PplD is a de-N-acetylase of the cell wall linkage unit of streptococcal rhamnopolysaccharides

Abstract The cell wall of the human bacterial pathogen Group A Streptococcus (GAS) consists of peptidoglycan decorated with the Lancefield group A carbohydrate (GAC). GAC is a promising target for the development of GAS vaccines. In this study, employing chemical, compositional, and NMR methods, we...

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Published in:Nature communications Vol. 13
Main Authors: Rush, Jeffrey, Parajuli, Prakash, Ruda, Alessandro, Li, Jian, Pohane, Amol, Zamakhaeva, Svetlana, Rahman, Mohammad, Chang, Jennifer, Gogos, Artemis, Kenner, Cameron, Lambeau, Gérard, Federle, Michael, Korotkov, Konstantin, Widmalm, Göran, Korotkova, Natalia
Format: Journal Article
Language:English
Published: Nature Publishing Group 01-02-2022
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Abstract Abstract The cell wall of the human bacterial pathogen Group A Streptococcus (GAS) consists of peptidoglycan decorated with the Lancefield group A carbohydrate (GAC). GAC is a promising target for the development of GAS vaccines. In this study, employing chemical, compositional, and NMR methods, we show that GAC is attached to peptidoglycan via glucosamine 1-phosphate. This structural feature makes the GAC-peptidoglycan linkage highly sensitive to cleavage by nitrous acid and resistant to mild acid conditions. Using this characteristic of the GAS cell wall, we identify PplD as a protein required for deacetylation of linkage N -acetylglucosamine (GlcNAc). X-ray structural analysis indicates that PplD performs catalysis via a modified acid/base mechanism. Genetic surveys in silico together with functional analysis indicate that PplD homologs deacetylate the polysaccharide linkage in many streptococcal species. We further demonstrate that introduction of positive charges to the cell wall by GlcNAc deacetylation protects GAS against host cationic antimicrobial proteins.
AbstractList Abstract The cell wall of the human bacterial pathogen Group A Streptococcus (GAS) consists of peptidoglycan decorated with the Lancefield group A carbohydrate (GAC). GAC is a promising target for the development of GAS vaccines. In this study, employing chemical, compositional, and NMR methods, we show that GAC is attached to peptidoglycan via glucosamine 1-phosphate. This structural feature makes the GAC-peptidoglycan linkage highly sensitive to cleavage by nitrous acid and resistant to mild acid conditions. Using this characteristic of the GAS cell wall, we identify PplD as a protein required for deacetylation of linkage N -acetylglucosamine (GlcNAc). X-ray structural analysis indicates that PplD performs catalysis via a modified acid/base mechanism. Genetic surveys in silico together with functional analysis indicate that PplD homologs deacetylate the polysaccharide linkage in many streptococcal species. We further demonstrate that introduction of positive charges to the cell wall by GlcNAc deacetylation protects GAS against host cationic antimicrobial proteins.
Author Rahman, Mohammad
Korotkova, Natalia
Rush, Jeffrey
Widmalm, Göran
Korotkov, Konstantin
Gogos, Artemis
Pohane, Amol
Ruda, Alessandro
Kenner, Cameron
Federle, Michael
Chang, Jennifer
Li, Jian
Zamakhaeva, Svetlana
Parajuli, Prakash
Lambeau, Gérard
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  fullname: Korotkova, Natalia
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Snippet Abstract The cell wall of the human bacterial pathogen Group A Streptococcus (GAS) consists of peptidoglycan decorated with the Lancefield group A carbohydrate...
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Title PplD is a de-N-acetylase of the cell wall linkage unit of streptococcal rhamnopolysaccharides
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