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Epigenetic Control of Circadian Clock Operation during Development

机译:生物钟在发育过程中的表观遗传控制

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摘要

The molecular players of circadian clock oscillation have been identified and extensively characterized. The epigenetic mechanisms behind the circadian gene expression control has also been recently studied, although there are still details to be illucidated. In this review, we briefly summarize the current understanding of the mammalian clock. We also provide evidence for the lack of circadian oscillation in particular cell types. As the circadian clock has intimate interaction with the various cellular functions in different type of cells, it must have plasticity and specicity in its operation within different epigenetic environments. The lack of circadian oscillation in certain cells provide an unique opportunity to study the required epigenetic environment in the cell that permit circadian oscillation and to idenfify key influencing factors for proper clock function. How epigenetic mechansims, including DNA methylaiton and chromatin modifications, participate in control of clock oscillation still awaits future studies at the genomic scale.
机译:昼夜节律振荡的分子参与者已被鉴定并得到广泛表征。尽管仍有许多细节需要阐明,但最近还研究了昼夜节律基因表达控制背后的表观遗传机制。在这篇综述中,我们简要总结了当前对哺乳动物时钟的理解。我们还提供了在特定细胞类型中缺乏昼夜节律振荡的证据。由于生物钟与不同类型细胞中的各种细胞功能有着密切的相互作用,因此其在不同表观遗传环境中的运作必须具有可塑性和特异性。在某些细胞中缺乏昼夜节律振荡,为研究细胞中所需的表观遗传环境提供了独特的机会,该表观遗传环境允许昼夜节律振荡并确定适当的时钟功能的关键影响因素。表观遗传机制(包括DNA甲基胺和染色质修饰)如何参与时钟振荡的控制仍在等待基因组规模的研究。

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