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A brief history of circadian time: The emergence of redox oscillations as a novel component of biological rhythms

机译:昼夜节律的简要历史:氧化还原振荡作为生物节律的新组成部分的出现

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Summary Circadian rhythms are present in all living organisms. They organise processes such as gene transcription, mitosis, feeding, and rest at different times of day and night. These rhythms are orchestrated by a network of core ‘clock genes’ that are organised into transcription–translation feedback loops (TTFLs), producing oscillations with a period of approximately 24 h. The modern understanding of circadian timekeeping has revolved around the TTFL paradigm. Recently, however, this has been challenged by new findings that redox reactions persist in the absence of gene transcription, and that cycles of oxidation and reduction are conserved across all domain of life. These results suggest that non-transcriptional processes such as metabolic state may interact and work in parallel with the canonical genetic mechanisms of keeping circadian time.
机译:小结昼夜节律存在于所有活生物体中。它们在白天和晚上的不同时间组织诸如基因转录,有丝分裂,进食和休息的过程。这些节奏由核心“时钟基因”网络精心编排,这些基因被组织成转录-翻译反馈环(TTFL),并在大约24小时内产生振荡。对昼夜节律性的现代理解围绕着TTFL范例展开。然而,最近,这已经受到新发现的挑战,即氧化还原反应在不存在基因转录的情况下仍然存在,并且氧化和还原循环在生命的所有领域中都得以保留。这些结果表明,非转录过程(例如代谢状态)可能与保持昼夜节律的规范遗传机制相互作用并且并行工作。

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