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肺炎链球菌和变形链球菌中感受态和细菌素的群体感应调控

Quorum Sensing Regulation of Competence and Bacteriocins in Streptococcus pneumoniae and mutans.

作者信息

Shanker Erin, Federle Michael J

机构信息

Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

Genes (Basel). 2017 Jan 5;8(1):15. doi: 10.3390/genes8010015.

Abstract

The human pathogens and have both evolved complex quorum sensing (QS) systems that regulate the production of bacteriocins and the entry into the competent state, a requirement for natural transformation. Natural transformation provides bacteria with a mechanism to repair damaged genes or as a source of new advantageous traits. In , the competence pathway is controlled by the two-component signal transduction pathway ComCDE, which directly regulates SigX, the alternative sigma factor required for the initiation into competence. Over the past two decades, effectors of cellular killing (i.e., fratricides) have been recognized as important targets of the pneumococcal competence QS pathway. Recently, direct interactions between the ComCDE and the paralogous BlpRH pathway, regulating bacteriocin production, were identified, further strengthening the interconnections between these two QS systems. Interestingly, a similar theme is being revealed in , the primary etiological agent of dental caries. This review compares the relationship between the bacteriocin and the competence QS pathways in both and , and hopes to provide clues to regulatory pathways across the genus as a potential tool to efficiently investigate putative competence pathways in nontransformable streptococci.

摘要

人类病原体[具体病原体未提及]和[具体病原体未提及]都进化出了复杂的群体感应(QS)系统,这些系统调节细菌素的产生以及进入感受态的过程,而感受态是自然转化的一个必要条件。自然转化为细菌提供了一种修复受损基因的机制,或者作为新的有利性状的来源。在[具体细菌未提及]中,感受态途径由双组分信号转导途径ComCDE控制,该途径直接调节SigX,即启动感受态所需的替代西格玛因子。在过去的二十年里,细胞杀伤效应物(即自相残杀因子)已被确认为肺炎球菌感受态QS途径的重要靶点。最近,人们发现了ComCDE与调节细菌素产生的同源BlpRH途径之间的直接相互作用,进一步加强了这两个QS系统之间的联系。有趣的是,在龋齿的主要病原体[具体细菌未提及]中也发现了类似的情况。本综述比较了[具体细菌未提及]和[具体细菌未提及]中细菌素与感受态QS途径之间的关系,并希望为整个[属名未提及]属的调控途径提供线索,作为一种潜在工具,用于有效研究不可转化链球菌中假定的感受态途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ba6/5295010/888410e3a36e/genes-08-00015-g001.jpg

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