Neisseria gonorrhoeae O‐linked pilin glycosylation: functional analyses define both the biosynthetic pathway and glycan structure
Open Access
- 29 June 2007
- journal article
- Published by Wiley in Molecular Microbiology
- Vol. 65 (3), 607-624
- https://doi.org/10.1111/j.1365-2958.2007.05806.x
Abstract
Neisseria gonorrhoeae expresses an O-linked protein glycosylation pathway that targets PilE, the major pilin subunit protein of the Type IV pilus colonization factor. Efforts to define glycan structure and thus the functions of pilin glycosylation (Pgl) components at the molecular level have been hindered by the lack of sensitive methodologies. Here, we utilized a ‘top-down’ mass spectrometric approach to characterize glycan status using intact pilin protein from isogenic mutants. These structural data enabled us to directly infer the function of six components required for pilin glycosylation and to define the glycan repertoire of strain N400. Additionally, we found that the N. gonorrhoeae pilin glycan is O-acetylated, and identified an enzyme essential for this unique modification. We also identified the N. gonorrhoeae pilin oligosaccharyltransferase using bioinformatics and confirmed its role in pilin glycosylation by directed mutagenesis. Finally, we examined the effects of expressing the PglA glycosyltransferase from the Campylobacter jejuni N-linked glycosylation system that adds N-acetylgalactosamine onto undecaprenylpyrophosphate-linked bacillosamine. The results indicate that the C. jejuni and N. gonorrhoeae pathways can interact in the synthesis of O-linked di- and trisaccharides, and therefore provide the first experimental evidence that biosynthesis of the N. gonorrhoeae pilin glycan involves a lipid-linked oligosaccharide precursor. Together, these findings underpin more detailed studies of pilin glycosylation biology in both N. gonorrhoeae and N. meningitidis, and demonstrate how components of bacterial O- and N-linked pathways can be combined in novel glycoengineering strategies.Keywords
This publication has 68 references indexed in Scilit:
- A critical role for peptidoglycan N-deacetylation in Listeria evasion from the host innate immune systemProceedings of the National Academy of Sciences, 2007
- In Vitro Biosynthesis of UDP-N,N‘-Diacetylbacillosamine by Enzymes of the Campylobacter jejuni General Protein Glycosylation SystemBiochemistry, 2006
- Type IV Pilus Structure by Cryo-Electron Microscopy and Crystallography: Implications for Pilus Assembly and FunctionsMolecular Cell, 2006
- Neisseria gonorrhoeae Type IV Pili Undergo Multisite, Hierarchical Modifications with Phosphoethanolamine and Phosphocholine Requiring an Enzyme Structurally Related to Lipopolysaccharide Phosphoethanolamine TransferasesPublished by Elsevier ,2006
- O-Acetylation of the Terminal N-Acetylglucosamine of the Lipooligosaccharide Inner Core in Neisseria meningitidisJournal of Biological Chemistry, 2006
- Pseudomonas aeruginosa 1244 Pilin Glycosylation: Glycan Substrate RecognitionJournal of Bacteriology, 2006
- Molecular and Functional Characterization of O Antigen Transfer inVibriocholeraePublished by Elsevier ,2005
- Detailed Structural Analysis of the Peptidoglycan of the Human Pathogen Neisseria meningitidisPublished by Elsevier ,2003
- The Activity of a Putative Polyisoprenol-linked Sugar Translocase (Wzx) Involved in Escherichia coli O Antigen Assembly Is Independent of the Chemical Structure of the O RepeatPublished by Elsevier ,1999
- The Role of Common and Type-specific Pilus Antigenic Domains in Adhesion and Virulence of Gonococci for Human Epithelial CellsMicrobiology, 1984