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Mos/丝裂原活化蛋白激酶途径与p53功能丧失在细胞转化和染色体不稳定性中的协同作用。

Synergy between the Mos/mitogen-activated protein kinase pathway and loss of p53 function in transformation and chromosome instability.

作者信息

Fukasawa K, Vande Woude G F

机构信息

ABL-Basic Research Program, NCI-Frederick Cancer Research and Development Center, Maryland 21702-1201, USA.

出版信息

Mol Cell Biol. 1997 Jan;17(1):506-18. doi: 10.1128/MCB.17.1.506.

Abstract

Constitutive activation of mitogen-activated protein kinase (MAPK) is a property common to many oncoproteins, including Mos, Ras, and Raf, and is essential for their transforming activities. We have shown that high levels of expression of the Mos/MAPK pathway in Swiss 3T3 fibroblast cause cells in S phase to undergo apoptosis, while cells in G1 irreversibly growth arrest. Interestingly, cells in G2 and M phases also arrest at a G1-like checkpoint after proceeding through mitosis. These cells fail to undergo cytokinesis and are binucleated. Thus, constitutive overexpression of Mos and MAPK cannot be tolerated, and fibroblasts transformed by Mos express only low levels of the mos oncogene product. Here, we show that p53 plays a key role in preventing oncogene-mediated activation of MAPK. In the absence of p53 (p53-/-), the growth arrest normally observed in wild-type p53 (p53+/+) mouse embryo fibroblasts (MEFs) is markedly reduced. The mos transformation efficiency in p53-/- MEFs is two to three orders of magnitude higher than that in p53+/+ cells, and p53-/- cells tolerate > 10-fold higher levels of both Mos and activated MAPK. Moreover, we show that, like Mos, both v-ras and v-raf oncogene products induce apoptosis in p53+/+ MEFs. These oncogenes also display a high transforming activity in p53-/- MEFs, as does a gain-of-function MAPK kinase mutant (MEK*). Thus, the p53-dependent checkpoint pathway is responsive to oncogene-mediated MAPK activation in inducing irreversible G1 growth arrest and apoptosis. Moreover, we show that the chromosome instability induced by the loss of p53 is greatly enhanced by the constitutive activation of the Mos/MAPK pathway.

摘要

丝裂原活化蛋白激酶(MAPK)的组成性激活是许多癌蛋白共有的特性,包括Mos、Ras和Raf,并且对于它们的转化活性至关重要。我们已经表明,瑞士3T3成纤维细胞中Mos/MAPK途径的高水平表达会导致处于S期的细胞发生凋亡,而处于G1期的细胞则会不可逆地生长停滞。有趣的是,处于G2期和M期的细胞在经历有丝分裂后也会在类似G1期的检查点处停滞。这些细胞无法进行胞质分裂,而是双核的。因此,Mos和MAPK的组成性过表达无法被耐受,并且由Mos转化的成纤维细胞仅表达低水平的mos癌基因产物。在这里,我们表明p53在防止癌基因介导的MAPK激活中起关键作用。在没有p53(p53-/-)的情况下,野生型p53(p53+/+)小鼠胚胎成纤维细胞(MEF)中通常观察到的生长停滞明显减少。p53-/- MEF中的mos转化效率比p53+/+细胞高两到三个数量级,并且p53-/-细胞能够耐受比Mos和活化MAPK高10倍以上的水平。此外,我们表明,与Mos一样,v-ras和v-raf癌基因产物在p53+/+ MEF中诱导凋亡。这些癌基因在p53-/- MEF中也表现出高转化活性,功能获得性MAPK激酶突变体(MEK*)也是如此。因此,p53依赖性检查点途径在诱导不可逆的G1期生长停滞和凋亡中对癌基因介导的MAPK激活有反应。此外,我们表明,Mos/MAPK途径的组成性激活大大增强了由p53缺失引起的染色体不稳定性。

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