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The Linker between the Dimerization and CatalyticDomains of the CheA HistidineKinase Propagates Changes in Structure and Dynamics That Are Importantfor Enzymatic Activity

机译:二聚和催化之间的连接物CheA组氨酸的结构域激酶促进重要的结构和动力学变化酶活性

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摘要

The histidine kinase, CheA, couples environmental stimuli to changes in bacterial swimming behavior, converting a sensory signal to a chemical signal in the cytosol via autophosphorylation. The kinase activity is regulated in the platform of chemotaxis signaling complexes formed by CheW, chemoreceptors, and the regulatory domain of CheA. Our previous computational and mutational studies have revealed that two interdomain linkers play important roles in CheA’s enzymatic activity. Of the two linkers, one that connects the dimerization and ATP binding domains is essential for both basal autophosphorylation and activation of the kinase. However, the mechanistic role of this linker remains unclear, given that it is far from the autophosphorylation reaction center (the ATP binding site). Here we investigate how this interdomain linker is coupled to CheA’s enzymatic activity. Using modern nuclear magnetic resonance (NMR) techniques, we find that by interacting with the catalytic domain, the interdomain linker initiates long-range structural and dynamic changes directed toward the catalytic centerof the autophosphorylation reaction. Subsequent biochemical assaysdefine the functional relevance of these NMR-based observations. Thesefindings extend our understanding of the chemotaxis signal transductionpathway.
机译:组氨酸激酶CheA将环境刺激与细菌游泳行为的变化耦合,通过自磷酸化将感觉信号转换为细胞质中的化学信号。在由CheW,化学感受器和CheA的调节域形成的趋化信号复合物的平台中调节激酶活性。我们先前的计算和突变研究表明,两个域间连接子在CheA的酶活性中起着重要作用。在两个接头中,一个连接二聚化和ATP结合域的接头对于基础自身磷酸化和激酶激活都是必不可少的。但是,该接头的机械作用仍不清楚,因为它距离自磷酸化反应中心(ATP结合位点)很远。在这里,我们研究了这种域间连接子如何与CheA的酶促活性偶联。使用现代的核磁共振(NMR)技术,我们发现通过与催化结构域相互作用,结构域间连接子引发了指向催化中心的长距离结构和动态变化自磷酸化反应。后续生化分析定义这些基于NMR的观测结果的功能相关性。这些这些发现扩展了我们对趋化性信号转导的理解途径。

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