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蛋白激酶A通过磷酸化RCM-1调控不依赖白领因子的频率转录在粗糙脉孢菌生物钟中的作用

Role for Protein Kinase A in the Neurospora Circadian Clock by Regulating White Collar-Independent frequency Transcription through Phosphorylation of RCM-1.

作者信息

Liu Xiao, Li Hongda, Liu Qingqing, Niu Yanling, Hu Qiwen, Deng Haiteng, Cha Joonseok, Wang Ying, Liu Yi, He Qun

机构信息

State Key Laboratory of Agrobiotechnology and MOA Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing, China.

Department of Microbiology, College of Basic Medical Sciences, Third Military Medical University, Chongqing, China.

出版信息

Mol Cell Biol. 2015 Jun;35(12):2088-102. doi: 10.1128/MCB.00709-14. Epub 2015 Apr 6.

Abstract

Rhythmic activation and repression of clock gene expression is essential for the eukaryotic circadian clock functions. In the Neurospora circadian oscillator, the transcription of the frequency (frq) gene is periodically activated by the White Collar (WC) complex and suppressed by the FRQ-FRH complex. We previously showed that there is WC-independent frq transcription and its repression is required for circadian gene expression. How WC-independent frq transcription is regulated is not known. We show here that elevated protein kinase A (PKA) activity results in WC-independent frq transcription and the loss of clock function. We identified RCM-1 as the protein partner of RCO-1 and an essential component of the clock through its role in suppressing WC-independent frq transcription. RCM-1 is a phosphoprotein and is a substrate of PKA in vivo and in vitro. Mutation of the PKA-dependent phosphorylation sites on RCM-1 results in WC-independent transcription of frq and impaired clock function. Furthermore, we showed that RCM-1 is associated with the chromatin at the frq locus, a process that is inhibited by PKA. Together, our results demonstrate that PKA regulates frq transcription by inhibiting RCM-1 activity through RCM-1 phosphorylation.

摘要

生物钟基因表达的节律性激活和抑制对于真核生物的昼夜节律功能至关重要。在粗糙脉孢菌的昼夜节律振荡器中,频率(frq)基因的转录由白领(WC)复合物周期性激活,并被FRQ-FRH复合物抑制。我们之前表明存在不依赖WC的frq转录,并且其抑制对于昼夜节律基因表达是必需的。不依赖WC的frq转录如何被调控尚不清楚。我们在此表明,蛋白激酶A(PKA)活性升高会导致不依赖WC的frq转录以及生物钟功能丧失。我们鉴定出RCM-1是RCO-1的蛋白伴侣,并且通过其在抑制不依赖WC的frq转录中的作用,它是生物钟的一个重要组成部分。RCM-1是一种磷蛋白,在体内和体外都是PKA的底物。RCM-1上PKA依赖性磷酸化位点的突变导致frq的不依赖WC转录以及生物钟功能受损。此外,我们表明RCM-1与frq基因座处的染色质相关,这一过程受到PKA的抑制。总之,我们的结果表明PKA通过RCM-1磷酸化抑制RCM-1活性来调节frq转录。

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