Cargando…

A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications

The cell surface of the oral pathogen Tannerella forsythia is heavily glycosylated with a unique, complex decasaccharide that is O-glycosidically linked to the bacterium’s abundant surface (S-) layer, as well as other proteins. The S-layer glycoproteins are virulence factors of T. forsythia and ther...

Descripción completa

Detalles Bibliográficos
Autores principales: Tomek, Markus B., Maresch, Daniel, Windwarder, Markus, Friedrich, Valentin, Janesch, Bettina, Fuchs, Kristina, Neumann, Laura, Nimeth, Irene, Zwickl, Nikolaus F., Dohm, Juliane C., Everest-Dass, Arun, Kolarich, Daniel, Himmelbauer, Heinz, Altmann, Friedrich, Schäffer, Christina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120980/
https://www.ncbi.nlm.nih.gov/pubmed/30210478
http://dx.doi.org/10.3389/fmicb.2018.02008
_version_ 1783352364250431488
author Tomek, Markus B.
Maresch, Daniel
Windwarder, Markus
Friedrich, Valentin
Janesch, Bettina
Fuchs, Kristina
Neumann, Laura
Nimeth, Irene
Zwickl, Nikolaus F.
Dohm, Juliane C.
Everest-Dass, Arun
Kolarich, Daniel
Himmelbauer, Heinz
Altmann, Friedrich
Schäffer, Christina
author_facet Tomek, Markus B.
Maresch, Daniel
Windwarder, Markus
Friedrich, Valentin
Janesch, Bettina
Fuchs, Kristina
Neumann, Laura
Nimeth, Irene
Zwickl, Nikolaus F.
Dohm, Juliane C.
Everest-Dass, Arun
Kolarich, Daniel
Himmelbauer, Heinz
Altmann, Friedrich
Schäffer, Christina
author_sort Tomek, Markus B.
collection PubMed
description The cell surface of the oral pathogen Tannerella forsythia is heavily glycosylated with a unique, complex decasaccharide that is O-glycosidically linked to the bacterium’s abundant surface (S-) layer, as well as other proteins. The S-layer glycoproteins are virulence factors of T. forsythia and there is evidence that protein O-glycosylation underpins the bacterium’s pathogenicity. To elucidate the protein O-glycosylation pathway, genes suspected of encoding pathway components were first identified in the genome sequence of the ATCC 43037 type strain, revealing a 27-kb gene cluster that was shown to be polycistronic. Using a gene deletion approach targeted at predicted glycosyltransferases (Gtfs) and methyltransferases encoded in this gene cluster, in combination with mass spectrometry of the protein-released O-glycans, we show that the gene cluster encodes the species-specific part of the T. forsythia ATCC 43037 decasaccharide and that this is assembled step-wise on a pentasaccharide core. The core was previously proposed to be conserved within the Bacteroidetes phylum, to which T. forsythia is affiliated, and its biosynthesis is encoded elsewhere on the bacterial genome. Next, to assess the prevalence of protein O-glycosylation among Tannerella sp., the publicly available genome sequences of six T. forsythia strains were compared, revealing gene clusters of similar size and organization as found in the ATCC 43037 type strain. The corresponding region in the genome of a periodontal health-associated Tannerella isolate showed a different gene composition lacking most of the genes commonly found in the pathogenic strains. Finally, we investigated whether differential cell surface glycosylation impacts T. forsythia’s overall immunogenicity. Release of proinflammatory cytokines by dendritic cells (DCs) upon stimulation with defined Gtf-deficient mutants of the type strain was measured and their T cell-priming potential post-stimulation was explored. This revealed that the O-glycan is pivotal to modulating DC effector functions, with the T. forsythia-specific glycan portion suppressing and the pentasaccharide core activating a Th17 response. We conclude that complex protein O-glycosylation is a hallmark of pathogenic T. forsythia strains and propose it as a valuable target for the design of novel antimicrobials against periodontitis.
format Online
Article
Text
id pubmed-6120980
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-61209802018-09-12 A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications Tomek, Markus B. Maresch, Daniel Windwarder, Markus Friedrich, Valentin Janesch, Bettina Fuchs, Kristina Neumann, Laura Nimeth, Irene Zwickl, Nikolaus F. Dohm, Juliane C. Everest-Dass, Arun Kolarich, Daniel Himmelbauer, Heinz Altmann, Friedrich Schäffer, Christina Front Microbiol Microbiology The cell surface of the oral pathogen Tannerella forsythia is heavily glycosylated with a unique, complex decasaccharide that is O-glycosidically linked to the bacterium’s abundant surface (S-) layer, as well as other proteins. The S-layer glycoproteins are virulence factors of T. forsythia and there is evidence that protein O-glycosylation underpins the bacterium’s pathogenicity. To elucidate the protein O-glycosylation pathway, genes suspected of encoding pathway components were first identified in the genome sequence of the ATCC 43037 type strain, revealing a 27-kb gene cluster that was shown to be polycistronic. Using a gene deletion approach targeted at predicted glycosyltransferases (Gtfs) and methyltransferases encoded in this gene cluster, in combination with mass spectrometry of the protein-released O-glycans, we show that the gene cluster encodes the species-specific part of the T. forsythia ATCC 43037 decasaccharide and that this is assembled step-wise on a pentasaccharide core. The core was previously proposed to be conserved within the Bacteroidetes phylum, to which T. forsythia is affiliated, and its biosynthesis is encoded elsewhere on the bacterial genome. Next, to assess the prevalence of protein O-glycosylation among Tannerella sp., the publicly available genome sequences of six T. forsythia strains were compared, revealing gene clusters of similar size and organization as found in the ATCC 43037 type strain. The corresponding region in the genome of a periodontal health-associated Tannerella isolate showed a different gene composition lacking most of the genes commonly found in the pathogenic strains. Finally, we investigated whether differential cell surface glycosylation impacts T. forsythia’s overall immunogenicity. Release of proinflammatory cytokines by dendritic cells (DCs) upon stimulation with defined Gtf-deficient mutants of the type strain was measured and their T cell-priming potential post-stimulation was explored. This revealed that the O-glycan is pivotal to modulating DC effector functions, with the T. forsythia-specific glycan portion suppressing and the pentasaccharide core activating a Th17 response. We conclude that complex protein O-glycosylation is a hallmark of pathogenic T. forsythia strains and propose it as a valuable target for the design of novel antimicrobials against periodontitis. Frontiers Media S.A. 2018-08-28 /pmc/articles/PMC6120980/ /pubmed/30210478 http://dx.doi.org/10.3389/fmicb.2018.02008 Text en Copyright © 2018 Tomek, Maresch, Windwarder, Friedrich, Janesch, Fuchs, Neumann, Nimeth, Zwickl, Dohm, Everest-Dass, Kolarich, Himmelbauer, Altmann and Schäffer. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Tomek, Markus B.
Maresch, Daniel
Windwarder, Markus
Friedrich, Valentin
Janesch, Bettina
Fuchs, Kristina
Neumann, Laura
Nimeth, Irene
Zwickl, Nikolaus F.
Dohm, Juliane C.
Everest-Dass, Arun
Kolarich, Daniel
Himmelbauer, Heinz
Altmann, Friedrich
Schäffer, Christina
A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title_full A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title_fullStr A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title_full_unstemmed A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title_short A General Protein O-Glycosylation Gene Cluster Encodes the Species-Specific Glycan of the Oral Pathogen Tannerella forsythia: O-Glycan Biosynthesis and Immunological Implications
title_sort general protein o-glycosylation gene cluster encodes the species-specific glycan of the oral pathogen tannerella forsythia: o-glycan biosynthesis and immunological implications
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120980/
https://www.ncbi.nlm.nih.gov/pubmed/30210478
http://dx.doi.org/10.3389/fmicb.2018.02008
work_keys_str_mv AT tomekmarkusb ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT mareschdaniel ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT windwardermarkus ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT friedrichvalentin ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT janeschbettina ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT fuchskristina ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT neumannlaura ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT nimethirene ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT zwicklnikolausf ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT dohmjulianec ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT everestdassarun ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT kolarichdaniel ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT himmelbauerheinz ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT altmannfriedrich ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT schafferchristina ageneralproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT tomekmarkusb generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT mareschdaniel generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT windwardermarkus generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT friedrichvalentin generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT janeschbettina generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT fuchskristina generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT neumannlaura generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT nimethirene generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT zwicklnikolausf generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT dohmjulianec generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT everestdassarun generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT kolarichdaniel generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT himmelbauerheinz generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT altmannfriedrich generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications
AT schafferchristina generalproteinoglycosylationgeneclusterencodesthespeciesspecificglycanoftheoralpathogentannerellaforsythiaoglycanbiosynthesisandimmunologicalimplications