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Redox regulation of p53, redox effectors regulated by p53: A subtle balance

机译:p53的氧化还原调节,p53调节的氧化还原效应子:微妙的平衡

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摘要

Significance: Reactive oxygen species (ROS), generated by cells as side products of biological reactions, function as secondary messengers by impacting a host of cellular networks involved in maintaining normal homeostatic growth as well as pathological disease states. Redox-sensitive proteins, such as the tumor suppressor protein p53, are susceptible to ROS-dependent modifications, which could impact their activities and/or biological functions. Recent Advances: p53 is a transcription factor that controls a wide variety of target genes and regulates numerous cellular functions in response to stresses that lead to genomic instability. Thus, redox modifications of p53 could impact cell fate signaling and could have profound effects on pathways fundamental to maintaining cell and tissue integrity. Critical Issues: Recent studies present evidence that ROS function upstream of p53 in some model systems, while in others ROS production could be a downstream effect of p53 activation. Future Directions: In this review, we describe how ROS production regulates p53 activity and how p53 can, in turn, influence cellular ROS production.
机译:意义:细胞作为生物反应的副产物而产生的活性氧(ROS),通过影响与维持正常稳态生长以及病理性疾病状态有关的许多细胞网络而充当次级信使。氧化还原敏感蛋白,例如肿瘤抑制蛋白p53,容易受到ROS依赖性修饰的影响,这可能会影响其活性和/或生物学功能。最新进展:p53是一种转录因子,可控制多种靶基因并调节多种细胞功能,以应对导致基因组不稳定的压力。因此,p53的氧化还原修饰可能会影响细胞命运信号传递,并可能对维持细胞和组织完整性的基本途径产生深远影响。关键问题:近期研究表明,ROS在某些模型系统中在p53上游起作用,而在其他模型系统中,ROS的产生可能是p53激活的下游效应。未来发展方向:在这篇综述中,我们描述了ROS的产生如何调节p53的活性,以及​​p53如何反过来影响细胞ROS的产生。

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