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昼夜节律的分子基础。

Molecular bases of circadian rhythms.

作者信息

Harmer S L, Panda S, Kay S A

机构信息

Department of Cell Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Annu Rev Cell Dev Biol. 2001;17:215-53. doi: 10.1146/annurev.cellbio.17.1.215.

Abstract

Circadian rhythms are found in most eukaryotes and some prokaryotes. The mechanism by which organisms maintain these roughly 24-h rhythms in the absence of environmental stimuli has long been a mystery and has recently been the subject of intense research. In the past few years, we have seen explosive progress in the understanding of the molecular basis of circadian rhythms in model systems ranging from cyanobacteria to mammals. This review attempts to outline these primarily genetic and biochemical findings and encompasses work done in cyanobacteria, Neurospora, higher plants, Drosophila, and rodents. Although actual clock components do not seem to be conserved between kingdoms, central clock mechanisms are conserved. Somewhat paradoxically, clock components that are conserved between species can be used in diverse ways. The different uses of common components may reflect the important role that the circadian clock plays in adaptation of species to particular environmental niches.

摘要

昼夜节律存在于大多数真核生物和一些原核生物中。长期以来,生物体在没有环境刺激的情况下维持这些大约24小时节律的机制一直是个谜,并且最近成为了深入研究的主题。在过去几年中,我们在从蓝细菌到哺乳动物等模型系统中对昼夜节律分子基础的理解上取得了突破性进展。这篇综述试图概述这些主要的遗传学和生物化学发现,并涵盖了在蓝细菌、粗糙脉孢菌、高等植物、果蝇和啮齿动物中所做的工作。尽管不同生物界之间实际的生物钟组件似乎并不保守,但核心生物钟机制却是保守的。有点自相矛盾的是,物种间保守的生物钟组件可以有多种不同的用途。常见组件的不同用途可能反映了昼夜节律钟在物种适应特定生态位中所起的重要作用。

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