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细菌抗σ因子 RsgI 的必需自蛋白水解对于跨膜信号转导至关重要。

Essential autoproteolysis of bacterial anti-σ factor RsgI for transmembrane signal transduction.

机构信息

CAS Key Laboratory of Biofuels, Shandong Provincial Key Laboratory of Synthetic Biology, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

Shandong Energy Institute, Qingdao 266101, China.

出版信息

Sci Adv. 2023 Jul 7;9(27):eadg4846. doi: 10.1126/sciadv.adg4846.

Abstract

Autoproteolysis has been discovered to play key roles in various biological processes, but functional autoproteolysis has been rarely reported for transmembrane signaling in prokaryotes. In this study, an autoproteolytic effect was discovered in the conserved periplasmic domain of anti-σ factor RsgIs from , which was found to transmit extracellular polysaccharide-sensing signals into cells for regulation of the cellulosome system, a polysaccharide-degrading multienzyme complex. Crystal and NMR structures of periplasmic domains from three RsgIs demonstrated that they are different from all known proteins that undergo autoproteolysis. The RsgI-based autocleavage site was located at a conserved Asn-Pro motif between the β1 and β2 strands in the periplasmic domain. This cleavage was demonstrated to be essential for subsequent regulated intramembrane proteolysis to activate the cognate SigI, in a manner similar to that of autoproteolysis-dependent activation of eukaryotic adhesion G protein-coupled receptors. These results indicate the presence of a unique prevalent type of autoproteolytic phenomenon in bacteria for signal transduction.

摘要

自降解作用已被发现在各种生物过程中发挥关键作用,但在原核生物的跨膜信号转导中,功能性自降解作用却很少被报道。在这项研究中,我们在抗σ因子 RsgIs 的保守周质域中发现了一种自降解效应,该效应将细胞外多糖感应信号传递到细胞内,以调节细胞外多糖降解多酶复合物——纤维素酶系统。来自三种 RsgIs 的周质域的晶体和 NMR 结构表明,它们与所有已知的自降解蛋白都不同。RsgI 基的自切割位点位于周质域中β1 和β2 链之间的保守的 Asn-Pro 模体上。该切割对于随后的受调控的跨膜蛋白水解以激活同源 SigI 是必需的,其方式类似于依赖于自降解的真核黏附 G 蛋白偶联受体的激活。这些结果表明,在细菌中存在一种独特的、普遍存在的自降解现象,用于信号转导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/577a/10328401/211823e0c2cc/sciadv.adg4846-f1.jpg

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