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p53蛋白稳定与激活的复杂性。

The complexity of p53 stabilization and activation.

作者信息

Lavin M F, Gueven N

机构信息

The Queensland Institute of Medical Research, Brisbane, Queensland, Australia.

出版信息

Cell Death Differ. 2006 Jun;13(6):941-50. doi: 10.1038/sj.cdd.4401925.

Abstract

A number of proteins are activated by stress stimuli but none so spectacularly or with the degree of complexity as the tumour suppressor p53 (human p53 gene or protein). Once stabilized, p53 is responsible for the transcriptional activation of a series of proteins involved in cell cycle control, apoptosis and senescence. This protein is present at low levels in resting cells but after exposure to DNA-damaging agents and other stress stimuli it is stabilized and activated by a series of post-translational modifications that free it from MDM2 (mouse double minute 2 but used interchangeably to denote human also), a ubiquination ligase that ubiquitinates it prior to proteasome degradation. The stability of p53 is also influenced by a series of other interacting proteins. In this review, we discuss the post-translational modifications to p53 in response to different stresses and the consequences of these changes.

摘要

许多蛋白质会被应激刺激激活,但没有一种蛋白质像肿瘤抑制因子p53(人类p53基因或蛋白)那样表现得如此显著或具有如此复杂的程度。一旦稳定下来,p53负责一系列参与细胞周期调控、凋亡和衰老的蛋白质的转录激活。这种蛋白质在静止细胞中含量较低,但在暴露于DNA损伤剂和其他应激刺激后,它会通过一系列翻译后修饰而稳定并激活,这些修饰使其从MDM2(小鼠双微体2,也可互换用于表示人类的该蛋白)中释放出来,MDM2是一种泛素连接酶,在蛋白酶体降解之前会使其泛素化。p53的稳定性还受到一系列其他相互作用蛋白的影响。在这篇综述中,我们讨论了p53响应不同应激的翻译后修饰以及这些变化的后果。

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