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Could ROS signals drive tissue-specific clocks?

机译:ROS信号能否驱动组织特定的时钟?

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摘要

Circadian clocks have emerged to fine-tune the physiology of organisms to periodic changes in the environment in a dynamic fashion. Negative implications of circadian disruptions in humans, animals and plants have encouraged extensive studies of clock-controlled biological processes in various model species. Recently, it has been shown that the transcription-dependent and -independent biological oscillators are largely driven by cellular oxidative cycles that are intrinsically linked with metabolism.Essentially, the clock is viewed as an integrated network that encompasses cytosolic, genetic and metabolic dimensions. Furthermore, in multicellular organisms, the clock network is organized in a tissue-specific manner. Here we discuss questions that remain unanswered: How do these dimensions communicate with each other and how do tissue-specific clocks exchange temporal information within multicellular organisms?
机译:昼夜节律时钟已经出现,可以以动态的方式微调生物的生理状态,以适应环境的周期性变化。人类,动物和植物的昼夜节律破坏的负面影响鼓励了对各种模型物种中时钟控制的生物过程的广泛研究。最近,研究表明,转录依赖性和非依赖性生物振荡器主要受与代谢内在联系的细胞氧化循环的驱动。从本质上讲,时钟被视为涵盖细胞质,遗传和代谢维度的综合网络。此外,在多细胞生物中,时钟网络以组织特定的方式组织。在这里,我们讨论仍然悬而未决的问题:这些维度如何相互沟通,组织特定的时钟如何在多细胞生物内交换时间信息?

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