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鞭毛输出分子伴侣FliS与鞭毛蛋白及幽门螺杆菌HP1076复合物的晶体结构

Crystal Structure of Flagellar Export Chaperone FliS in Complex With Flagellin and HP1076 of .

作者信息

Lam Wendy Wai-Ling, Sun Kailei, Zhang Huawei, Au Shannon Wing-Ngor

机构信息

Center for Protein Science and Crystallography, School of Life Sciences, Faculty of Science, Chinese University of Hong Kong, Shatin, Hong Kong.

出版信息

Front Microbiol. 2020 May 19;11:787. doi: 10.3389/fmicb.2020.00787. eCollection 2020.

Abstract

Functional flagella formation is a widespread virulence factor that plays a critical role in survival and host colonization. Flagellar synthesis is a complex and highly coordinated process. The assembly of the axial structure beyond the cell membrane is mediated by export chaperone proteins that transport their cognate substrates to the export gate complex. The export chaperone FliS interacts with flagellin, the basic component used to construct the filament. Unlike enterobacteria, the gastric pathogen produces two different flagellins, FlaA and FlaB, which exhibit distinct spatial localization patterns in the filament. Previously, we demonstrated a molecular interaction between FliS and an uncharacterized protein, HP1076, in . Here, we present the crystal structure of FliS in complex with both the C-terminal D0 domain of FlaB and HP1076. Although this ternary complex reveals that FliS interacts with flagellin using a conserved binding mode demonstrated previously in , , and serovar Typhimurium, the helical conformation of FlaB in this complex was different. Moreover, HP1076 and the D1 domain of flagellin share structural similarity and interact with the same binding interface on FliS. This observation was further validated through competitive pull-down assays and kinetic binding analyses. Interestingly, we did not observe any detrimental flagellation or motility phenotypes in an -null strain. Our localization studies suggest that HP1076 is a membrane-associated protein with a cellular localization independent of FliS. As HP1076 is uniquely expressed in and related species, we propose that this protein may contribute to the divergence of the flagellar system, although its relationship with FliS remains incompletely elucidated.

摘要

功能性鞭毛形成是一种广泛存在的毒力因子,在细菌生存和宿主定殖中起关键作用。鞭毛合成是一个复杂且高度协调的过程。细胞膜外轴向结构的组装由输出分子伴侣蛋白介导,这些蛋白将其同源底物转运至输出门复合体。输出分子伴侣FliS与鞭毛蛋白相互作用,鞭毛蛋白是构建鞭毛丝的基本成分。与肠道细菌不同,胃部病原体产生两种不同的鞭毛蛋白FlaA和FlaB,它们在鞭毛丝中呈现出不同的空间定位模式。此前,我们在[具体细菌名称]中证明了FliS与一种未鉴定的蛋白HP1076之间存在分子相互作用。在此,我们展示了FliS与FlaB的C末端D0结构域以及HP1076形成的复合物的晶体结构。尽管这种三元复合物表明FliS以先前在[相关细菌名称1]、[相关细菌名称2]和鼠伤寒沙门氏菌中证明的保守结合模式与鞭毛蛋白相互作用,但该复合物中FlaB的螺旋构象有所不同。此外,HP1076与鞭毛蛋白的D1结构域具有结构相似性,并与FliS上相同的结合界面相互作用。这一观察结果通过竞争性下拉实验和动力学结合分析得到进一步验证。有趣的是,我们在[细菌名称]基因缺失菌株中未观察到任何有害的鞭毛形成或运动表型。我们的定位研究表明,HP1076是一种与膜相关的蛋白,其细胞定位独立于FliS。由于HP1076仅在[具体细菌名称]及其相关物种中表达,我们推测该蛋白可能有助于鞭毛系统的分化,尽管其与FliS的关系仍未完全阐明。

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