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生命的节律:粗糙脉孢菌中的昼夜节律输出途径

The rhythms of life: circadian output pathways in Neurospora.

作者信息

Vitalini Michael W, de Paula Renato M, Park William D, Bell-Pedersen Deborah

机构信息

Center for Biological Clocks Research, Department of Biology, Texas A&M University, College Station, TX 77843, USA.

出版信息

J Biol Rhythms. 2006 Dec;21(6):432-44. doi: 10.1177/0748730406294396.

Abstract

Research in Neurospora crassa pioneered the isolation of clock-controlled genes (ccgs), and more than 180 ccgs have been identified that function in various aspects of the fungal life cycle. Many clock-controlled genes are associated with damage repair, stress responses, intermediary metabolism, protein synthesis, and development. The expression of most of these genes peaks just before dawn and appears to prepare the cells for the desiccation, mutagenesis, and stress caused by sunlight. Progress on characterization of the output signaling pathways from the circadian oscillator mechanism to the ccgs is discussed. The authors also review evidence suggesting that, similar to other clock model organisms, a connection exists between the redox state of the cell and the Neurospora clock. The authors speculate that the clock system may sense not only light but also the redox potential of the cell through one of the PAS domains of the core clock components WC-1 or WC-2.

摘要

粗糙脉孢菌的研究开创了生物钟调控基因(ccgs)的分离工作,现已鉴定出180多个在真菌生命周期各方面发挥作用的生物钟调控基因。许多生物钟调控基因与损伤修复、应激反应、中间代谢、蛋白质合成及发育相关。这些基因中的大多数在黎明前表达达到峰值,似乎是在为细胞应对阳光引起的干燥、诱变和应激做准备。文中讨论了从昼夜节律振荡器机制到生物钟调控基因的输出信号通路的表征进展。作者还综述了相关证据,表明与其他生物钟模式生物类似,细胞的氧化还原状态与粗糙脉孢菌生物钟之间存在联系。作者推测,生物钟系统不仅可以感知光线,还可能通过核心生物钟组件WC-1或WC-2的一个PAS结构域来感知细胞的氧化还原电位。

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