Xie Yingpeng, Liu Wenbao, Shao Xiaolong, Zhang Weihua, Deng Xin
Department of Biomedical Sciences, City University of Hong Kong, Kowloon Tong 999077, Hong Kong Special Administrative Region.
College of Agricultural Sciences and Technology, Shandong Agriculture and Engineering University, Jinan 250100, China.
Comput Struct Biotechnol J. 2020 Nov 9;18:3415-3424. doi: 10.1016/j.csbj.2020.10.039. eCollection 2020.
To cope with their continually fluctuating surroundings, pathovars of the unicellular phytopathogen have developed rapid and sophisticated signalling networks to sense extracellular stimuli, which allow them to adjust their cellular composition to survive and cause diseases in host plants. Comparative genomic analyses of strains have identified various genes that encode several classes of signalling proteins, although how this bacterium directly perceives these environmental cues remains elusive. Recent work has revealed new mechanisms of a cluster of bacterial signal transduction systems that mainly include two-component systems (such as RhpRS, GacAS, CvsRS and AauRS), extracytoplasmic function sigma factors (such as HrpL and AlgU), nucleotide-based secondary messengers, methyl-accepting chemotaxis sensor proteins and several other intracellular surveillance systems. In this review, we compile a list of the signal transduction mechanisms that uses to monitor and respond in a timely manner to intracellular and external conditions. Further understanding of these surveillance processes will provide new perspectives from which to combat infections.
为了应对其不断变化的环境,单细胞植物病原体的致病型已发展出快速而复杂的信号网络来感知细胞外刺激,这使它们能够调整细胞组成以在宿主植物中存活并引发疾病。对菌株的比较基因组分析已鉴定出多种编码几类信号蛋白的基因,尽管这种细菌如何直接感知这些环境信号仍不清楚。最近的研究揭示了一组细菌信号转导系统的新机制,这些系统主要包括双组分系统(如RhpRS、GacAS、CvsRS和AauRS)、胞外功能σ因子(如HrpL和AlgU)、基于核苷酸的第二信使、甲基接受趋化性传感蛋白以及其他几种细胞内监测系统。在这篇综述中,我们汇编了该病原体用于及时监测和响应细胞内和外部条件的信号转导机制列表。对这些监测过程的进一步了解将为对抗该病原体感染提供新的视角。