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在粘性环境中,鞭毛蛋白结构域之间的相互作用网络需要保持完整才能实现运动。

An unbroken network of interactions connecting flagellin domains is required for motility in viscous environments.

机构信息

Department of Biochemistry, Emory University School of Medicine, Atlanta, Georgia, United States of America.

Department of Biochemistry and Molecular Genetics, University of Virginia School of Medicine, Charlottesville, Virginia, United States of America.

出版信息

PLoS Pathog. 2023 May 30;19(5):e1010979. doi: 10.1371/journal.ppat.1010979. eCollection 2023 May.

Abstract

In its simplest form, bacterial flagellar filaments are composed of flagellin proteins with just two helical inner domains, which together comprise the filament core. Although this minimal filament is sufficient to provide motility in many flagellated bacteria, most bacteria produce flagella composed of flagellin proteins with one or more outer domains arranged in a variety of supramolecular architectures radiating from the inner core. Flagellin outer domains are known to be involved in adhesion, proteolysis and immune evasion but have not been thought to be required for motility. Here we show that in the Pseudomonas aeruginosa PAO1 strain, a bacterium that forms a ridged filament with a dimerization of its flagellin outer domains, motility is categorically dependent on these flagellin outer domains. Moreover, a comprehensive network of intermolecular interactions connecting the inner domains to the outer domains, the outer domains to one another, and the outer domains back to the inner domain filament core, is required for motility. This inter-domain connectivity confers PAO1 flagella with increased stability, essential for its motility in viscous environments. Additionally, we find that such ridged flagellar filaments are not unique to Pseudomonas but are, instead, present throughout diverse bacterial phyla.

摘要

从最简单的形式来看,细菌鞭毛丝由只有两个螺旋内域的鞭毛蛋白组成,这两个内域共同构成了丝芯。尽管这种最小的丝足以提供许多鞭毛细菌的运动能力,但大多数细菌产生的鞭毛由鞭毛蛋白组成,这些蛋白具有一个或多个外域,以各种超分子结构从内芯辐射排列。已知鞭毛蛋白的外域参与粘附、蛋白水解和免疫逃避,但不被认为是运动所必需的。在这里,我们表明,在铜绿假单胞菌 PAO1 菌株中,一种形成带有其鞭毛蛋白外域二聚化的脊状丝的细菌,运动能力完全依赖于这些鞭毛蛋白外域。此外,需要一个连接内域到外域、外域到彼此以及外域回到内域丝芯的分子间相互作用的综合网络,才能实现运动。这种域间连接赋予了 PAO1 鞭毛更高的稳定性,这对其在粘性环境中的运动是必不可少的。此外,我们发现这种脊状鞭毛丝并非仅存在于假单胞菌中,而是广泛存在于不同的细菌门中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea8/10256154/f8859d8f3c5a/ppat.1010979.g001.jpg

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