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CikA的伪受体结构域调控蓝藻生物钟输入途径。

The pseudo-receiver domain of CikA regulates the cyanobacterial circadian input pathway.

作者信息

Zhang Xiaofan, Dong Guogang, Golden Susan S

机构信息

Department of Biology, Texas A&M University, College Station, TX 77843, USA.

出版信息

Mol Microbiol. 2006 May;60(3):658-68. doi: 10.1111/j.1365-2958.2006.05138.x.

DOI:10.1111/j.1365-2958.2006.05138.x
PMID:16629668
Abstract

CikA (circadian input kinase) is a component of the cyanobacterial circadian clock that aids in synchronizing the endogenous oscillator with the external environment. cikA mutants of the prokaryotic circadian model organism Synechococcus elongatus PCC 7942 fail to reset the phase of the circadian rhythm of gene expression after an environmental time cue, and also exhibit reduced amplitude and shortened period of circadian oscillation. CikA has histidine protein kinase (HPK) activity that is modulated in vitro by GAF and pseudo-receiver (PsR) domains. Here we show that the PsR domain negatively regulates HPK activity in vivo and also serves as an interaction module to dock CikA at a specific subcellular location. Phenotypes conferred by alleles that encode CikA variants showed that all domains except the featureless N-terminus are required for CikA function. Overexpression of all alleles that encode the PsR domain, whether or not the HPK is functional, caused a dominant arrhythmic phenotype, whereas overexpressed variants that lack PsR did not. Subcellular localization of intact CikA identified a polar focus whereas a variant without PsR showed uniform distribution in the cell, consistent with a model in which PsR mediates interaction with other input pathway components.

摘要

CikA(昼夜节律输入激酶)是蓝藻生物钟的一个组成部分,有助于使内源性振荡器与外部环境同步。原核生物钟模式生物聚球藻PCC 7942的cikA突变体在环境时间信号后无法重置基因表达的昼夜节律相位,并且还表现出昼夜振荡幅度减小和周期缩短。CikA具有组氨酸蛋白激酶(HPK)活性,在体外受GAF和假受体(PsR)结构域调节。在这里,我们表明PsR结构域在体内负调节HPK活性,并且还作为一个相互作用模块,将CikA停靠在特定的亚细胞位置。编码CikA变体的等位基因所赋予的表型表明,除了无特征的N端外,所有结构域都是CikA功能所必需的。所有编码PsR结构域的等位基因的过表达,无论HPK是否有功能,都会导致显性无节律表型,而缺乏PsR的过表达变体则不会。完整CikA的亚细胞定位确定了一个极性焦点,而没有PsR的变体在细胞中呈均匀分布,这与PsR介导与其他输入途径成分相互作用的模型一致。

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