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金属信使:细菌世界中通过过渡金属感应双组分系统的通讯。

Metal Messengers: Communication in the Bacterial World through Transition-Metal-Sensing Two-Component Systems.

机构信息

Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, Baltimore, Maryland 21250, United States.

出版信息

Biochemistry. 2023 Aug 15;62(16):2339-2357. doi: 10.1021/acs.biochem.3c00296. Epub 2023 Aug 4.

Abstract

Bacteria survive in highly dynamic and complex environments due, in part, to the presence of systems that allow the rapid control of gene expression in the presence of changing environmental stimuli. The crosstalk between intra- and extracellular bacterial environments is often facilitated by two-component signal transduction systems that are typically composed of a transmembrane histidine kinase and a cytosolic response regulator. Sensor histidine kinases and response regulators work in tandem with their modular domains containing highly conserved structural features to control a diverse array of genes that respond to changing environments. Bacterial two-component systems are widespread and play crucial roles in many important processes, such as motility, virulence, chemotaxis, and even transition metal homeostasis. Transition metals are essential for normal prokaryotic physiological processes, and the presence of these metal ions may also influence pathogenic virulence if their levels are appropriately controlled. To do so, bacteria use transition-metal-sensing two-component systems that bind and respond to rapid fluctuations in extracytosolic concentrations of transition metals. This perspective summarizes the structural and metal-binding features of bacterial transition-metal-sensing two-component systems and places a special emphasis on understanding how these systems are used by pathogens to establish infection in host cells and how these systems may be targeted for future therapeutic developments.

摘要

由于存在允许在环境刺激变化时快速控制基因表达的系统,细菌能够在高度动态和复杂的环境中生存。胞内和胞外细菌环境之间的串扰通常是由双组分信号转导系统促成的,该系统通常由跨膜组氨酸激酶和胞质响应调节剂组成。传感器组氨酸激酶和响应调节剂与其包含高度保守结构特征的模块化结构域协同工作,以控制响应环境变化的多种基因。细菌双组分系统广泛存在,并在许多重要过程中发挥关键作用,例如运动性、毒力、趋化性,甚至过渡金属稳态。过渡金属对正常原核生理过程至关重要,如果适当控制这些金属离子的水平,它们的存在也可能影响致病性毒力。为此,细菌使用过渡金属感应双组分系统,该系统结合并响应细胞外过渡金属浓度的快速波动。本综述总结了细菌过渡金属感应双组分系统的结构和金属结合特征,并特别强调了了解这些系统如何被病原体用于在宿主细胞中建立感染以及如何针对这些系统进行未来的治疗开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c80/10530140/5ed24a56bde0/nihms-1923184-f0002.jpg

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