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Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects

Human Group IIA secreted phospholipase A(2) (hGIIA) is an acute phase protein with bactericidal activity against Gram-positive bacteria. Infection models in hGIIA transgenic mice have suggested the importance of hGIIA as an innate defense mechanism against the human pathogens Group A Streptococcus (...

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Autores principales: van Hensbergen, Vincent P., Movert, Elin, de Maat, Vincent, Lüchtenborg, Christian, Le Breton, Yoann, Lambeau, Gérard, Payré, Christine, Henningham, Anna, Nizet, Victor, van Strijp, Jos A. G., Brügger, Britta, Carlsson, Fredric, McIver, Kevin S., van Sorge, Nina M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201954/
https://www.ncbi.nlm.nih.gov/pubmed/30321240
http://dx.doi.org/10.1371/journal.ppat.1007348
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author van Hensbergen, Vincent P.
Movert, Elin
de Maat, Vincent
Lüchtenborg, Christian
Le Breton, Yoann
Lambeau, Gérard
Payré, Christine
Henningham, Anna
Nizet, Victor
van Strijp, Jos A. G.
Brügger, Britta
Carlsson, Fredric
McIver, Kevin S.
van Sorge, Nina M.
author_facet van Hensbergen, Vincent P.
Movert, Elin
de Maat, Vincent
Lüchtenborg, Christian
Le Breton, Yoann
Lambeau, Gérard
Payré, Christine
Henningham, Anna
Nizet, Victor
van Strijp, Jos A. G.
Brügger, Britta
Carlsson, Fredric
McIver, Kevin S.
van Sorge, Nina M.
author_sort van Hensbergen, Vincent P.
collection PubMed
description Human Group IIA secreted phospholipase A(2) (hGIIA) is an acute phase protein with bactericidal activity against Gram-positive bacteria. Infection models in hGIIA transgenic mice have suggested the importance of hGIIA as an innate defense mechanism against the human pathogens Group A Streptococcus (GAS) and Group B Streptococcus (GBS). Compared to other Gram-positive bacteria, GAS is remarkably resistant to hGIIA activity. To identify GAS resistance mechanisms, we exposed a highly saturated GAS M1 transposon library to recombinant hGIIA and compared relative mutant abundance with library input through transposon-sequencing (Tn-seq). Based on transposon prevalence in the output library, we identified nine genes, including dltA and lytR, conferring increased hGIIA susceptibility. In addition, seven genes conferred increased hGIIA resistance, which included two genes, gacH and gacI that are located within the Group A Carbohydrate (GAC) gene cluster. Using GAS 5448 wild-type and the isogenic gacI mutant and gacI-complemented strains, we demonstrate that loss of the GAC N-acetylglucosamine (GlcNAc) side chain in the ΔgacI mutant increases hGIIA resistance approximately 10-fold, a phenotype that is conserved across different GAS serotypes. Increased resistance is associated with delayed penetration of hGIIA through the cell wall. Correspondingly, loss of the Lancefield Group B Carbohydrate (GBC) rendered GBS significantly more resistant to hGIIA-mediated killing. This suggests that the streptococcal Lancefield antigens, which are critical determinants for streptococcal physiology and virulence, are required for the bactericidal enzyme hGIIA to exert its bactericidal function.
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spelling pubmed-62019542018-11-19 Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects van Hensbergen, Vincent P. Movert, Elin de Maat, Vincent Lüchtenborg, Christian Le Breton, Yoann Lambeau, Gérard Payré, Christine Henningham, Anna Nizet, Victor van Strijp, Jos A. G. Brügger, Britta Carlsson, Fredric McIver, Kevin S. van Sorge, Nina M. PLoS Pathog Research Article Human Group IIA secreted phospholipase A(2) (hGIIA) is an acute phase protein with bactericidal activity against Gram-positive bacteria. Infection models in hGIIA transgenic mice have suggested the importance of hGIIA as an innate defense mechanism against the human pathogens Group A Streptococcus (GAS) and Group B Streptococcus (GBS). Compared to other Gram-positive bacteria, GAS is remarkably resistant to hGIIA activity. To identify GAS resistance mechanisms, we exposed a highly saturated GAS M1 transposon library to recombinant hGIIA and compared relative mutant abundance with library input through transposon-sequencing (Tn-seq). Based on transposon prevalence in the output library, we identified nine genes, including dltA and lytR, conferring increased hGIIA susceptibility. In addition, seven genes conferred increased hGIIA resistance, which included two genes, gacH and gacI that are located within the Group A Carbohydrate (GAC) gene cluster. Using GAS 5448 wild-type and the isogenic gacI mutant and gacI-complemented strains, we demonstrate that loss of the GAC N-acetylglucosamine (GlcNAc) side chain in the ΔgacI mutant increases hGIIA resistance approximately 10-fold, a phenotype that is conserved across different GAS serotypes. Increased resistance is associated with delayed penetration of hGIIA through the cell wall. Correspondingly, loss of the Lancefield Group B Carbohydrate (GBC) rendered GBS significantly more resistant to hGIIA-mediated killing. This suggests that the streptococcal Lancefield antigens, which are critical determinants for streptococcal physiology and virulence, are required for the bactericidal enzyme hGIIA to exert its bactericidal function. Public Library of Science 2018-10-15 /pmc/articles/PMC6201954/ /pubmed/30321240 http://dx.doi.org/10.1371/journal.ppat.1007348 Text en © 2018 van Hensbergen 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
van Hensbergen, Vincent P.
Movert, Elin
de Maat, Vincent
Lüchtenborg, Christian
Le Breton, Yoann
Lambeau, Gérard
Payré, Christine
Henningham, Anna
Nizet, Victor
van Strijp, Jos A. G.
Brügger, Britta
Carlsson, Fredric
McIver, Kevin S.
van Sorge, Nina M.
Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title_full Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title_fullStr Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title_full_unstemmed Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title_short Streptococcal Lancefield polysaccharides are critical cell wall determinants for human Group IIA secreted phospholipase A(2) to exert its bactericidal effects
title_sort streptococcal lancefield polysaccharides are critical cell wall determinants for human group iia secreted phospholipase a(2) to exert its bactericidal effects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6201954/
https://www.ncbi.nlm.nih.gov/pubmed/30321240
http://dx.doi.org/10.1371/journal.ppat.1007348
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