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The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan

Defects in the O‐mannosyl glycan of α‐dystroglycan (α‐DG) are associated with α‐dystroglycanopathy, a group of congenital muscular dystrophies. While α‐DG has many O‐mannosylation sites, only the specific positions can be modified with the functional O‐mannosyl glycan, namely, core M3‐type glycan. P...

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Autores principales: Imae, Rieko, Kuwabara, Naoyuki, Manya, Hiroshi, Tanaka, Tomohiro, Tsuyuguchi, Masato, Mizuno, Mamoru, Endo, Tamao, Kato, Ryuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8360118/
https://www.ncbi.nlm.nih.gov/pubmed/33893702
http://dx.doi.org/10.1111/gtc.12853
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author Imae, Rieko
Kuwabara, Naoyuki
Manya, Hiroshi
Tanaka, Tomohiro
Tsuyuguchi, Masato
Mizuno, Mamoru
Endo, Tamao
Kato, Ryuichi
author_facet Imae, Rieko
Kuwabara, Naoyuki
Manya, Hiroshi
Tanaka, Tomohiro
Tsuyuguchi, Masato
Mizuno, Mamoru
Endo, Tamao
Kato, Ryuichi
author_sort Imae, Rieko
collection PubMed
description Defects in the O‐mannosyl glycan of α‐dystroglycan (α‐DG) are associated with α‐dystroglycanopathy, a group of congenital muscular dystrophies. While α‐DG has many O‐mannosylation sites, only the specific positions can be modified with the functional O‐mannosyl glycan, namely, core M3‐type glycan. POMGNT2 is a glycosyltransferase which adds β1,4‐linked GlcNAc to the O‐mannose (Man) residue to acquire core M3‐type glycan. Although it is assumed that POMGNT2 extends the specific O‐Man residues around particular amino acid sequences, the details are not well understood. Here, we determined a series of crystal structures of POMGNT2 with and without the acceptor O‐mannosyl peptides and identified the critical interactions between POMGNT2 and the acceptor peptide. POMGNT2 has an N‐terminal catalytic domain and a C‐terminal fibronectin type III (FnIII) domain and forms a dimer. The acceptor peptide is sandwiched between the two protomers. The catalytic domain of one protomer recognizes the O‐mannosylation site (TPT motif), and the FnIII domain of the other protomer recognizes the C‐terminal region of the peptide. Structure‐based mutational studies confirmed that amino acid residues of the catalytic domain interacting with mannose or the TPT motif are essential for POMGNT2 enzymatic activity. In addition, the FnIII domain is also essential for the activity and it interacts with the peptide mainly by hydrophobic interaction. Our study provides the first atomic‐resolution insights into specific acceptor recognition by the FnIII domain of POMGNT2. The catalytic mechanism of POMGNT2 is proposed based on the structure.
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spelling pubmed-83601182021-08-17 The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan Imae, Rieko Kuwabara, Naoyuki Manya, Hiroshi Tanaka, Tomohiro Tsuyuguchi, Masato Mizuno, Mamoru Endo, Tamao Kato, Ryuichi Genes Cells Original Articles Defects in the O‐mannosyl glycan of α‐dystroglycan (α‐DG) are associated with α‐dystroglycanopathy, a group of congenital muscular dystrophies. While α‐DG has many O‐mannosylation sites, only the specific positions can be modified with the functional O‐mannosyl glycan, namely, core M3‐type glycan. POMGNT2 is a glycosyltransferase which adds β1,4‐linked GlcNAc to the O‐mannose (Man) residue to acquire core M3‐type glycan. Although it is assumed that POMGNT2 extends the specific O‐Man residues around particular amino acid sequences, the details are not well understood. Here, we determined a series of crystal structures of POMGNT2 with and without the acceptor O‐mannosyl peptides and identified the critical interactions between POMGNT2 and the acceptor peptide. POMGNT2 has an N‐terminal catalytic domain and a C‐terminal fibronectin type III (FnIII) domain and forms a dimer. The acceptor peptide is sandwiched between the two protomers. The catalytic domain of one protomer recognizes the O‐mannosylation site (TPT motif), and the FnIII domain of the other protomer recognizes the C‐terminal region of the peptide. Structure‐based mutational studies confirmed that amino acid residues of the catalytic domain interacting with mannose or the TPT motif are essential for POMGNT2 enzymatic activity. In addition, the FnIII domain is also essential for the activity and it interacts with the peptide mainly by hydrophobic interaction. Our study provides the first atomic‐resolution insights into specific acceptor recognition by the FnIII domain of POMGNT2. The catalytic mechanism of POMGNT2 is proposed based on the structure. John Wiley and Sons Inc. 2021-05-20 2021-07 /pmc/articles/PMC8360118/ /pubmed/33893702 http://dx.doi.org/10.1111/gtc.12853 Text en © 2021 The Authors. Genes to Cells published by Molecular Biology Society of Japan and John Wiley & Sons Australia, Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Imae, Rieko
Kuwabara, Naoyuki
Manya, Hiroshi
Tanaka, Tomohiro
Tsuyuguchi, Masato
Mizuno, Mamoru
Endo, Tamao
Kato, Ryuichi
The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title_full The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title_fullStr The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title_full_unstemmed The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title_short The structure of POMGNT2 provides new insights into the mechanism to determine the functional O‐mannosylation site on α‐dystroglycan
title_sort structure of pomgnt2 provides new insights into the mechanism to determine the functional o‐mannosylation site on α‐dystroglycan
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8360118/
https://www.ncbi.nlm.nih.gov/pubmed/33893702
http://dx.doi.org/10.1111/gtc.12853
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