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负向自动调节因子将p53困在它们的网络中。

Negative auto-regulators trap p53 in their web.

作者信息

Zhou Xiang, Cao Bo, Lu Hua

机构信息

Fudan University Shanghai Cancer Center and the Institutes of Biomedical Sciences, Fudan University, Shanghai 200032, China.

Department of Biochemistry & Molecular Biology and Tulane Cancer Center, Tulane University School of Medicine, New Orleans, LA 70112, USA.

出版信息

J Mol Cell Biol. 2017 Feb 1;9(1):62-68. doi: 10.1093/jmcb/mjx001.

Abstract

The transcriptional factor p53 activates the expression of a myriad of target genes involving a complicated signalling network, resulting in various cellular outcomes, such as growth arrest, senescence, apoptosis, and metabolic changes, and leading to consequent suppression of tumour growth and progression. Because of the profoundly adverse effect of p53 on growth and proliferation of cancer cells, several feedback mechanisms have been employed by the cells to constrain p53 activity. Two major antagonists MDM2 and MDMX (the long forms) are transcriptionally induced by p53, but in return block p53 activity, forming a negative feedback circuit and rendering chemoresistance of several cancer cells. However, they are not alone, as cancer cells also employ other proteins encoded by p53 target genes to inhibit p53 activity at transcriptional, translational, and posttranslational levels. This essay is thus composed to review a recent progress in understanding the mechanisms for how cancer cells hijack the p53 autoregulation by these proteins for their growth advantage and to discuss the clinical implications of these autoregulatory loops.

摘要

转录因子p53可激活众多靶基因的表达,这些基因涉及一个复杂的信号网络,从而导致多种细胞结果,如生长停滞、衰老、凋亡和代谢变化,并进而抑制肿瘤生长和进展。由于p53对癌细胞的生长和增殖具有深远的不利影响,细胞采用了多种反馈机制来限制p53的活性。两种主要的拮抗剂MDM2和MDMX(长形式)由p53转录诱导产生,但反过来会阻断p53的活性,形成一个负反馈回路,并导致几种癌细胞产生化学抗性。然而,它们并非唯一的拮抗剂,因为癌细胞还利用p53靶基因编码的其他蛋白质在转录、翻译和翻译后水平抑制p53的活性。因此,本文旨在综述在理解癌细胞如何通过这些蛋白质劫持p53自身调节机制以获得生长优势方面的最新进展,并讨论这些自身调节回路的临床意义。

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