Wood Nicholas A, Gopinath Tata, Shin Kyungsoo, Marassi Francesca M
Department of Biophysics, Medical College of Wisconsin 8701 Watertown Plank Road, Milwaukee, WI 53226-3548 USA.
bioRxiv. 2025 Jan 24:2025.01.21.634179. doi: 10.1101/2025.01.21.634179.
The outer membrane vesicles (OMVs) produced by diderm bacteria have important roles in cell envelope homeostasis, secretion, interbacterial communication, and pathogenesis. The facultative intracellular pathogen Typhimurium (STm) activates OMV biogenesis inside the acidic vacuoles of host cells by upregulating the expression of the outer membrane (OM) protein PagC, one of the most robustly activated genes in a host environment. Here, we used solid-state nuclear magnetic resonance (NMR) and electron microscopy (EM), with native bacterial OMVs, to demonstrate that three histidines, essential for the OMV biogenic function of PagC, constitute a key pH-sensing motif. The NMR spectra of PagC in OMVs show that they become protonated around pH 6, and His protonation is associated with specific perturbations of select regions of PagC. The use of bacterial OMVs is an essential aspect of this work enabling NMR structural studies in the context of the physiological environment. PagC expression upregulates OMV production in , replicating its function in STm. Moreover, the presence of PagC drives a striking aggregation of OMVs and increases bacterial cell pellicle formation at acidic pH, pointing to a potential role as an adhesin active in biofilm formation. The data provide experimental evidence for a pH-dependent mechanism of OMV biogenesis and aggregation driven by an outer membrane protein.
双膜细菌产生的外膜囊泡(OMV)在细胞包膜稳态、分泌、细菌间通讯和发病机制中发挥着重要作用。兼性胞内病原体鼠伤寒沙门氏菌(STm)通过上调外膜(OM)蛋白PagC的表达,激活宿主细胞酸性液泡内的OMV生物发生,PagC是宿主环境中激活程度最高的基因之一。在这里,我们使用固态核磁共振(NMR)和电子显微镜(EM),结合天然细菌OMV,证明了PagC的OMV生物发生功能所必需的三个组氨酸构成了一个关键的pH感应基序。OMV中PagC的NMR光谱表明,它们在pH值为6左右时会发生质子化,组氨酸质子化与PagC特定区域的特定扰动有关。使用细菌OMV是这项工作的一个重要方面,能够在生理环境中进行NMR结构研究。PagC的表达上调了OMV的产生,复制了其在STm中的功能。此外,PagC的存在会导致OMV显著聚集,并增加酸性pH条件下细菌细胞菌膜的形成,表明其在生物膜形成中可能作为一种黏附素发挥作用。这些数据为外膜蛋白驱动的OMV生物发生和聚集的pH依赖性机制提供了实验证据。