首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Phosphorylation-dependent maturation of Neurospora circadian clock protein from a nuclear repressor toward a cytoplasmic activator.
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Phosphorylation-dependent maturation of Neurospora circadian clock protein from a nuclear repressor toward a cytoplasmic activator.

机译:Neurospora昼夜节律时钟蛋白从核阻遏物向细胞质激活物的磷酸化依赖性成熟。

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摘要

Frequency (FRQ) is a central component of interconnected negative and positive limbs of feedback loops of the circadian clock of Neurospora. In the negative limb, FRQ inhibits its transcriptional activator White Collar Complex (WCC) and in the positive limb, FRQ supports accumulation of WCC. We show that these conflicting functions are confined to distinct subcellular compartments and coordinated in temporal fashion. Inactivation of the transcriptional activator WCC requires nuclear FRQ and occurs early after the onset of FRQ expression. Support of WCC accumulation requires cytosolic FRQ and occurs on a post-translational level, when high amounts of FRQ have accumulated. The transcriptional function of FRQ in the negative loop and its post-translational function in the positive loop are independent and associated with distinct regions of FRQ. Phosphorylation of FRQ at the PEST-2 region triggers its maturation from a nuclear repressor toward a cytoplasmic activator.
机译:频率(FRQ)是Neurospora昼夜节律时钟的反馈回路的正负四肢的相互联系的中心组成部分。在负肢中,FRQ抑制其转录激活因子白领复合体(WCC);在正肢中,FRQ支持WCC的积累。我们表明,这些冲突的功能仅限于不同的亚细胞区室,并在时间上协调。转录激活因子WCC的失活需要核FRQ,并在FRQ表达开始后的早期发生。支持WCC积累需要胞质FRQ,并且在积累大量FRQ时会发生在翻译后水平。 FRQ在负环中的转录功能和其翻译后功能在正环中是独立的,并且与FRQ的不同区域相关。 FRQ在PEST-2区域的磷酸化会触发其从核阻遏物向细胞质活化剂的成熟。

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