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The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan

The depolymerization of complex glycans is an important biological process that is of considerable interest to environmentally relevant industries. β-Mannose is a major component of plant structural polysaccharides and eukaryotic N-glycans. These linkages are primarily cleaved by glycoside hydrolase...

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Autores principales: Cuskin, Fiona, Baslé, Arnaud, Ladevèze, Simon, Day, Alison M., Gilbert, Harry J., Davies, Gideon J., Potocki-Véronèse, Gabrielle, Lowe, Elisabeth C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599007/
https://www.ncbi.nlm.nih.gov/pubmed/26286752
http://dx.doi.org/10.1074/jbc.M115.681460
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author Cuskin, Fiona
Baslé, Arnaud
Ladevèze, Simon
Day, Alison M.
Gilbert, Harry J.
Davies, Gideon J.
Potocki-Véronèse, Gabrielle
Lowe, Elisabeth C.
author_facet Cuskin, Fiona
Baslé, Arnaud
Ladevèze, Simon
Day, Alison M.
Gilbert, Harry J.
Davies, Gideon J.
Potocki-Véronèse, Gabrielle
Lowe, Elisabeth C.
author_sort Cuskin, Fiona
collection PubMed
description The depolymerization of complex glycans is an important biological process that is of considerable interest to environmentally relevant industries. β-Mannose is a major component of plant structural polysaccharides and eukaryotic N-glycans. These linkages are primarily cleaved by glycoside hydrolases, although recently, a family of glycoside phosphorylases, GH130, have also been shown to target β-1,2- and β-1,4-mannosidic linkages. In these phosphorylases, bond cleavage was mediated by a single displacement reaction in which phosphate functions as the catalytic nucleophile. A cohort of GH130 enzymes, however, lack the conserved basic residues that bind the phosphate nucleophile, and it was proposed that these enzymes function as glycoside hydrolases. Here we show that two Bacteroides enzymes, BT3780 and BACOVA_03624, which lack the phosphate binding residues, are indeed β-mannosidases that hydrolyze β-1,2-mannosidic linkages through an inverting mechanism. Because the genes encoding these enzymes are located in genetic loci that orchestrate the depolymerization of yeast α-mannans, it is likely that the two enzymes target the β-1,2-mannose residues that cap the glycan produced by Candida albicans. The crystal structure of BT3780 in complex with mannose bound in the −1 and +1 subsites showed that a pair of glutamates, Glu(227) and Glu(268), hydrogen bond to O(1) of α-mannose, and either of these residues may function as the catalytic base. The candidate catalytic acid and the other residues that interact with the active site mannose are conserved in both GH130 mannoside phosphorylases and β-1,2-mannosidases. Functional phylogeny identified a conserved lysine, Lys(199) in BT3780, as a key specificity determinant for β-1,2-mannosidic linkages.
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spelling pubmed-45990072015-10-19 The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan Cuskin, Fiona Baslé, Arnaud Ladevèze, Simon Day, Alison M. Gilbert, Harry J. Davies, Gideon J. Potocki-Véronèse, Gabrielle Lowe, Elisabeth C. J Biol Chem Enzymology The depolymerization of complex glycans is an important biological process that is of considerable interest to environmentally relevant industries. β-Mannose is a major component of plant structural polysaccharides and eukaryotic N-glycans. These linkages are primarily cleaved by glycoside hydrolases, although recently, a family of glycoside phosphorylases, GH130, have also been shown to target β-1,2- and β-1,4-mannosidic linkages. In these phosphorylases, bond cleavage was mediated by a single displacement reaction in which phosphate functions as the catalytic nucleophile. A cohort of GH130 enzymes, however, lack the conserved basic residues that bind the phosphate nucleophile, and it was proposed that these enzymes function as glycoside hydrolases. Here we show that two Bacteroides enzymes, BT3780 and BACOVA_03624, which lack the phosphate binding residues, are indeed β-mannosidases that hydrolyze β-1,2-mannosidic linkages through an inverting mechanism. Because the genes encoding these enzymes are located in genetic loci that orchestrate the depolymerization of yeast α-mannans, it is likely that the two enzymes target the β-1,2-mannose residues that cap the glycan produced by Candida albicans. The crystal structure of BT3780 in complex with mannose bound in the −1 and +1 subsites showed that a pair of glutamates, Glu(227) and Glu(268), hydrogen bond to O(1) of α-mannose, and either of these residues may function as the catalytic base. The candidate catalytic acid and the other residues that interact with the active site mannose are conserved in both GH130 mannoside phosphorylases and β-1,2-mannosidases. Functional phylogeny identified a conserved lysine, Lys(199) in BT3780, as a key specificity determinant for β-1,2-mannosidic linkages. American Society for Biochemistry and Molecular Biology 2015-10-09 2015-08-18 /pmc/articles/PMC4599007/ /pubmed/26286752 http://dx.doi.org/10.1074/jbc.M115.681460 Text en © 2015 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/3.0) .
spellingShingle Enzymology
Cuskin, Fiona
Baslé, Arnaud
Ladevèze, Simon
Day, Alison M.
Gilbert, Harry J.
Davies, Gideon J.
Potocki-Véronèse, Gabrielle
Lowe, Elisabeth C.
The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title_full The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title_fullStr The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title_full_unstemmed The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title_short The GH130 Family of Mannoside Phosphorylases Contains Glycoside Hydrolases That Target β-1,2-Mannosidic Linkages in Candida Mannan
title_sort gh130 family of mannoside phosphorylases contains glycoside hydrolases that target β-1,2-mannosidic linkages in candida mannan
topic Enzymology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599007/
https://www.ncbi.nlm.nih.gov/pubmed/26286752
http://dx.doi.org/10.1074/jbc.M115.681460
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