Nguyen Minh-Phuong, Yoon Joo-Mi, Cho Man-Ho, Lee Sang-Won
a Crop Biotech Institute, Kyung Hee University, Yongin 446-701, Korea.
b Department of Genetic Engineering and Graduate School of Biotechnology, Kyung Hee University, Yongin 446-701, Korea.
Can J Microbiol. 2015 Nov;61(11):799-810. doi: 10.1139/cjm-2015-0345. Epub 2015 Aug 21.
In bacteria, 2-component regulatory systems (TCSs) are the critical information-processing pathways that link stimuli to specific adaptive responses. Signals perceived by membrane sensors, which are generally histidine kinases, are transmitted by response regulators (RRs) to allow cells to cope rapidly and effectively with environmental challenges. Over the past few decades, genes encoding components of TCSs and their responsive proteins have been identified, crystal structures have been described, and signaling mechanisms have been elucidated. Here, we review recent findings and interesting breakthroughs in bacterial TCS research. Furthermore, we discuss structural features, mechanisms of activation and regulation, and cross-regulation of RRs, with a focus on the largest RR family, OmpR/PhoB, to provide a comprehensive overview of these critically important signaling molecules.
在细菌中,双组分调节系统(TCSs)是将刺激与特定适应性反应联系起来的关键信息处理途径。通常作为组氨酸激酶的膜传感器感知到的信号,由响应调节因子(RRs)进行传递,以使细胞能够迅速有效地应对环境挑战。在过去几十年里,已鉴定出编码TCSs组分及其响应蛋白的基因,描述了晶体结构,并阐明了信号传导机制。在此,我们综述细菌TCS研究的最新发现和有趣突破。此外,我们讨论RRs的结构特征、激活和调节机制以及交叉调节,重点关注最大的RR家族OmpR/PhoB,以全面概述这些至关重要的信号分子。