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p53信号通路与代谢:只见树木,不见森林。

The p53 Pathway and Metabolism: The Tree That Hides the Forest.

作者信息

Lahalle Airelle, Lacroix Matthieu, De Blasio Carlo, Cissé Madi Y, Linares Laetitia K, Le Cam Laurent

机构信息

Université de Montpellier, F-34090 Montpellier, France.

IRCM, Institut de Recherche en Cancérologie de Montpellier, F-34298 Montpellier, France.

出版信息

Cancers (Basel). 2021 Jan 4;13(1):133. doi: 10.3390/cancers13010133.

Abstract

The p53 pathway is functionally inactivated in most, if not all, human cancers. The p53 protein is a central effector of numerous stress-related molecular cascades. p53 controls a safeguard mechanism that prevents accumulation of abnormal cells and their transformation by regulating DNA repair, cell cycle progression, cell death, or senescence. The multiple cellular processes regulated by p53 were more recently extended to the control of metabolism and many studies support the notion that perturbations of p53-associated metabolic activities are linked to cancer development, as well as to other pathophysiological conditions including aging, type II diabetes, and liver disease. Although much less documented than p53 metabolic activities, converging lines of evidence indicate that other key components of this tumor suppressor pathway are also involved in cellular metabolism through p53-dependent as well as p53-independent mechanisms. Thus, at least from a metabolic standpoint, the p53 pathway must be considered as a non-linear pathway, but the complex metabolic network controlled by these p53 regulators and the mechanisms by which their activities are coordinated with p53 metabolic functions remain poorly understood. In this review, we highlight some of the metabolic pathways controlled by several central components of the p53 pathway and their role in tissue homeostasis, metabolic diseases, and cancer.

摘要

在大多数(即便不是全部)人类癌症中,p53信号通路的功能会失活。p53蛋白是众多应激相关分子级联反应的核心效应器。p53控制着一种保障机制,该机制通过调节DNA修复、细胞周期进程、细胞死亡或衰老来防止异常细胞的积累及其转化。最近,p53所调控的多个细胞过程扩展到了代谢控制方面,许多研究支持这样一种观点,即p53相关代谢活动的紊乱与癌症发展以及包括衰老、II型糖尿病和肝病在内的其他病理生理状况有关。尽管与p53的代谢活动相比,相关记录要少得多,但越来越多的证据表明,这条肿瘤抑制信号通路的其他关键组分也通过p53依赖和p53非依赖机制参与细胞代谢。因此,至少从代谢角度来看,p53信号通路必须被视为一条非线性通路,但是由这些p53调节因子所控制的复杂代谢网络以及它们的活性与p53代谢功能协同的机制仍知之甚少。在这篇综述中,我们重点介绍了p53信号通路的几个核心组分所控制的一些代谢途径及其在组织稳态、代谢性疾病和癌症中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6764/7796211/a7538f9e6951/cancers-13-00133-g001.jpg

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