Cross-talk between ERK MAP kinase and Smad-signaling pathways enhances TGF-β dependent responses in human mesangial cells

被引:324
作者
Hayashida, T
deCaestecker, M
Schnaper, HW
机构
[1] Northwestern Univ, Feinberg Sch Med, Dept Pediat, Chicago, IL 60611 USA
[2] Vanderbilt Univ, Dept Med Hypertens & Nephrol, Nashville, TN USA
关键词
signal transduction; kidney cells; collagen; fibrogenesis;
D O I
10.1096/fj.03-0037fje
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Transforming growth factor beta (TGF-beta) stimulates renal cell fibrogenesis by a poorly understood mechanism. Previously, we suggested a synergy between TGF-beta1 activated extracellular signal regulated kinase (ERK) and Smad signaling in collagen production by human glomerular mesangial cells. In a heterologous DNA binding transcription assay, biochemical or dominant-negative ERK blockade reduced TGF-beta1 induced Smad3 activity. Total serine phosphorylation of Smad2/3, but not phosphorylation of the C-terminal (SSXSP)-X-P motif, was de creased by pretreatment with the MEK/ERK inhibitors, PD98059 (10 muM) or U0126 (25 muM). This effect was not seen in the mouse mammary epithelial NMuMG cell line, indicating that ERK-dependent activation of Smad2/3 occurs only in certain cell types. TGF-beta stimulated phosphorylation of an expressed S m ad 3 A construct, wit h a mutated C-terminal (SSXSP)-X-P motif, was reduced by a MEK/ERK inhibitor. In contrast, MEK/ERK inhibition did not affect phosphorylation of a Smad3 construct mutated at consensus phosphorylation sites in the linker region (Smad3EPSM). Constitutively active MEK (caMEK) induced alpha2(I) collagen promoter activity, an effect blocked by co-transfected Smad3EPSM, but not Smad3A. The effects of caMEK and TGF-alpha1 on collagen promoter activity were additive. These results indicate that ERK-dependent R-Smad linker region phosphorylation enhances collagen I synthesis and imply positive cross talk between the ERK and Smad pathways in human mesangial cells.
引用
收藏
页码:1576 / +
页数:21
相关论文
共 69 条
[1]   T beta RI phosphorylation of Smad2 on Ser(465) and Ser(467) is required for Smad2-Smad4 complex formation and signaling [J].
Abdollah, S ;
MaciasSilva, M ;
Tsukazaki, T ;
Hayashi, H ;
Attisano, L ;
Wrana, JL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (44) :27678-27685
[2]   Evidence for a role of Rho-like GTPases and stress-activated protein kinase/c-Jun N-terminal kinase (SAPK/JNK) in transforming growth factor beta-mediated signaling [J].
Atfi, A ;
Djelloul, S ;
Chastre, E ;
Davis, RR ;
Gespach, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (03) :1429-1432
[3]   The Raf-1/MEK/ERK pathway regulates the expression of the p21Cip1/Waf1 gene in chondrocytes [J].
Beier, F ;
Taylor, AC ;
LuValle, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (42) :30273-30279
[4]   Integrin β1 signaling is necessary for transforming growth factor-β activation of p38MAPK and epithelial plasticity [J].
Bhowmick, NA ;
Zent, R ;
Ghiassi, M ;
McDonnell, M ;
Moses, HL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (50) :46707-46713
[5]   Cross-talk between the p42/p44 MAP kinase and Smad pathways in transforming growth factor β1-induced furin gene transactivation [J].
Blanchette, F ;
Rivard, N ;
Rudd, P ;
Grondin, F ;
Attisano, L ;
Dubois, CM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (36) :33986-33994
[6]   MEKK-1, a component of the stress (stress-activated protein kinase c-Jun N-terminal kinase) pathway, can selectively activate Smad2-mediated transcriptional activation in endothelial cells [J].
Brown, JD ;
DiChiara, MR ;
Anderson, KR ;
Gimbrone, MA ;
Topper, JN .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (13) :8797-8805
[7]  
BRUIJN JA, 1994, J LAB CLIN MED, V123, P34
[8]   Smad4/DPC4 silencing and hyperactive Ras jointly disrupt transforming growth factor-β antiproliferative responses in colon cancer cells [J].
Calonge, MJ ;
Massagué, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (47) :33637-33643
[9]   Mammalian MAP kinase signalling cascades [J].
Chang, LF ;
Karin, M .
NATURE, 2001, 410 (6824) :37-40
[10]   Smad4 and FAST-1 in the assembly of activin-responsive factor [J].
Chen, X ;
Weisberg, E ;
Fridmacher, V ;
Watanabe, M ;
Naco, G ;
Whitman, M .
NATURE, 1997, 389 (6646) :85-89