England K, Watson J, Beale G, Warner M, Cross J, Rumsby M
Department of Biology, University of York, York YO10 5DD, United Kingdom.
J Biol Chem. 2001 Mar 30;276(13):10437-42. doi: 10.1074/jbc.M009421200. Epub 2000 Dec 19.
We have recently demonstrated that in quiescent fibroblasts protein kinase C (PKC) epsilon(95) is phosphorylated at Ser(729), Ser(703), and Thr(566) and that upon passage of quiescent cells phosphorylation at Ser(729) is lost, giving rise to PKCepsilon(87). Ser(729) may be rephosphorylated later, suggesting cycling between PKCepsilon(87) and PKCepsilon(95). Here we show that the dephosphorylation at Ser(729) is insensitive to okadaic acid, calyculin, ascomycin C, and cyclosporin A, suggesting that dephosphorylation at this site is not mediated through protein phosphatases 1, 2A or 2B. We demonstrate that this dephosphorylation at Ser(729) requires serum and cell readhesion and is sensitive to rapamycin, PD98059, chelerythrine, and Ro-31-8220. These results suggest that the phosphorylation status of Ser(729) in the hydrophobic domain at Ser(729) is regulated independently of the phosphorylation status of other sites in PKCepsilon, by a mTOR-sensitive phosphatase. The mitogen-activated protein kinase pathway and PKC are also implicated in regulating the dephosphorylation at Ser(729).
我们最近证实,在静止的成纤维细胞中,蛋白激酶C(PKC)ε(95)在Ser(729)、Ser(703)和Thr(566)位点发生磷酸化,而静止细胞传代后,Ser(729)位点的磷酸化消失,产生PKCε(87)。Ser(729)位点可能随后会再次磷酸化,提示PKCε(87)和PKCε(95)之间存在循环。在此我们表明,Ser(729)位点的去磷酸化对冈田酸、花萼海绵诱癌素、子囊霉素C和环孢菌素A不敏感,提示该位点的去磷酸化不是通过蛋白磷酸酶1、2A或2B介导的。我们证实,Ser(729)位点的去磷酸化需要血清和细胞重新黏附,并且对雷帕霉素、PD98059、白屈菜红碱和Ro-31-8220敏感。这些结果表明,PKCε疏水结构域中Ser(729)位点的磷酸化状态由一种对雷帕霉素靶蛋白(mTOR)敏感的磷酸酶独立于PKCε其他位点的磷酸化状态进行调控。丝裂原活化蛋白激酶途径和PKC也参与调控Ser(729)位点的去磷酸化。