Meng Jiao, Young Glenn, Chen Jingyu
Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.
Department of Food Science and Technology, University of California, Davis, Davis, CA, United States.
Front Microbiol. 2021 Feb 15;12:627104. doi: 10.3389/fmicb.2021.627104. eCollection 2021.
The bacterial cell envelope is a protective barrier at the frontline of bacterial interaction with the environment, and its integrity is regulated by various stress response systems. The Rcs (regulator of capsule synthesis) system, a non-orthodox two-component regulatory system (TCS) found in many members of the family, is one of the envelope stress response pathways. The Rcs system can sense envelope damage or defects and regulate the transcriptome to counteract stress, which is particularly important for the survival and virulence of pathogenic bacteria. In this review, we summarize the roles of the Rcs system in envelope stress responses (ESRs) and virulence regulation. We discuss the environmental and intrinsic sources of envelope stress that cause activation of the Rcs system with an emphasis on the role of RcsF in detection of envelope stress and signal transduction. Finally, the different regulation mechanisms governing the Rcs system's control of virulence in several common pathogens are introduced. This review highlights the important role of the Rcs system in the environmental adaptation of bacteria and provides a theoretical basis for the development of new strategies for control, prevention, and treatment of bacterial infections.
细菌细胞壁是细菌与环境相互作用前沿的一道保护屏障,其完整性由各种应激反应系统调节。Rcs(荚膜合成调节因子)系统是在许多该菌属成员中发现的一种非正统双组分调节系统(TCS),是细胞壁应激反应途径之一。Rcs系统能够感知细胞壁的损伤或缺陷,并调节转录组以应对应激,这对于病原菌的生存和毒力尤为重要。在本综述中,我们总结了Rcs系统在细胞壁应激反应(ESR)和毒力调节中的作用。我们讨论了导致Rcs系统激活的细胞壁应激的环境和内在来源,重点阐述了RcsF在检测细胞壁应激和信号转导中的作用。最后,介绍了几种常见病原菌中Rcs系统控制毒力的不同调节机制。本综述强调了Rcs系统在细菌环境适应中的重要作用,并为开发控制、预防和治疗细菌感染的新策略提供了理论基础。