Pan B T, Zhang Y, Brott B, Chen D H
Department of Surgery, University of Kentucky Chandler Medical Center, Lexington 40536, USA.
Oncogene. 1997 Apr 10;14(14):1653-60. doi: 10.1038/sj.onc.1201009.
In the Xenopus egg and oocyte system, oncogenic Ras protein can induce cell cycle arrest. The effect of oncogenic Ras on the cell cycle seems to be mediated by the Raf-Mek-Erk pathway of Ras signal transduction since constitutively active Raf, Mek, or Erk can mimic the effect of oncogenic Ras protein and since specific inhibition of these kinases can block the effect of oncogenic Ras. Using activated Xenopus egg extracts, we previously reported that the cell cycle arrest induced by oncogenic Ras correlates with the activation of a 96 kDa protein that phosphorylates histone h2b in vitro. This result raised the possibility that the 96 kDa kinase (designated as p96h2bk) is a potential target of the Raf-Mek-Erk pathway that links the pathway to the control of the cell cycle. We report here that constitutively active Mek1 could activate p96h2bk in the absence of oncogenic Ras. Moreover, inhibition of endogenous Mek by a specific inhibitor, PD 098059, suppressed the activation of p96h2bk by oncogenic Ras. These results are consistent with the concept that p96h2bk is a component or target of the Raf-Mek-Erk pathway. Furthermore, we have shown that activation of p96h2bk requires serine/threonine phosphorylation of p96h2bk.
在非洲爪蟾卵母细胞系统中,致癌性Ras蛋白可诱导细胞周期停滞。致癌性Ras对细胞周期的影响似乎是由Ras信号转导的Raf-Mek-Erk途径介导的,因为组成型激活的Raf、Mek或Erk可模拟致癌性Ras蛋白的作用,且对这些激酶的特异性抑制可阻断致癌性Ras的作用。利用激活的非洲爪蟾卵提取物,我们之前报道致癌性Ras诱导的细胞周期停滞与一种96 kDa蛋白的激活相关,该蛋白在体外可使组蛋白h2b磷酸化。这一结果增加了一种可能性,即96 kDa激酶(命名为p96h2bk)是Raf-Mek-Erk途径的一个潜在靶点,该途径将该信号通路与细胞周期调控联系起来。我们在此报告,在不存在致癌性Ras的情况下,组成型激活的Mek1可激活p96h2bk。此外,用特异性抑制剂PD 098059抑制内源性Mek可抑制致癌性Ras对p96h2bk的激活。这些结果与p96h2bk是Raf-Mek-Erk途径的一个组成部分或靶点这一概念一致。此外,我们还表明p96h2bk的激活需要p96h2bk的丝氨酸/苏氨酸磷酸化。