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ERK2而非ERK1的缺失消除了致癌性Ras诱导的衰老。

Depletion of ERK2 but not ERK1 abrogates oncogenic Ras-induced senescence.

作者信息

Shin Jimin, Yang Jiwon, Lee Jang Choon, Baek Kwan-Hyuck

机构信息

Department of Molecular and Cellular Biology, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon, Gyeonggi 440-746, Republic of Korea.

出版信息

Cell Signal. 2013 Dec;25(12):2540-7. doi: 10.1016/j.cellsig.2013.08.014. Epub 2013 Aug 30.

Abstract

In response to oncogenic activation, cells initially undergo proliferation followed by an irreversible growth arrest called oncogene-induced senescence (OIS), an endogenous defense mechanism against tumorigenesis. Oncogenic activation of ERK1/2 is essential for both the initial phase of cellular proliferation as well as subsequent premature senescence, but little is known about the specific contribution of ERK1 versus 2 to OIS. Here we show that depletion of ERK2 but not ERK1 by shRNA knockdown in MEFs leads to continuous proliferation bypassing senescence even in the presence of oncogenic HRAS(V12). Upon depletion of ERK2, induction of both p19(Arf) and p16(Ink4a) was significantly compromised after oncogenic HRAS(V12) expression, attenuating activation of the key tumor suppressors p53 and pRb. Here we demonstrate that ERK2 but not ERK1 indirectly regulates p19(Arf) and p16(Ink4a) both at the transcriptional and translational level. Oncogenic Ras expression after ERK2 knockdown downregulates Fra-1 and c-Jun, components of the activator protein-1 (AP-1) heterodimer essential for transactivation of p19(Arf). Similarly we show a significant decrease in the activation of p38 MAPK and ETS family members which are involved in the induction of p16(Ink4a). The role of ERK2 in translational regulation is observed by the lack of tuberin (TSC2) and p70 ribosomal S6 kinase 1 (p70S6K1) phosphorylation, components of the mTOR pathway, which enhances p19(Arf) mRNA translation during oncogenic Ras-induced senescence. These observations suggest that ERK2 but not ERK1 contributes to upregulation of p19(Arf) and p16(Ink4a) in a transcription- and translation-dependent manner during oncogenic Ras-induced senescence. Taken together, our data indicate that ERK2 is the key ERK isoform mediating the senescence signaling pathway downstream of oncogenic Ras.

摘要

作为对致癌激活的反应,细胞最初会经历增殖,随后进入一种不可逆的生长停滞状态,即致癌基因诱导的衰老(OIS),这是一种针对肿瘤发生的内源性防御机制。ERK1/2的致癌激活对于细胞增殖的初始阶段以及随后的早衰都至关重要,但关于ERK1和ERK2对OIS的具体贡献知之甚少。在这里,我们表明,在MEF中通过shRNA敲低ERK2而非ERK1,即使在存在致癌性HRAS(V12)的情况下,也会导致细胞持续增殖并绕过衰老。ERK2缺失后,致癌性HRAS(V12)表达后p19(Arf)和p16(Ink4a)的诱导均显著受损,削弱了关键肿瘤抑制因子p53和pRb的激活。在这里,我们证明ERK2而非ERK1在转录和翻译水平上间接调节p19(Arf)和p16(Ink4a)。ERK2敲低后致癌性Ras表达下调Fra-1和c-Jun,它们是激活蛋白-1(AP-1)异二聚体的组成部分,对p19(Arf)的反式激活至关重要。同样,我们发现参与p16(Ink4a)诱导的p38 MAPK和ETS家族成员的激活也显著降低。通过观察发现,在致癌性Ras诱导的衰老过程中,mTOR途径的组成部分结节性硬化蛋白(TSC2)和p70核糖体S6激酶1(p70S6K1)缺乏磷酸化,这表明ERK2在翻译调控中发挥作用,mTOR途径可增强p19(Arf) mRNA的翻译。这些观察结果表明,在致癌性Ras诱导的衰老过程中,ERK2而非ERK1以转录和翻译依赖的方式促进p19(Arf)和p16(Ink4a)的上调。综上所述,我们的数据表明ERK2是介导致癌性Ras下游衰老信号通路的关键ERK亚型。

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