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Functional Role of p53 in the Regulation of Chemical-Induced Oxidative Stress

机译:P53在化学氧化应激调节中P53的功能作用

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The nuclear transcription factor p53, discovered in 1979, has a broad range of biological functions, primarily the regulation of apoptosis, the cell cycle, and DNA repair. In addition to these canonical functions, a growing body of evidence suggests that p53 plays an important role in regulating intracellular redox homeostasis through transcriptional and nontranscriptional mechanisms. Oxidative stress induction and p53 activation are common responses to chemical exposure and are suggested to play critical roles in chemical-induced toxicity. The activation of p53 can exert either prooxidant or antioxidant activity, depending on the context. In this review, we discuss the functional role of p53 in regulating chemical-induced oxidative stress, summarize the potential signaling pathways involved in p53’s regulation of chemically mediated oxidative stress, and propose issues that should be addressed in future studies to improve understanding of the relationship between p53 and chemical-induced oxidative stress.
机译:1979年发现的核转录因子P53具有广泛的生物功能,主要是调节细胞凋亡,细胞周期和DNA修复。除了这些规范功能之外,越来越多的证据表明P53在通过转录和非划算机制调节细胞内氧化还原性稳态方面发挥着重要作用。氧化应激诱导和P53活化是对化学暴露的常见反应,并建议在化学诱导的毒性中发挥关键作用。根据上下文,P53的活化可以施加过氧化物或抗氧化活性。在本综述中,我们讨论了P53在调节化学氧化应激方面的功能作用,总结了P53对化学介导的氧化应激调节的潜在信号通路,并提出了在未来的研究中应解决的问题,以改善对关系的理解P53和化学诱导的氧化应激之间。

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