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Oxidation–Reduction Cycles of PeroxiredoxinProteins and Nontranscriptional Aspects of Timekeeping

机译:Peroxiredoxin的氧化还原循环蛋白质和计时的非转录方面

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摘要

The circadian clock allows organisms to accurately predict the earth’s rotation and modify their behavior as a result. Genetic analyses in a variety of organisms have defined a mechanism based largely on gene expression feedback loops. However, as we delve more deeply into the mechanisms of circadian timekeeping, we are discovering that post-translational mechanisms play a key role in defining the character of the clock. We are also discovering that these modifications are inextricably linked to cellular metabolism, including redox homeostasis. A robust circadian oscillation in the redox status of the peroxiredoxins (a major class of cellular antioxidants) was recently shown to be remarkably conserved from archaea and cyanobacteria all the way to plants and animals. Furthermore, recent findings indicate that cellular redox status is coupled not only to canonical circadian gene expression pathways but also to a noncanonical transcript-independent circadian clock. The redox rhythms observed in peroxiredoxins in the absence of canonical clock mechanisms may hint at the nature of this new andhitherto unknown aspect of circadian timekeeping.
机译:生物钟可以使生物准确地预测地球的自转,并由此改变其行为。各种生物中的遗传分析已经定义了一种主要基于基因表达反馈环的机制。但是,当我们更深入地研究生物钟的计时机制时,我们发现翻译后机制在定义时钟特征方面起着关键作用。我们还发现,这些修饰与细胞代谢(包括氧化还原稳态)密不可分。最近显示,过氧化物氧还蛋白(一类主要的细胞抗氧化剂)在氧化还原状态中存在强烈的昼夜节律振荡,从古细菌和蓝细菌一直到植物和动物均能显着地保存下来。此外,最近的发现表明,细胞氧化还原状态不仅与规范的昼夜节律基因表达途径有关,而且与非规范的非转录本昼夜节律有关。在没有规范的时钟机制的情况下,在过氧化物氧还蛋白中观察到的氧化还原节律可能暗示了这种新物质的本质。昼夜节拍的迄今未知的方面。

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