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Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins

Infection of host tissues by Staphylococcus aureus and S. epidermidis requires an unusual family of staphylococcal adhesive proteins that contain long stretches of serine-aspartate dipeptide-repeats (SDR). The prototype member of this family is clumping factor A (ClfA), a key virulence factor that m...

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Autores principales: Hazenbos, Wouter L. W., Kajihara, Kimberly K., Vandlen, Richard, Morisaki, J. Hiroshi, Lehar, Sophie M., Kwakkenbos, Mark J., Beaumont, Tim, Bakker, Arjen Q., Phung, Qui, Swem, Lee R., Ramakrishnan, Satish, Kim, Janice, Xu, Min, Shah, Ishita M., Diep, Binh An, Sai, Tao, Sebrell, Andrew, Khalfin, Yana, Oh, Angela, Koth, Chris, Lin, S. Jack, Lee, Byoung-Chul, Strandh, Magnus, Koefoed, Klaus, Andersen, Peter S., Spits, Hergen, Brown, Eric J., Tan, Man-Wah, Mariathasan, Sanjeev
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3794999/
https://www.ncbi.nlm.nih.gov/pubmed/24130480
http://dx.doi.org/10.1371/journal.ppat.1003653
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author Hazenbos, Wouter L. W.
Kajihara, Kimberly K.
Vandlen, Richard
Morisaki, J. Hiroshi
Lehar, Sophie M.
Kwakkenbos, Mark J.
Beaumont, Tim
Bakker, Arjen Q.
Phung, Qui
Swem, Lee R.
Ramakrishnan, Satish
Kim, Janice
Xu, Min
Shah, Ishita M.
Diep, Binh An
Sai, Tao
Sebrell, Andrew
Khalfin, Yana
Oh, Angela
Koth, Chris
Lin, S. Jack
Lee, Byoung-Chul
Strandh, Magnus
Koefoed, Klaus
Andersen, Peter S.
Spits, Hergen
Brown, Eric J.
Tan, Man-Wah
Mariathasan, Sanjeev
author_facet Hazenbos, Wouter L. W.
Kajihara, Kimberly K.
Vandlen, Richard
Morisaki, J. Hiroshi
Lehar, Sophie M.
Kwakkenbos, Mark J.
Beaumont, Tim
Bakker, Arjen Q.
Phung, Qui
Swem, Lee R.
Ramakrishnan, Satish
Kim, Janice
Xu, Min
Shah, Ishita M.
Diep, Binh An
Sai, Tao
Sebrell, Andrew
Khalfin, Yana
Oh, Angela
Koth, Chris
Lin, S. Jack
Lee, Byoung-Chul
Strandh, Magnus
Koefoed, Klaus
Andersen, Peter S.
Spits, Hergen
Brown, Eric J.
Tan, Man-Wah
Mariathasan, Sanjeev
author_sort Hazenbos, Wouter L. W.
collection PubMed
description Infection of host tissues by Staphylococcus aureus and S. epidermidis requires an unusual family of staphylococcal adhesive proteins that contain long stretches of serine-aspartate dipeptide-repeats (SDR). The prototype member of this family is clumping factor A (ClfA), a key virulence factor that mediates adhesion to host tissues by binding to extracellular matrix proteins such as fibrinogen. However, the biological siginificance of the SDR-domain and its implication for pathogenesis remain poorly understood. Here, we identified two novel bacterial glycosyltransferases, SdgA and SdgB, which modify all SDR-proteins in these two bacterial species. Genetic and biochemical data demonstrated that these two glycosyltransferases directly bind and covalently link N-acetylglucosamine (GlcNAc) moieties to the SDR-domain in a step-wise manner, with SdgB appending the sugar residues proximal to the target Ser-Asp repeats, followed by additional modification by SdgA. GlcNAc-modification of SDR-proteins by SdgB creates an immunodominant epitope for highly opsonic human antibodies, which represent up to 1% of total human IgG. Deletion of these glycosyltransferases renders SDR-proteins vulnerable to proteolysis by human neutrophil-derived cathepsin G. Thus, SdgA and SdgB glycosylate staphylococcal SDR-proteins, which protects them against host proteolytic activity, and yet generates major eptopes for the human anti-staphylococcal antibody response, which may represent an ongoing competition between host and pathogen.
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spelling pubmed-37949992013-10-15 Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins Hazenbos, Wouter L. W. Kajihara, Kimberly K. Vandlen, Richard Morisaki, J. Hiroshi Lehar, Sophie M. Kwakkenbos, Mark J. Beaumont, Tim Bakker, Arjen Q. Phung, Qui Swem, Lee R. Ramakrishnan, Satish Kim, Janice Xu, Min Shah, Ishita M. Diep, Binh An Sai, Tao Sebrell, Andrew Khalfin, Yana Oh, Angela Koth, Chris Lin, S. Jack Lee, Byoung-Chul Strandh, Magnus Koefoed, Klaus Andersen, Peter S. Spits, Hergen Brown, Eric J. Tan, Man-Wah Mariathasan, Sanjeev PLoS Pathog Research Article Infection of host tissues by Staphylococcus aureus and S. epidermidis requires an unusual family of staphylococcal adhesive proteins that contain long stretches of serine-aspartate dipeptide-repeats (SDR). The prototype member of this family is clumping factor A (ClfA), a key virulence factor that mediates adhesion to host tissues by binding to extracellular matrix proteins such as fibrinogen. However, the biological siginificance of the SDR-domain and its implication for pathogenesis remain poorly understood. Here, we identified two novel bacterial glycosyltransferases, SdgA and SdgB, which modify all SDR-proteins in these two bacterial species. Genetic and biochemical data demonstrated that these two glycosyltransferases directly bind and covalently link N-acetylglucosamine (GlcNAc) moieties to the SDR-domain in a step-wise manner, with SdgB appending the sugar residues proximal to the target Ser-Asp repeats, followed by additional modification by SdgA. GlcNAc-modification of SDR-proteins by SdgB creates an immunodominant epitope for highly opsonic human antibodies, which represent up to 1% of total human IgG. Deletion of these glycosyltransferases renders SDR-proteins vulnerable to proteolysis by human neutrophil-derived cathepsin G. Thus, SdgA and SdgB glycosylate staphylococcal SDR-proteins, which protects them against host proteolytic activity, and yet generates major eptopes for the human anti-staphylococcal antibody response, which may represent an ongoing competition between host and pathogen. Public Library of Science 2013-10-10 /pmc/articles/PMC3794999/ /pubmed/24130480 http://dx.doi.org/10.1371/journal.ppat.1003653 Text en © 2013 Hazenbos et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hazenbos, Wouter L. W.
Kajihara, Kimberly K.
Vandlen, Richard
Morisaki, J. Hiroshi
Lehar, Sophie M.
Kwakkenbos, Mark J.
Beaumont, Tim
Bakker, Arjen Q.
Phung, Qui
Swem, Lee R.
Ramakrishnan, Satish
Kim, Janice
Xu, Min
Shah, Ishita M.
Diep, Binh An
Sai, Tao
Sebrell, Andrew
Khalfin, Yana
Oh, Angela
Koth, Chris
Lin, S. Jack
Lee, Byoung-Chul
Strandh, Magnus
Koefoed, Klaus
Andersen, Peter S.
Spits, Hergen
Brown, Eric J.
Tan, Man-Wah
Mariathasan, Sanjeev
Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title_full Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title_fullStr Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title_full_unstemmed Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title_short Novel Staphylococcal Glycosyltransferases SdgA and SdgB Mediate Immunogenicity and Protection of Virulence-Associated Cell Wall Proteins
title_sort novel staphylococcal glycosyltransferases sdga and sdgb mediate immunogenicity and protection of virulence-associated cell wall proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3794999/
https://www.ncbi.nlm.nih.gov/pubmed/24130480
http://dx.doi.org/10.1371/journal.ppat.1003653
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