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大肠杆菌趋化性信号激酶CheA化学感受器偶联结构域的半胱氨酸扫描分析

Cysteine-scanning analysis of the chemoreceptor-coupling domain of the Escherichia coli chemotaxis signaling kinase CheA.

作者信息

Zhao Jinshi, Parkinson John S

机构信息

Biology Department, 257 South 1400 East, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

J Bacteriol. 2006 Jun;188(12):4321-30. doi: 10.1128/JB.00274-06.

Abstract

The C-terminal P5 domain of the histidine kinase CheA is essential for coupling CheA autophosphorylation activity to chemoreceptor control through a binding interaction with the CheW protein. To locate P5 determinants critical for CheW binding and chemoreceptor control, we surveyed cysteine replacements at 39 residues predicted to be at or near the P5 surface in Escherichia coli CheA. Two-thirds of the Cys replacement proteins exhibited in vitro defects in CheW binding, either before or after modification with a bulky fluorescein group. The binding-defective sites were widely distributed on the P5 surface and were often interspersed with sites that caused no functional defects, implying that relatively minor structural perturbations, often far from the actual binding site, can influence its conformation or accessibility. The most likely CheW docking area included loop 2 in P5 folding subdomain 1. All but four of the binding-defective P5-Cys proteins were defective in receptor-mediated activation, suggesting that CheW binding, as measured in vitro, is necessary for assembly of ternary signaling complexes and/or subsequent CheA activation. Other Cys sites specifically affected receptor-mediated activation or deactivation of CheA, demonstrating that CheW binding is not sufficient for assembly and/or operation of receptor signaling complexes. Because P5 is quite similar to CheW, whose structure is known to be dynamic, we suggest that conformational flexibility and dynamic motions govern the signaling activities of the P5 domain. In addition, relative movements of the CheA domains may be involved in CheW binding, in ternary complex assembly, and in subsequent stimulus-induced conformational changes in receptor signaling complexes.

摘要

组氨酸激酶CheA的C末端P5结构域对于通过与CheW蛋白的结合相互作用将CheA自身磷酸化活性与化学感受器控制偶联至关重要。为了定位对CheW结合和化学感受器控制至关重要的P5决定簇,我们研究了大肠杆菌CheA中预测位于P5表面或其附近的39个残基处的半胱氨酸替代物。三分之二的半胱氨酸替代蛋白在与庞大的荧光素基团修饰之前或之后,在体外表现出CheW结合缺陷。结合缺陷位点广泛分布在P5表面,并且常常与没有功能缺陷的位点穿插,这意味着相对较小的结构扰动,通常远离实际结合位点,可能会影响其构象或可及性。最可能的CheW对接区域包括P5折叠亚结构域1中的环2。除了四个结合缺陷的P5-半胱氨酸蛋白外,所有蛋白在受体介导的激活方面都有缺陷,这表明体外测量的CheW结合对于三元信号复合物的组装和/或随后的CheA激活是必要的。其他半胱氨酸位点特异性地影响CheA的受体介导的激活或失活,表明CheW结合对于受体信号复合物的组装和/或操作是不够的。因为P5与CheW非常相似,已知其结构是动态的,我们认为构象灵活性和动态运动控制着P5结构域的信号传导活性。此外,CheA结构域的相对运动可能参与CheW结合、三元复合物组装以及随后受体信号复合物中刺激诱导的构象变化。

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