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大肠杆菌 CusS 激酶核心的晶体结构。

Crystal structure of the Escherichia coli CusS kinase core.

机构信息

Institute of Molecular and Industrial Biotechnology, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Lodz 90-537, Poland.

Institute of Molecular and Industrial Biotechnology, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Lodz 90-537, Poland.

出版信息

J Struct Biol. 2022 Sep;214(3):107883. doi: 10.1016/j.jsb.2022.107883. Epub 2022 Jul 27.

Abstract

The CusS histidine kinase is a member of Escherichia coli two-component signal transduction system, engaged in a response to copper ions excess in the cell periplasm. The periplasmic sensor domain of CusS binds the free copper ions and the CusS kinase core phosphorylates the cognate CusR which regulates transcription of the efflux pomp CusCBA. A small amount of copper ions is indispensable for the aerobic cell metabolism. Nonetheless, its excess in the cytoplasm generates damaging and reactive hydroxyl radicals. For that reason, understanding the bacterial copper sensing mechanisms can contribute to reducing bacterial copper-resistance and developing bactericidal copper-based materials. The crystal structure of the CusS kinase core was solved at the resolution of 1.4 Å. The cytoplasmic catalytic core domains formed a homodimer. Based on the obtained structure, the intramolecular and intermolecular interactions crucial for the mechanism of CusS autophosphorylation were described.

摘要

铜绿假单胞菌 CusS 组氨酸激酶是一种参与细胞周质中铜离子过量反应的大肠杆菌双组分信号转导系统的成员。CusS 的周质感应结构域与游离铜离子结合,CusS 激酶核心磷酸化其同源物 CusR,从而调节外排泵 CusCBA 的转录。少量的铜离子对需氧细胞的代谢是必不可少的。然而,其在细胞质中的过量会产生有害的和反应性的羟自由基。因此,了解细菌的铜感应机制有助于降低细菌的铜抗性并开发杀菌的铜基材料。CusS 激酶核心的晶体结构在 1.4Å 的分辨率下得到解决。细胞质催化核心域形成同源二聚体。基于获得的结构,描述了对于 CusS 自身磷酸化机制至关重要的分子内和分子间相互作用。

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Crystal structure of the Escherichia coli CusS kinase core.大肠杆菌 CusS 激酶核心的晶体结构。
J Struct Biol. 2022 Sep;214(3):107883. doi: 10.1016/j.jsb.2022.107883. Epub 2022 Jul 27.

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