4.5 Article

MAP-kinase activity necessary for TGFβ1-stimulated mesangial cell type I collagen expression requires adhesion-dependent phosphorylation of FAK tyrosine 397

期刊

JOURNAL OF CELL SCIENCE
卷 120, 期 23, 页码 4230-4240

出版社

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/jcs.03492

关键词

TGF beta; FAK; smad; sclerosis; collagen

资金

  1. NIAMS NIH HHS [AR42309] Funding Source: Medline
  2. NIDDK NIH HHS [R56 DK049362, R21 DK68637, R01 DK049362, R01 DK49362, K01 DK64074] Funding Source: Medline

向作者/读者索取更多资源

The signals mediating transforming growth factor beta (TGF beta)-stimulated kidney fibrogenesis are poorly understood. We previously reported TGF beta-stimulated, Smad-mediated collagen production by human kidney mesangial cells, and that ERK MAP kinase activity optimizes collagen expression and enhances phosphorylation of the Smad3 linker region. Furthermore, we showed that disrupting cytoskeletal integrity decreases type I collagen production. Focal adhesion kinase (FAK, PTK2) activity could integrate these findings. Adhesion-dependent FAK Y397 phosphorylation was detected basally, whereas FAK Y925 phosphorylation was TGF beta 1-dependent. By immunocytochemistry, TGF beta 1 stimulated the merging of phosphorylated FAK with the ends of thickening stress fibers. Cells cultured on poly-L-lysine (pLL) to promote integrin-independent attachment spread less than those on control substrate and failed to demonstrate focal adhesion (FA) engagement with F-actin. FAK Y397 phosphorylation and ERK activity were also decreased under these conditions. In cells with decreased FAK Y397 phosphorylation from either plating on pLL or overexpressing a FAK Y397F point mutant, serine phosphorylation of the Smad linker region, but not of the C-terminus, was reduced. Y397F and Y925F FAK point mutants inhibited TGF beta-induced Elk-Gal activity, but only the Y397F mutant inhibited TGF beta-stimulated collagen-promoter activity. The inhibition by the Y397F mutant or by culture on pLL was prevented by co-transfection of constitutively active ERK MAP kinase kinase (MEK), suggesting that FAK Y397 phosphorylation promotes collagen expression via ERK MAP kinase activity. Finally, Y397 FAK phosphorylation, and both C-terminal and linker-region Smad3 phosphorylation were detected in murine TGF beta-dependent kidney fibrosis. Together, these data demonstrate adhesion-dependent FAK phosphorylation promoting TGF beta-induced responses to regulate collagen production.

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