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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure of the C-terminal domain of the clock protein KaiA in complex with a KaiC-derived peptide: implications for KaiC regulation.
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Structure of the C-terminal domain of the clock protein KaiA in complex with a KaiC-derived peptide: implications for KaiC regulation.

机译:与KaiC衍生的肽复合的时钟蛋白KaiA的C端结构域结构:对KaiC调控的影响。

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摘要

Circadian clocks are widespread endogenous mechanisms that control the temporal pattern of diverse biological processes, including gene transcription. KaiA is the positive element of the cyanobacterial clock because KaiA overexpression elevates transcription levels of clock components. Recently, we showed that the structure of KaiA is that of a domain-swapped homodimer. The N-terminal domain is a pseudo-receiver; thus, it is likely to be involved in signal transduction in the clock-resetting pathway. The C-terminal domain of KaiA is structurally novel and enhances the KaiC autokinase activity directly. Here, we report the NMR structure of the C-terminal domain of KaiA (ThKaiA180C) in complex with a KaiC-derived peptide from the cyanobacterium Thermosynechococcus elongatus BP-1. The protein-peptide interface is revealed to be different from a model that was proposed earlier, is stabilized by a combination of hydrophobic and electrostatic interactions, and includes many residues known to produce a circadian-period phenotype upon substitution. Although the structure of the monomeric subunit of ThKaiA180C is largely unchanged upon peptide binding, the intersubunit dimerization angle changes. It is proposed that modulation of the C-terminal KaiA domain dimerization angle regulates KaiA-KaiC interactions.
机译:昼夜节律钟是广泛的内源性机制,控制各种生物过程(包括基因转录)的时间模式。 KaiA是蓝细菌时钟的阳性元件,因为KaiA过表达会提高时钟成分的转录水平。最近,我们显示KaiA的结构是域交换的同型二聚体。 N端域是伪接收器;因此,它很可能参与时钟重置路径中的信号转导。 KaiA的C末端结构域在结构上是新颖的,可直接增强KaiC自身激酶活性。在这里,我们报告的KaiA(ThKaiA180C)的C末端域与来自蓝藻嗜热嗜热球菌BP-1的KaiC衍生肽复合的NMR结构。蛋白质-肽界面被发现与先前提出的模型不同,通过疏水和静电相互作用的组合得以稳定,并且包括许多已知在取代时会产生昼夜周期表型的残基。尽管在肽结合时ThKaiA180C的单体亚基的结构基本没有改变,但是亚基间二聚化角改变。提出了对C-末端KaiA域二聚角的调节调节KaiA-KaiC相互作用。

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