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p16(Ink4a)通过增强细胞凋亡来干扰阿贝尔森病毒转化。

p16(Ink4a) interferes with Abelson virus transformation by enhancing apoptosis.

作者信息

Sachs Zohar, Sharpless Norman E, DePinho Ronald A, Rosenberg Naomi

机构信息

Department of Pathology, Sackler School of Graduate Biomedical Sciences, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Virol. 2004 Apr;78(7):3304-11. doi: 10.1128/jvi.78.7.3304-3311.2004.

Abstract

Pre-B-cell transformation by Abelson virus (Ab-MLV) is a multistep process in which primary transformants are stimulated to proliferate but subsequently undergo crisis, a period of erratic growth marked by high levels of apoptosis. Inactivation of the p53 tumor suppressor pathway is an important step in this process and can be accomplished by mutation of p53 or down-modulation of p19(Arf), a p53 regulatory protein. Consistent with these data, pre-B cells from either p53 or Ink4a/Arf null mice bypass crisis. However, the Ink4a/Arf locus encodes both p19(Arf) and a second tumor suppressor, p16(Ink4a), that blocks cell cycle progression by inhibiting Cdk4/6. To determine if p16(Ink4a) plays a role in Ab-MLV transformation, primary transformants derived from Arf(-/-) and p16(Ink4a(-/-)) mice were compared. A fraction of those derived from Arf(-/-) animals underwent crisis, and even though all p16(Ink4a(-/-)) primary transformants experienced crisis, these cells became established more readily than cells derived from +/+ mice. Analyses of Ink4a/Arf(-/-) cells infected with a virus that expresses both v-Abl and p16(Ink4a) revealed that p16(Ink4a) expression does not alter cell cycle profiles but does increase the level of apoptosis in primary transformants. These results indicate that both products of the Ink4a/Arf locus influence Ab-MLV transformation and reveal that in addition to its well-recognized effects on the cell cycle, p16(Ink4a) can suppress transformation by inducing apoptosis.

摘要

阿贝尔森病毒(Ab-MLV)介导的前B细胞转化是一个多步骤过程,其中原代转化细胞被刺激增殖,但随后会经历危机期,这是一段以高水平凋亡为特征的不稳定生长时期。p53肿瘤抑制通路的失活是这一过程中的重要一步,可通过p53突变或p19(Arf)(一种p53调节蛋白)的下调来实现。与这些数据一致,来自p53或Ink4a/Arf基因敲除小鼠的前B细胞可绕过危机期。然而,Ink4a/Arf基因座编码p19(Arf)和另一种肿瘤抑制因子p16(Ink4a),p16(Ink4a)通过抑制Cdk4/6来阻断细胞周期进程。为了确定p16(Ink4a)在Ab-MLV转化中是否起作用,对源自Arf(-/-)和p16(Ink4a(-/-))小鼠的原代转化细胞进行了比较。一部分源自Arf(-/-)动物的细胞经历了危机期,尽管所有p16(Ink4a(-/-))原代转化细胞都经历了危机期,但这些细胞比源自+/+小鼠的细胞更容易形成稳定细胞系。对感染了表达v-Abl和p16(Ink4a)的病毒的Ink4a/Arf(-/-)细胞的分析表明,p16(Ink4a)的表达不会改变细胞周期谱,但会增加原代转化细胞中的凋亡水平。这些结果表明,Ink4a/Arf基因座的两种产物都影响Ab-MLV转化,并揭示了除了其对细胞周期的公认作用外,p16(Ink4a)还可通过诱导凋亡来抑制转化。

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