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糖基转移酶 Jhp0106(PseE)有助于幽门螺杆菌鞭毛蛋白的成熟。

Glycosyltransferase Jhp0106 (PseE) contributes to flagellin maturation in Helicobacter pylori.

机构信息

Institute of Microbiology and Immunology, School of Life Science, National Yang-Ming University, Taipei, Taiwan.

Department of Biotechnology and Laboratory Science in Medicine, School of Biomedical Science and Engineering, National Yang-Ming University, Taipei, Taiwan.

出版信息

Helicobacter. 2021 Apr;26(2):e12787. doi: 10.1111/hel.12787. Epub 2021 Feb 15.

Abstract

BACKGROUND

Flagella-mediated motility is both a crucial virulence determinant of Helicobacter pylori and a factor associated with gastrointestinal diseases. Flagellar formation requires flagellins to be glycosylated with pseudaminic acid (Pse), a process that has been extensively studied. However, the transfer of Pse to flagellins remains poorly understood. Therefore, the aim of this study is to characterize a putative glycosyltransferase jhp0106 in flagellar formation.

MATERIALS AND METHODS

Western blotting and chemical deglycosylation were performed to examine FlaA glycosylation. Protein structural analyses were executed to identify the active site residues of Jhp0106, while the Jhp0106-FlaA interaction was examined using a bacterial two-hybrid assay. Lastly, site-directed mutants with mutated active site residues in the jhp0106 gene were generated and investigated using a motility assay, Western blotting, cDNA-qPCR analysis, and electron microscopic examination.

RESULTS

Loss of flagellar formation in the Δjhp0106 mutant was confirmed to be associated with non-glycosylated FlaA. Furthermore, three active site residues of Jhp0106 (S350, F376, and E415) were identified within a potential substrate-binding region. The interaction between FlaA and Jhp0106, Jhp0106::S350A, Jhp0106::F376A, or Jhp0106::E415A was determined to be significant. As well, the substitution of S350A, F376A, or E415A in the site-directed Δjhp0106 mutants resulted in impaired motility, deficient FlaA glycosylation, and lacking flagella. However, these phenotypic changes were regardless of flaA expression, implying an indefinite proteolytic degradation of FlaA occurred.

CONCLUSIONS

This study demonstrated that Jhp0106 (PseE) binds to FlaA mediating FlaA glycosylation and flagellar formation. Our discovery of PseE has revealed a new glycosyltransferase family responsible for flagellin glycosylation in pathogens.

摘要

背景

鞭毛介导的运动是幽门螺杆菌的重要毒力决定因素,也是与胃肠道疾病相关的因素。鞭毛的形成需要将假氨基糖(Pse)糖基化到鞭毛蛋白上,这个过程已经得到了广泛的研究。然而,Pse 向鞭毛蛋白的转移仍然知之甚少。因此,本研究的目的是表征鞭毛形成中一个假定的糖基转移酶 jhp0106。

材料和方法

通过 Western blot 和化学去糖基化实验来检测 FlaA 的糖基化。通过蛋白质结构分析来确定 Jhp0106 的活性位点残基,同时通过细菌双杂交实验来检测 Jhp0106 和 FlaA 的相互作用。最后,利用基因定点突变技术生成 jhp0106 基因中活性位点残基突变的定点突变体,并通过运动性试验、Western blot、cDNA-qPCR 分析和电子显微镜检查来进行研究。

结果

Δjhp0106 突变体中鞭毛形成的缺失被证实与非糖基化的 FlaA 有关。此外,在一个潜在的底物结合区域中鉴定出 Jhp0106 的三个活性位点残基(S350、F376 和 E415)。FlaA 和 Jhp0106、Jhp0106::S350A、Jhp0106::F376A 或 Jhp0106::E415A 之间的相互作用被确定为显著的。同样,在定点突变体 Δjhp0106 中替换 S350A、F376A 或 E415A 会导致运动能力受损、FlaA 糖基化缺陷和缺乏鞭毛。然而,这些表型变化与 flaA 表达无关,这表明 FlaA 发生了不可逆转的蛋白水解降解。

结论

本研究表明,Jhp0106(PseE)结合 FlaA 介导 FlaA 糖基化和鞭毛形成。我们发现 PseE 揭示了一个新的糖基转移酶家族,负责病原体鞭毛蛋白的糖基化。

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