Literature DB >> 33586844

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

Kai-Yuan Yang1, Cheng-Yen Kao1,2, Marcia Shu-Wei Su2, Shuying Wang3, Yueh-Lin Chen2, Shiau-Ting Hu1, Jenn-Wei Chen3, Ching-Hao Teng4, Pei-Jane Tsai5, Jiunn-Jong Wu2.   

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.
© 2021 The Authors. Helicobacter published by John Wiley & Sons Ltd.

Entities:  

Keywords:  Helicobacter pylori; Jhp0106; flagellin; glycosyltransferase; motility

Year:  2021        PMID: 33586844     DOI: 10.1111/hel.12787

Source DB:  PubMed          Journal:  Helicobacter        ISSN: 1083-4389            Impact factor:   5.753


  2 in total

1.  Metabolic Labeling of Legionaminic Acid in Flagellin Glycosylation of Campylobacter jejuni Identifies Maf4 as a Putative Legionaminyl Transferase.

Authors:  Xianke Meng; Geert-Jan Boons; Marc M S M Wösten; Tom Wennekes
Journal:  Angew Chem Int Ed Engl       Date:  2021-10-27       Impact factor: 16.823

2.  Untargeted Microbial Exometabolomics and Metabolomics Analysis of Helicobacter pylori J99 and jhp0106 Mutant.

Authors:  Cheng-Yen Kao; Pei-Yun Kuo; Hsiao-Wei Liao
Journal:  Metabolites       Date:  2021-11-28
  2 in total

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