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首页> 外文期刊>Antioxidants and redox signalling >Regulation of translation by hydrogen peroxide.
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Regulation of translation by hydrogen peroxide.

机译:过氧化氢调节翻译。

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摘要

Cells must be able to maintain their intracellular homeostasis in the face of changing conditions. Typically, they respond by invoking complex regulatory mechanisms, including a global inhibition of translation. This reduction in protein synthesis may prevent continued gene expression during potentially error-prone conditions as well as allow for the turnover of existing mRNAs and proteins, whilst gene expression is directed toward the production of new molecules required to protect against or detoxify the stress. However, it is becoming increasingly recognized that not all translation is inhibited and translational control of specific mRNAs is required for survival under stress conditions. Control of protein levels via translational regulation offers a significant advantage to the cell due to the immediacy of the regulatory effect. This review describes how protein synthesis is regulated in response to oxidative stress conditions induced by exposure to hydrogen peroxide. Translational control can be mediated via direct oxidative regulation of translation factors as well via mRNA-specific regulatory mechanisms. Additionally, increasing evidence suggests that oxidative damage to the translational apparatus can itself alter the proteomic output. The resulting translational reprogramming is fundamental for adaptation to the oxidative stress.
机译:面对不断变化的条件,细胞必须能够维持其细胞内稳态。通常,它们通过调用复杂的调节机制来响应,包括全面抑制翻译。蛋白质合成的这种减少可能会阻止潜在的容易出错的情况下基因的持续表达,并允许现有的mRNA和蛋白质的更新,而基因表达则是针对保护或消除压力所需的新分子的产生。但是,人们越来越认识到,并不是所有的翻译都被抑制,并且特定的mRNA的翻译控制是在压力条件下生存所必需的。由于调节作用的即时性,通过翻译调节控制蛋白质水平为细胞提供了显着的优势。这篇综述描述了如何响应于暴露于过氧化氢引起的氧化应激条件来调节蛋白质的合成。翻译控制可以通过直接氧化调节翻译因子以及通过mRNA特异性调节机制来介导。另外,越来越多的证据表明对翻译装置的氧化损伤本身可以改变蛋白质组学输出。产生的翻译重编程对于适应氧化应激至关重要。

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