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组氨酸激酶的核心二聚化结构域对同源应答调节因子具有识别特异性。

The core dimerization domains of histidine kinases contain recognition specificity for the cognate response regulator.

作者信息

Ohta Noriko, Newton Austin

机构信息

Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

J Bacteriol. 2003 Aug;185(15):4424-31. doi: 10.1128/JB.185.15.4424-4431.2003.

Abstract

Histidine kinases DivJ and PleC initiate signal transduction pathways that regulate an early cell division cycle step and the gain of motility later in the Caulobacter crescentus cell cycle, respectively. The essential single-domain response regulator DivK functions downstream of these kinases to catalyze phosphotransfer from DivJ and PleC. We have used a yeast two-hybrid screen to investigate the molecular basis of DivJ and PleC interaction with DivK and to identify other His-Asp signal transduction proteins that interact with DivK. The only His-Asp proteins identified in the two-hybrid screen were five members of the histidine kinase superfamily. The finding that most of the kinase clones isolated correspond to either DivJ or PleC supports the previous conclusion that DivJ and PleC are cognate DivK kinases. A 66-amino-acid sequence common to all cloned DivJ and PleC fragments contains the conserved helix 1, helix 2 sequence that forms a four-helix bundle in histidine kinases required for dimerization, autophosphorylation and phosphotransfer. We present results that indicate that the four-helix bundle subdomain is not only necessary for binding of the response regulator but also sufficient for in vivo recognition specificity between DivK and its cognate histidine kinases. The other three kinases identified in this study correspond to DivL, an essential tyrosine kinase belonging to the same kinase subfamily as DivJ and PleC, and the two previously uncharacterized, soluble histidine kinases CckN and CckO. We discuss the significance of these results as they relate to kinase response regulator recognition specificity and the fidelity of phosphotransfer in signal transduction pathways.

摘要

组氨酸激酶DivJ和PleC分别启动信号转导途径,这些途径在新月柄杆菌细胞周期中调节早期细胞分裂周期步骤和后期运动性的获得。必需的单结构域应答调节因子DivK在这些激酶的下游发挥作用,催化来自DivJ和PleC的磷酸转移。我们利用酵母双杂交筛选来研究DivJ和PleC与DivK相互作用的分子基础,并鉴定与DivK相互作用的其他组氨酸-天冬氨酸信号转导蛋白。在双杂交筛选中鉴定出的唯一组氨酸-天冬氨酸蛋白是组氨酸激酶超家族的五个成员。分离得到的大多数激酶克隆对应于DivJ或PleC,这一发现支持了之前的结论,即DivJ和PleC是DivK的同源激酶。所有克隆的DivJ和PleC片段共有的一个66个氨基酸的序列包含保守的螺旋1、螺旋2序列,该序列在组氨酸激酶中形成四螺旋束,是二聚化、自磷酸化和磷酸转移所必需的。我们给出的结果表明,四螺旋束亚结构域不仅是应答调节因子结合所必需的,而且对于DivK与其同源组氨酸激酶之间的体内识别特异性也是足够的。本研究中鉴定出的其他三种激酶对应于DivL,一种与DivJ和PleC属于同一激酶亚家族的必需酪氨酸激酶,以及两种先前未表征的可溶性组氨酸激酶CckN和CckO。我们讨论了这些结果与激酶应答调节因子识别特异性以及信号转导途径中磷酸转移保真度的关系。

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本文引用的文献

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Bacteriol Rev. 1964 Sep;28(3):231-95. doi: 10.1128/br.28.3.231-295.1964.
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