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Cross-talk between circadian clocks, sleep-wake cycles, and metabolic networks: Dispelling the darkness

机译:昼夜节律,睡眠-唤醒周期和新陈代谢网络之间的串扰:消除黑暗

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摘要

Integration of knowledge concerning circadian rhythms, metabolic networks, and sleep-wake cycles is imperative for unraveling the mysteries of biological cycles and their underlying mechanisms. During the last decade, enormous progress in circadian biology research has provided a plethora of new insights into the molecular architecture of circadian clocks. However, the recent identification of autonomous redox oscillations in cells has expanded our view of the clockwork beyond conventional transcription/translation feedback loop models, which have been dominant since the first circadian period mutants were identified in fruit fly. Consequently, non-transcriptional timekeeping mechanisms have been proposed, and the antioxidant peroxiredoxin proteins have been identified as conserved markers for 24-hour rhythms. Here, we review recent advances in our understanding of interdependencies amongst circadian rhythms, sleep homeostasis, redox cycles, and other cellular metabolic networks. We speculate that systems-level investigations implementing integrated multi-omics approaches could provide novel mechanistic insights into the connectivity between daily cycles and metabolic systems.
机译:整合有关昼夜节律,代谢网络和睡眠-觉醒周期的知识对于揭示生物学周期及其基本机制的奥秘至关重要。在过去的十年中,生物钟生物学研究的巨大进展为生物钟的分子结构提供了许多新见解。然而,最近对细胞中自主氧化还原振荡的鉴定使我们对发条的看法超出了传统的转录/翻译反馈环模型的范围,自从在果蝇中鉴定出第一个昼夜节律突变体以来,该模型就一直占据主导地位。因此,已经提出了非转录计时机制,并且抗氧化剂过氧化物酶蛋白已被鉴定为24小时节律的保守标记。在这里,我们回顾了我们对昼夜节律,睡眠稳态,氧化还原循环和其他细胞代谢网络之间相互依赖性的理解方面的最新进展。我们推测,实施集成多组学方法的系统级研究可以为日常循环与代谢系统之间的连通性提供新颖的机理见解。

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