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A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond

Akkermansia muciniphila is key member of the human gut microbiota that impacts many features of host health. A major characteristic of this bacterium is its interaction with host mucin, which is abundant in the gut environment, and its ability to metabolize mucin as a nutrient source. The machinery...

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Autores principales: Medley, Brendon J., Leclaire, Leif, Thompson, Nicole, Mahoney, Keira E., Pluvinage, Benjamin, Parson, Matthew A.H., Burke, John E., Malaker, Stacy, Wakarchuk, Warren, Boraston, Alisdair B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9513282/
https://www.ncbi.nlm.nih.gov/pubmed/36049519
http://dx.doi.org/10.1016/j.jbc.2022.102439
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author Medley, Brendon J.
Leclaire, Leif
Thompson, Nicole
Mahoney, Keira E.
Pluvinage, Benjamin
Parson, Matthew A.H.
Burke, John E.
Malaker, Stacy
Wakarchuk, Warren
Boraston, Alisdair B.
author_facet Medley, Brendon J.
Leclaire, Leif
Thompson, Nicole
Mahoney, Keira E.
Pluvinage, Benjamin
Parson, Matthew A.H.
Burke, John E.
Malaker, Stacy
Wakarchuk, Warren
Boraston, Alisdair B.
author_sort Medley, Brendon J.
collection PubMed
description Akkermansia muciniphila is key member of the human gut microbiota that impacts many features of host health. A major characteristic of this bacterium is its interaction with host mucin, which is abundant in the gut environment, and its ability to metabolize mucin as a nutrient source. The machinery deployed by A. muciniphila to enable this interaction appears to be extensive and sophisticated, yet it is incompletely defined. The uncharacterized protein AMUC_1438 is encoded by a gene that was previously shown to be upregulated when the bacterium is grown on mucin. This uncharacterized protein has features suggestive of carbohydrate-recognition and peptidase activity, which led us to hypothesize that it has a role in mucin depolymerization. Here, we provide structural and functional support for the assignment of AMUC_1438 as a unique O-glycopeptidase with mucin-degrading capacity. O-glycopeptidase enzymes recognize glycans but hydrolyze the peptide backbone and are common in host-adapted microbes that colonize or invade mucus layers. Structural, kinetic, and mutagenic analyses point to a metzincin metalloprotease catalytic motif but with an active site that specifically recognizes a GalNAc residue α-linked to serine or threonine (i.e., the Tn-antigen). The enzyme catalyzes hydrolysis of the bond immediately N-terminal to the glycosylated residue. Additional modeling analyses suggest the presence of a carbohydrate-binding module that may assist in substrate recognition. We anticipate that these results will be fundamental to a wider understanding of the O-glycopeptidase class of enzymes and how they may contribute to host adaptation.
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spelling pubmed-95132822022-09-30 A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond Medley, Brendon J. Leclaire, Leif Thompson, Nicole Mahoney, Keira E. Pluvinage, Benjamin Parson, Matthew A.H. Burke, John E. Malaker, Stacy Wakarchuk, Warren Boraston, Alisdair B. J Biol Chem Research Article Akkermansia muciniphila is key member of the human gut microbiota that impacts many features of host health. A major characteristic of this bacterium is its interaction with host mucin, which is abundant in the gut environment, and its ability to metabolize mucin as a nutrient source. The machinery deployed by A. muciniphila to enable this interaction appears to be extensive and sophisticated, yet it is incompletely defined. The uncharacterized protein AMUC_1438 is encoded by a gene that was previously shown to be upregulated when the bacterium is grown on mucin. This uncharacterized protein has features suggestive of carbohydrate-recognition and peptidase activity, which led us to hypothesize that it has a role in mucin depolymerization. Here, we provide structural and functional support for the assignment of AMUC_1438 as a unique O-glycopeptidase with mucin-degrading capacity. O-glycopeptidase enzymes recognize glycans but hydrolyze the peptide backbone and are common in host-adapted microbes that colonize or invade mucus layers. Structural, kinetic, and mutagenic analyses point to a metzincin metalloprotease catalytic motif but with an active site that specifically recognizes a GalNAc residue α-linked to serine or threonine (i.e., the Tn-antigen). The enzyme catalyzes hydrolysis of the bond immediately N-terminal to the glycosylated residue. Additional modeling analyses suggest the presence of a carbohydrate-binding module that may assist in substrate recognition. We anticipate that these results will be fundamental to a wider understanding of the O-glycopeptidase class of enzymes and how they may contribute to host adaptation. American Society for Biochemistry and Molecular Biology 2022-08-30 /pmc/articles/PMC9513282/ /pubmed/36049519 http://dx.doi.org/10.1016/j.jbc.2022.102439 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Medley, Brendon J.
Leclaire, Leif
Thompson, Nicole
Mahoney, Keira E.
Pluvinage, Benjamin
Parson, Matthew A.H.
Burke, John E.
Malaker, Stacy
Wakarchuk, Warren
Boraston, Alisdair B.
A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title_full A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title_fullStr A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title_full_unstemmed A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title_short A previously uncharacterized O-glycopeptidase from Akkermansia muciniphila requires the Tn-antigen for cleavage of the peptide bond
title_sort previously uncharacterized o-glycopeptidase from akkermansia muciniphila requires the tn-antigen for cleavage of the peptide bond
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9513282/
https://www.ncbi.nlm.nih.gov/pubmed/36049519
http://dx.doi.org/10.1016/j.jbc.2022.102439
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