Roles for the MH2 domain of Smad7 in the specific inhibition of transforming growth factor-beta superfamily signaling. Journal of Biological Chemistry 279(30): 31568-31574, 2004
Chronic inhibition of cyclic guanosine monophosphate-specific phosphodiesterase 5 prevented cardiac fibrosis through inhibition of transforming growth factor β-induced Smad signaling. Frontiers of Medicine 8(4): 445-455, 2014
Transforming growth factor-betas: smad signaling and roles in physiopathology. Pathologie-Biologie 52(1): 50-54, 2004
The N domain of Smad7 is essential for specific inhibition of transforming growth factor-b signaling. The Journal of Cell Biology 155(6): 17-27, 2001
The N Domain of Smad7 Is Essential for Specific Inhibition of Transforming Growth Factor- Signaling. The Journal of Cell Biology 155(6): 1017-1027, 2001
The N domain of Smad7 is essential for specific inhibition of transforming growth factor-beta signaling. Journal of Cell Biology 155(6): 1017-1027, 2001
Mammalian transforming growth factor-betas: Smad signaling and physio-pathological roles. International Journal of Biochemistry and Cell Biology 36(7): 1161-1165, 2004
Functional roles for the cytoplasmic domain of the type III transforming growth factor b receptor in regulating transforming growth factor b signaling. The Journal of Biological Chemistry 276(27): 627-37, 2001
Erbin Inhibits Transforming Growth Factor b Signaling through a Novel Smad-Interacting Domain. Molecular and Cellular Biology 27(17): 83-94, 2007
The roles of Smad 2/3 in transforming growth factor-beta 1 signaling in human dental pulp cells. Zhonghua Kou Qiang Yi Xue Za Zhi 38(1): 39-42, 2003
Erbin inhibits transforming growth factor beta signaling through a novel Smad-interacting domain. Molecular and Cellular Biology 27(17): 6183-6194, 2007
The integral inner nuclear membrane protein MAN1 physically interacts with the R-Smad proteins to repress signaling by the transforming growth factor-{beta} superfamily of cytokines. Journal of Biological Chemistry 280(16): 15992-16001, 2005
Dimethylfumarate attenuates renal fibrosis via NF-E2-related factor 2-mediated inhibition of transforming growth factor-β/Smad signaling. Plos one 7(10): E45870, 2012
Sulforaphane attenuates hepatic fibrosis via NF-E2-related factor 2-mediated inhibition of transforming growth factor-β/Smad signaling. Free Radical Biology and Medicine 52(3): 671-682, 2012
2-Methoxyestradiol causes functional repression of transforming growth factor β3 signaling by ameliorating Smad and non-Smad signaling pathways in immortalized uterine fibroid cells. Fertility and Sterility 98(1): 178-184, 2012