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细胞与分子水平的生物钟学:昼夜节律计时的模型与机制

Chronobiology at the cellular and molecular levels: models and mechanisms for circadian timekeeping.

作者信息

Edmunds L N

出版信息

Am J Anat. 1983 Dec;168(4):389-431. doi: 10.1002/aja.1001680404.

Abstract

This review considers cellular chronobiology and examines, at least in a superficial way, several classes of models and mechanisms that have been proposed for circadian rhythmicity and some of the experimental approaches that have appeared to be most productive. After a brief discussion of temporal organization and the metabolic, epigenetic, and circadian time domains, the general properties of circadian rhythms are enumerated. A survey of independent oscillations in isolated organs, tissues, and cells is followed by a review of selected circadian rhythms in eukaryotic microorganisms, with particular emphasis placed on the rhythm of cell division in the algal flagellate Euglena as a model system illustrating temporal differentiation. In the ensuing section, experimental approaches to circadian clock mechanisms are considered. The dissection of the clock by the use of chemical inhibitors is illustrated for the rhythm of bioluminescence in the marine dinoflagellate Gonyaulax and for the rhythm of photosynthetic capacity in the unicellular green alga Acetabularia. Alternatively, genetic analysis of circadian oscillators is considered in the green alga Chlamydomonas and in the bread mold Neurospora, both of which have yielded clock mutants and mutants having biochemical lesions that exhibit altered clock properties. On the basis of the evidence generated by these experimental approaches, several classes of biochemical and molecular models for circadian clocks have been proposed. These include strictly molecular models, feedback loop (network) models, transcriptional (tape-reading) models, and membrane models; some of their key elements and predictions are discussed. Finally, a number of general unsolved problems at the cellular level are briefly mentioned: cell cycle interfaces, the evolution of circadian rhythmicity, the possibility of multiple cellular oscillators, chronopharmacology and chronotherapy, and cell-cycle clocks in development and aging.

摘要

本综述探讨了细胞生物钟学,并至少从表面上审视了几类为昼夜节律性所提出的模型和机制,以及一些似乎最有成效的实验方法。在简要讨论了时间组织以及代谢、表观遗传和昼夜节律时域之后,列举了昼夜节律的一般特性。在对分离的器官、组织和细胞中的独立振荡进行综述之后,接着回顾了真核微生物中选定的昼夜节律,特别强调了藻类鞭毛虫眼虫的细胞分裂节律,将其作为说明时间分化的模型系统。在随后的部分中,考虑了研究昼夜节律钟机制的实验方法。以海洋甲藻多甲藻的生物发光节律和单细胞绿藻伞藻的光合能力节律为例,说明了使用化学抑制剂对生物钟进行剖析的情况。另外,还在绿藻衣藻和面包霉菌脉孢菌中考虑了昼夜节律振荡器的遗传分析,这两种生物都产生了生物钟突变体以及具有生化损伤且表现出改变的生物钟特性的突变体。基于这些实验方法所产生的证据,已经提出了几类用于昼夜节律钟的生化和分子模型。这些模型包括严格的分子模型、反馈环(网络)模型、转录(磁带读取)模型和膜模型;讨论了它们的一些关键要素和预测。最后,简要提及了细胞水平上一些普遍未解决的问题:细胞周期界面、昼夜节律性的进化、多个细胞振荡器的可能性、时辰药理学和时辰治疗,以及发育和衰老过程中的细胞周期钟。

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