State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, Jiangsu 214122, China.
State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, Jiangsu 214122, China.
Microbiol Res. 2024 Aug;285:127783. doi: 10.1016/j.micres.2024.127783. Epub 2024 May 22.
The regulator of capsule synthesis (Rcs) system, an atypical two-component system prevalent in numerous gram-negative bacteria, serves as a sophisticated regulatory phosphorylation cascade mechanism. It plays a pivotal role in perceiving environmental stress and regulating the expression of downstream genes to ensure host survival. During the signaling transduction process, various proteins participate in phosphorylation to further modulate signal inputs and outputs. Although the structure of core proteins related to the Rcs system has been partially well-defined, and two models have been proposed to elucidate the intricate molecular mechanisms underlying signal sensing, a systematic characterization of the signal transduction process of the Rcs system remains challenging. Furthermore, exploring its corresponding regulator outputs is also unremitting. This review aimed to shed light on the regulation of bacterial virulence by the Rcs system. Moreover, with the assistance of the Rcs system, biosynthesis technology has developed high-value target production. Additionally, via this review, we propose designing chimeric Rcs biosensor systems to expand their application as synthesis tools. Finally, unsolved challenges are highlighted to provide the basic direction for future development of the Rcs system.
胶囊合成(Rcs)系统的调控器是一种在许多革兰氏阴性菌中普遍存在的非典型双组分系统,它充当着复杂的调控磷酸化级联机制。它在感知环境压力和调节下游基因表达以确保宿主生存方面发挥着关键作用。在信号转导过程中,各种蛋白质参与磷酸化,以进一步调节信号输入和输出。尽管与 Rcs 系统相关的核心蛋白的结构已部分得到很好的定义,并且已经提出了两种模型来阐明信号感应背后复杂的分子机制,但 Rcs 系统的信号转导过程的系统表征仍然具有挑战性。此外,探索其对应的调控输出也是坚持不懈的。本综述旨在阐明 Rcs 系统对细菌毒力的调节。此外,借助 Rcs 系统,生物合成技术已发展出高价值目标生产。此外,通过本次综述,我们提出设计嵌合 Rcs 生物传感器系统,以扩大其作为合成工具的应用。最后,突出了未解决的挑战,为 Rcs 系统的未来发展提供了基本方向。