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PAS蛋白VIVID定义了一个与生物钟相关的反馈回路,该回路抑制光输入、调节门控并调控生物钟重置。

The PAS protein VIVID defines a clock-associated feedback loop that represses light input, modulates gating, and regulates clock resetting.

作者信息

Heintzen C, Loros J J, Dunlap J C

机构信息

Department of Genetics, Dartmouth Medical School, Hanover, NH 03755, USA.

出版信息

Cell. 2001 Feb 9;104(3):453-64. doi: 10.1016/s0092-8674(01)00232-x.

Abstract

vvd, a gene regulating light responses in Neurospora, encodes a novel member of the PAS/LOV protein superfamily. VVD defines a circadian clock-associated autoregulatory feedback loop that influences light resetting, modulates circadian gating of input by connecting output and input, and regulates light adaptation. Rapidly light induced, vvd is an early repressor of light-regulated processes. Further, vvd is clock controlled; the clock gates light induction of vvd and the clock gene frq so identical signals yield greater induction in the morning. Mutation of vvd severely dampens gating, especially of frq, consistent with VVD modulating gating and phasing light-resetting responses. vvd null strains display distinct alterations in the phase-response curve to light. Thus VVD, although not part of the clock, contributes significantly to regulation within the Neurospora circadian system.

摘要

VVD是一种调节粗糙脉孢菌光反应的基因,编码PAS/LOV蛋白超家族的一个新成员。VVD定义了一个与生物钟相关的自调节反馈回路,该回路影响光重置,通过连接输出和输入来调节输入的昼夜节律门控,并调节光适应。VVD是快速光诱导的,是光调节过程的早期抑制因子。此外,VVD受生物钟控制;生物钟控制VVD和生物钟基因frq的光诱导,因此相同的信号在早晨产生更大的诱导。VVD突变会严重削弱门控,尤其是frq的门控,这与VVD调节门控和光重置反应的相位一致。vvd缺失菌株在对光的相位反应曲线上表现出明显的变化。因此,VVD虽然不是生物钟的一部分,但对粗糙脉孢菌昼夜节律系统内的调节有显著贡献。

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