组氨酸激酶介导的病原微生物信号转导系统作为治疗干预的靶点。

K Stephenson, J A Hoch
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引用次数: 26

摘要

致病菌必须能够感知并迅速响应来自宿主环境的信号,并利用这些信号调节感染过程所需的基因表达。双组分信号转导系统及其更复杂的被称为磷继电器的变体,编织在细菌细胞调节过程的结构中,并用于调节涉及大量引起重大公共卫生关注的病原体的毒力和抗生素耐药性反应的基因表达。对多种抗生素具有耐药性的病原菌菌株的出现,促使人们寻找抗微生物药物的新靶点和/或作用方式。细菌中必不可少的双组分系统的存在以及这些调节系统在毒力和抗生素耐药性中发挥的核心作用意味着双组分系统和磷继电器已被认为是抗菌干预的目标。本文将讨论这些信号转导途径在病原微生物的毒力反应和抗生素敏感性中的作用,以及它们作为抗菌治疗靶点的潜在用途。此外,还将讨论双组分体系专用抑制剂的发展现状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Histidine kinase-mediated signal transduction systems of pathogenic microorganisms as targets for therapeutic intervention.

Pathogenic bacteria must be able to sense and respond rapidly to signals emanating from the host environment and use the signals to modulate the expression of genes required for the infection process. Two-component signal transduction systems, and their more complex variants known as phosphorelays, are woven within the fabric of bacterial cellular regulatory processes and are used to regulate the expression of genes involved in the virulence and antibiotic resistance responses of a large number of pathogens of major public health concern. The emergence of strains of pathogenic bacteria that are resistant to multiple antibiotics has driven the search for new targets and/or modes of action for anti-microbial agents. The presence of essential two-component systems in bacteria and the central role that these regulatory systems play in virulence and antibiotic resistance has meant that two-component systems and phosphorelays have been recognized as targets for antimicrobial intervention. This review will discuss the role of these signal transduction pathways in virulence responses and antibiotic sensitivity of pathogenic microorganisms and their potential use as targets for antimicrobial therapy. In addition, the current status on the development of inhibitors specific for two-component systems will be discussed.

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