 23(3): 448-463
Lek, A.; Evesson, F.J.; Lemckert, F.A.; Redpath, G.M.I.; Lueders, A.-K.; Turnbull, L.; Whitchurch, C.B.; North, K.N.; Cooper, S.T. 2013: Calpains, cleaved mini-dysferlinC72, and L-type channels underpin calcium-dependent muscle membrane repair. Journal of Neuroscience: the Official Journal of the Society for Neuroscience 33(12): 5085-5094
Murphy, R.M. 2010: Calpains, skeletal muscle function and exercise. Clinical and Experimental Pharmacology and Physiology 37(3): 385-391
Ono, Y.; Sorimachi, H. 2012: Calpains: an elaborate proteolytic system. Biochimica et Biophysica Acta 1824(1): 224-236
Starodub, M.F.; Samokhina, L.M.; Koval', S.M.; Snigurs'ka, I.O. 2014: Calpains: general characteristics and role in various states of the organism. Ukrainian Biochemical Journal 86(1): 5-20
Roumes, H.él.èn.; Leloup, L.; Dargelos, E.; Brustis, J.-J.; Daury, L.; Cottin, P. 2010: Calpains: markers of tumor aggressiveness?. Experimental Cell Research 316(9): 1587-1599
Minobe, E.; Asmara, H.; Saud, Z.A.; Kameyama, M. 2011: Calpastatin domain L is a partial agonist of the calmodulin-binding site for channel activation in Cav1.2 Ca2+ channels. Journal of Biological Chemistry 286(45): 39013-39022
Zhang, L.; Ding, H.; Wang, D.-H.; Zhang, Y.-L.; Baskys, A.; Chan, P.; Zhong, Y.; Cai, Y.-N. 2013: Calpastatin gene (CAST) is not associated with late onset sporadic Parkinson's disease in the Han Chinese population. Plos one 8(8): E70935
Storr, S.J.; Mohammed, R.A.A.; Woolston, C.M.; Green, A.R.; Parr, T.; Spiteri, I.; Caldas, C.; Ball, G.R.; Ellis, I.O.; Martin, S.G. 2011: Calpastatin is associated with lymphovascular invasion in breast cancer. Breast 20(5): 413-418
Vaisid, T.; Barnoy, S.; Kosower, N.S. 2008: Calpastatin overexpression attenuates amyloid-beta-peptide toxicity in differentiated PC12 cells. Neuroscience 156(4): 921-931
Schoch, K.M.; Evans, H.N.; Brelsfoard, J.M.; Madathil, S.K.; Takano, J.; Saido, T.C.; Saatman, K.E. 2012: Calpastatin overexpression limits calpain-mediated proteolysis and behavioral deficits following traumatic brain injury. Experimental Neurology 236(2): 371-382
Ma, M.; Shofer, F.S.; Neumar, R.W. 2012: Calpastatin overexpression protects axonal transport in an in vivo model of traumatic axonal injury. Journal of Neurotrauma 29(16): 2555-2563
Huang, Z.; Rose, A.H.; Hoffmann, F.W.; Hashimoto, A.S.; Bertino, P.; Denk, T.; Takano, J.; Iwata, N.; Saido, T.C.; Hoffmann, P.R. 2013: Calpastatin prevents NF-κB-mediated hyperactivation of macrophages and attenuates colitis. Journal of Immunology 191(7): 3778-3788
Tradewell, M.L.; Durham, H.D. 2010: Calpastatin reduces toxicity of SOD1G93A in a culture model of amyotrophic lateral sclerosis. Neuroreport 21(15): 976-979
Sato, K.; Minegishi, S.; Takano, J.; Plattner, F.; Saito, T.; Asada, A.; Kawahara, H.; Iwata, N.; Saido, T.C.; Hisanaga, S.-i. 2011: Calpastatin, an endogenous calpain-inhibitor protein, regulates the cleavage of the Cdk5 activator p35 to p25. Journal of Neurochemistry 117(3): 504-515
Nozaki, K.; Das, A.; Ray, S.K.; Banik, N.L. 2011: Calpeptin attenuated apoptosis and intracellular inflammatory changes in muscle cells. Journal of Neuroscience Research 89(4): 536-543
Guyton, M.K.; Das, A.; Samantaray, S.; Wallace, G.C.; Butler, J.T.; Ray, S.K.; Banik, N.L. 2010: Calpeptin attenuated inflammation, cell death, and axonal damage in animal model of multiple sclerosis. Journal of Neuroscience Research 88(11): 2398-2408
Lin, I.-J.; Zhou, Z.; Crusselle-Davis, V.J.; Moghimi, B.; Gandhi, K.; Anantharaman, A.; Pantic, D.; Huang, S.; Jayandharan, G.; Zhong, L.; Srivastava, A.; Bungert, J.ör. 2009: Calpeptin increases the activity of upstream stimulatory factor and induces high level globin gene expression in erythroid cells. Journal of Biological Chemistry 284(30): 20130-20135
Chiarini, A.; Whitfield, J.F.; Pacchiana, R.; Marconi, M.; Armato, U.; Dal Prà, I. 2010: Calphostin C, a remarkable multimodal photodynamic killer of neoplastic cells by selective nuclear lamin B1 destruction and apoptogenesis (Review). Oncology Reports 23(4): 887-892
Shibukawa, Y.; Yamazaki, N.; Kumasawa, K.; Daimon, E.; Tajiri, M.; Okada, Y.; Ikawa, M.; Wada, Y. 2010: Calponin 3 regulates actin cytoskeleton rearrangement in trophoblastic cell fusion. Molecular Biology of the Cell 21(22): 3973-3984
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