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粗糙脉孢菌和聚球藻中的微生物昼夜振荡系统:细胞时钟模型。

Microbial circadian oscillatory systems in Neurospora and Synechococcus: models for cellular clocks.

作者信息

Iwasaki H, Dunlap J C

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa, 464-01, Japan.

出版信息

Curr Opin Microbiol. 2000 Apr;3(2):189-96. doi: 10.1016/s1369-5274(00)00074-6.

Abstract

Common regulatory patterns have emerged among the feedback loops lying within circadian systems. Significant progress in dissecting the mechanism of clock resetting by temperature and the role of the WC proteins in the Neurospora light response has accompanied documentation of the importance of nuclear localization and phosphorylation-induced turnover of FRQ to this circadian cycle. The long-awaited molecular description of a transcription/translation loop in the Synechococcus circadian system represents a quantal step forward, followed by the identification of additional important proteins and interactions. Finally, the adaptive significance of rhythms in Synechococcus and by extension in all clocks nicely ties up an extraordinary year.

摘要

在昼夜节律系统中的反馈回路之间出现了常见的调节模式。在剖析温度对生物钟重置的机制以及脉孢菌光反应中WC蛋白的作用方面取得了重大进展,同时也记录了FRQ的核定位和磷酸化诱导的周转对这个昼夜节律周期的重要性。集胞藻昼夜节律系统中期待已久的转录/翻译环的分子描述代表了向前迈出的重要一步,随后又鉴定出了其他重要蛋白质和相互作用。最后,集胞藻节律以及由此延伸到所有生物钟的适应性意义很好地结束了非凡的一年。

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