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A Periplasmic Polymer Curves Vibrio cholerae and Promotes Pathogenesis

机译:Periplimic聚合物曲线Vibrio Cholerae并促进发病机制

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Pathogenic Vibrio cholerae remains a major human health concern. V. cholerae has a characteristic curved rod morphology, with a longer outer face and a shorter inner face. The mechanism and function of this curvature were previously unknown. Here, we identify and characterize CrvA, the first curvature determinant in V. cholerae. CrvA self-assembles into filaments at the inner face of cell curvature. Unlike traditional cytoskeletons, CrvA localizes to the periplasm and thus can be considered a periskeletal element. To quantify how curvature forms, we developed QuASAR (quantitative analysis of sacculus architecture remodeling), which measures subcellular peptidoglycan dynamics. QuASAR reveals that CrvA asymmetrically patterns peptidoglycan insertion rather than removal, causing more material insertions into the outer face than the inner face. Furthermore, crvA is quorum regulated, and Crv-Adependent curvature increases at high cell density. Finally, we demonstrate that CrvA promotes motility in hydrogels and confers an advantage in host colonization and pathogenesis.
机译:致病性霍乱弧菌仍然是一个主要的人类健康问题。霍乱弧菌具有典型的曲杆形态,外表面较长,内表面较短。这种曲率的机制和功能以前是未知的。在这里,我们确定并描述了霍乱弧菌的第一个曲率决定因素CrvA。CrvA在细胞曲率的内表面自组装成细丝。与传统的细胞骨架不同,CrvA定位于周质,因此可以被认为是一种骨架元素。为了量化曲率是如何形成的,我们开发了QuASAR(球囊结构重塑的定量分析),用于测量亚细胞肽聚糖动力学。QuASAR揭示,CrvA不对称地对肽聚糖的插入而不是移除进行模式化,导致更多的物质插入到外表面而不是内表面。此外,crvA受群体调节,Crv依赖性曲率在高细胞密度时增加。最后,我们证明CrvA促进水凝胶中的运动性,并在宿主定植和发病机制方面具有优势。

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