ALTERED REGULATION OF SRC TYROSINE KINASE BY TRANSFORMING-GROWTH-FACTOR BETA(1) IN A HUMAN HEPATOMA-CELL LINE

Citation
K. Fukuda et al., ALTERED REGULATION OF SRC TYROSINE KINASE BY TRANSFORMING-GROWTH-FACTOR BETA(1) IN A HUMAN HEPATOMA-CELL LINE, Hepatology, 28(3), 1998, pp. 796-804
Citations number
54
Categorie Soggetti
Gastroenterology & Hepatology
Journal title
ISSN journal
02709139
Volume
28
Issue
3
Year of publication
1998
Pages
796 - 804
Database
ISI
SICI code
0270-9139(1998)28:3<796:AROSTK>2.0.ZU;2-7
Abstract
Transforming growth factor ps (TGF-beta s) are the potent growth inhib itors for various cell types. Certain transformed cells, however, show poor response to TGF-beta induced growth inhibition, which contribute s to their uncontrolled proliferation. Recently, we have reported that TGF-beta(1) induces degradation of activated Src tyrosine kinase in r at fibroblasts, To elucidate the alteration in TGF-beta(1) signaling p athway in turner cells that cannot respond to the cytokine, we compare d the effects of TGF-beta(1) on Src kinase in two human hepatoma cell lints, TGF-beta(1)-insensitive Mahlavu cells and TGF-beta(1)-sensitive HepG2 cells, TGF-beta(1) decreased Src kinase activity in HepG2 cells , but increased cellular Src levels and Src kinase activity in Mahlavu cells. Go-incubation of Mahlavu cells with TGF-beta 1 and 12-O-tetrad ecanoyl phorbol 13-acetate (TPA) decreased Src protein levels and Src kinase activity, inducing TGF-beta(1) sensitivity. TGF-beta(1) induced tyrosine dephosphorylation of Ras guanosine triphosphatase-activating protein (Ras-GAP) and Ras inactivation in HepG2 cells, but induced Ra s-GAP phosphorylation and Ras activation in Mahlavu cells. The Src kin ase inhibitor abolished the increase of Src kinase activity in TGF-bet a(1)-treated Mahlavu cells, and induced TGF-beta(1) sensitivity. These findings suggest that regulation of Src kinase by TGF-beta(1) is alte red in Mahlavu cells. The altered regulation of Src may contribute to TGF-beta(1) insensitivity in this cell line, at least in part through activation of Ras.