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Ras在肿瘤坏死因子-α诱导的细胞周期调控中的相反作用:对Raf激酶的竞争

Opposite role of Ras in tumor necrosis factor-alpha-induced cell cycle regulation: competition for Raf kinase.

作者信息

Park S J, Kim Y Y, Lim J Y, Seo G J, Kim J, Park S I, Park B J

机构信息

Department of Cancer Research, National Institute of Health, Seoul, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2001 Oct 12;287(5):1140-7. doi: 10.1006/bbrc.2001.5713.

Abstract

Ras, a well-known oncogene, induces cell cycle stimulation through the Raf/Erk pathway and leads to cellular transformation, accompanied by other oncogenes such as c-myc and viral oncogenic protein. Here we suggest the interfering role of Ras in tumor necrosis factor (TNF)-alpha-induced cell cycle regulation. In TSU-Pr1 and T24 (oncogenic Ras cell lines), TNF-alpha suppresses cell cycle progression without induction of apoptosis, whereas AGS (wild-type Ras) is stimulated in its cell cycle by TNF-alpha coupled with activation of Erk. However, in TSU-Pr1 and T24, TNF-alpha leads to dephosphorylation of Erk1/2. Inhibition or activation of Ras can restore or convert TNF-alpha-induced cell cycle regulation in the cell lines containing the oncogenic Ras (TSU-Pr1 and T24) or AGS, respectively. Regulation of Erk also shows the coincidental pattern. We suggest the competition between the Ras pathway and TNF signaling for the binding to Raf, a common downstream target, as the cause of such reciprocal response, based on co-immunoprecipitation (co-IP) with antibodies against Raf and Ras or cellular Flice-inhibitory protein (c-FLIP), which have been recently identified upstream of Raf in death-ligand-induced cell cycle stimulation. Overexpression of Raf in TSU-Pr1, to reduce the competition, overcomes TNF-induced cell cycle arrest, also supporting our hypotheses.

摘要

Ras是一种著名的致癌基因,它通过Raf/Erk途径诱导细胞周期刺激并导致细胞转化,同时伴有其他致癌基因如c-myc和病毒致癌蛋白。在此我们提出Ras在肿瘤坏死因子(TNF)-α诱导的细胞周期调控中的干扰作用。在TSU-Pr1和T24(致癌性Ras细胞系)中,TNF-α抑制细胞周期进程而不诱导凋亡,而AGS(野生型Ras)在细胞周期中受到TNF-α刺激并伴有Erk激活。然而,在TSU-Pr1和T24中,TNF-α导致Erk1/2去磷酸化。分别抑制或激活Ras可恢复或改变TNF-α在含有致癌性Ras的细胞系(TSU-Pr1和T24)或AGS中诱导的细胞周期调控。对Erk的调控也呈现出相应模式。基于用针对Raf和Ras或细胞型FLICE抑制蛋白(c-FLIP)的抗体进行的免疫共沉淀(co-IP),我们认为Ras途径与TNF信号传导之间竞争与共同下游靶点Raf的结合是这种相互反应的原因,c-FLIP最近已在死亡配体诱导的细胞周期刺激中被确定位于Raf上游。在TSU-Pr1中过表达Raf以减少竞争,可克服TNF诱导的细胞周期停滞,这也支持了我们的假设。

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