Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.
J Bacteriol. 2023 Apr 25;205(4):e0040722. doi: 10.1128/jb.00407-22. Epub 2023 Apr 6.
Gram-negative bacteria utilize several envelope stress responses (ESRs) to sense and respond to diverse signals within a multilayered cell envelope. The CpxRA ESR responds to multiple stresses that perturb envelope protein homeostasis. Signaling in the Cpx response is regulated by auxiliary factors, such as the outer membrane (OM) lipoprotein NlpE, an activator of the response. NlpE communicates surface adhesion to the Cpx response; however, the mechanism by which NlpE accomplishes this remains unknown. In this study, we report a novel interaction between NlpE and the major OM protein OmpA. Both NlpE and OmpA are required to activate the Cpx response in surface-adhered cells. Furthermore, NlpE senses OmpA overexpression and the NlpE C-terminal domain transduces this signal to the Cpx response, revealing a novel signaling function for this domain. Mutation of OmpA peptidoglycan-binding residues abrogates signaling during OmpA overexpression, suggesting that NlpE signaling from the OM through the cell wall is coordinated via OmpA. Overall, these findings reveal NlpE to be a versatile envelope sensor that takes advantage of its structure, localization, and cooperation with other envelope proteins to initiate adaptation to diverse signals. The envelope is not only a barrier that protects bacteria from the environment but also a crucial site for the transduction of signals critical for colonization and pathogenesis. The discovery of novel complexes between NlpE and OmpA contributes to an emerging understanding of the key contribution of OM β-barrel protein and lipoprotein complexes to envelope stress signaling. Overall, our findings provide mechanistic insight into how the Cpx response senses signals relevant to surface adhesion and biofilm growth to facilitate bacterial adaptation.
革兰氏阴性菌利用多种包膜应激反应 (ESR) 来感知和响应多层细胞包膜内的各种信号。CpxRA ESR 响应多种扰乱包膜蛋白动态平衡的应激。Cpx 反应的信号受辅助因子调节,如外膜 (OM) 脂蛋白 NlpE,它是反应的激活剂。NlpE 将表面粘附与 Cpx 反应进行通讯;然而,NlpE 完成此操作的机制尚不清楚。在这项研究中,我们报告了 NlpE 和主要 OM 蛋白 OmpA 之间的一种新相互作用。NlpE 和 OmpA 都需要在表面粘附的细胞中激活 Cpx 反应。此外,NlpE 感知 OmpA 的过表达,并且 NlpE C 端结构域将此信号转导至 Cpx 反应,揭示了该结构域的新信号功能。OmpA 肽聚糖结合残基的突变消除了 OmpA 过表达期间的信号,表明 NlpE 通过 OM 到细胞壁的信号通过 OmpA 进行协调。总体而言,这些发现表明 NlpE 是一种多功能的包膜传感器,它利用其结构、定位和与其他包膜蛋白的合作来启动对各种信号的适应。包膜不仅是保护细菌免受环境侵害的屏障,也是对定植和发病机制至关重要的信号转导的关键部位。NlpE 和 OmpA 之间新复合物的发现有助于人们对 OM β-桶蛋白和脂蛋白复合物对包膜应激信号转导的关键贡献有了新的认识。总体而言,我们的研究结果提供了关于 Cpx 反应如何感知与表面粘附和生物膜生长相关的信号的机制见解,从而促进细菌的适应。