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LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans

Both LARGE1 (formerly LARGE) and its paralog LARGE2 are bifunctional glycosyltransferases with xylosy- and glucuronyltransferase activities, and are capable of synthesizing polymers composed of a repeating disaccharide [-3Xylα1,3GlcAβ1-]. Post-translational modification of the O-mannosyl glycan of α...

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Autores principales: Inamori, Kei-ichiro, Beedle, Aaron M, de Bernabé, Daniel Beltrán-Valero, Wright, Michael E, Campbell, Kevin P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5137251/
https://www.ncbi.nlm.nih.gov/pubmed/27496765
http://dx.doi.org/10.1093/glycob/cww075
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author Inamori, Kei-ichiro
Beedle, Aaron M
de Bernabé, Daniel Beltrán-Valero
Wright, Michael E
Campbell, Kevin P
author_facet Inamori, Kei-ichiro
Beedle, Aaron M
de Bernabé, Daniel Beltrán-Valero
Wright, Michael E
Campbell, Kevin P
author_sort Inamori, Kei-ichiro
collection PubMed
description Both LARGE1 (formerly LARGE) and its paralog LARGE2 are bifunctional glycosyltransferases with xylosy- and glucuronyltransferase activities, and are capable of synthesizing polymers composed of a repeating disaccharide [-3Xylα1,3GlcAβ1-]. Post-translational modification of the O-mannosyl glycan of α-dystroglycan (α-DG) with the polysaccharide is essential for it to act as a receptor for ligands in the extracellular matrix (ECM), and both LARGE paralogs contribute to the modification in vivo. LARGE1 and LARGE2 have different tissue distribution profiles and enzymatic properties; however, the functional difference of the homologs remains to be determined, and α-DG is the only known substrate for the modification by LARGE1 or LARGE2. Here we show that LARGE2 can modify proteoglycans (PGs) with the laminin-binding glycan. We found that overexpression of LARGE2, but not LARGE1, mediates the functional modification on the surface of DG(−/−), Pomt1(−/−) and Fktn(−/−) embryonic stem cells. We identified a heparan sulfate-PG glypican-4 as a substrate for the LARGE2-dependent modification by affinity purification and subsequent mass spectrometric analysis. Furthermore, we showed that LARGE2 could modify several additional PGs with the laminin-binding glycan, most likely within the glycosaminoglycan (GAG)-protein linkage region. Our results indicate that LARGE2 can modify PGs with the GAG-like polysaccharide composed of xylose and glucuronic acid to confer laminin binding. Thus, LARGE2 may play a differential role in stabilizing the basement membrane and modifying its functions by augmenting the interactions between laminin globular domain-containing ECM proteins and PGs.
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spelling pubmed-51372512016-12-06 LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans Inamori, Kei-ichiro Beedle, Aaron M de Bernabé, Daniel Beltrán-Valero Wright, Michael E Campbell, Kevin P Glycobiology Original articles Both LARGE1 (formerly LARGE) and its paralog LARGE2 are bifunctional glycosyltransferases with xylosy- and glucuronyltransferase activities, and are capable of synthesizing polymers composed of a repeating disaccharide [-3Xylα1,3GlcAβ1-]. Post-translational modification of the O-mannosyl glycan of α-dystroglycan (α-DG) with the polysaccharide is essential for it to act as a receptor for ligands in the extracellular matrix (ECM), and both LARGE paralogs contribute to the modification in vivo. LARGE1 and LARGE2 have different tissue distribution profiles and enzymatic properties; however, the functional difference of the homologs remains to be determined, and α-DG is the only known substrate for the modification by LARGE1 or LARGE2. Here we show that LARGE2 can modify proteoglycans (PGs) with the laminin-binding glycan. We found that overexpression of LARGE2, but not LARGE1, mediates the functional modification on the surface of DG(−/−), Pomt1(−/−) and Fktn(−/−) embryonic stem cells. We identified a heparan sulfate-PG glypican-4 as a substrate for the LARGE2-dependent modification by affinity purification and subsequent mass spectrometric analysis. Furthermore, we showed that LARGE2 could modify several additional PGs with the laminin-binding glycan, most likely within the glycosaminoglycan (GAG)-protein linkage region. Our results indicate that LARGE2 can modify PGs with the GAG-like polysaccharide composed of xylose and glucuronic acid to confer laminin binding. Thus, LARGE2 may play a differential role in stabilizing the basement membrane and modifying its functions by augmenting the interactions between laminin globular domain-containing ECM proteins and PGs. Oxford University Press 2016-12 2016-12-05 /pmc/articles/PMC5137251/ /pubmed/27496765 http://dx.doi.org/10.1093/glycob/cww075 Text en © The Author 2016. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original articles
Inamori, Kei-ichiro
Beedle, Aaron M
de Bernabé, Daniel Beltrán-Valero
Wright, Michael E
Campbell, Kevin P
LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title_full LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title_fullStr LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title_full_unstemmed LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title_short LARGE2-dependent glycosylation confers laminin-binding ability on proteoglycans
title_sort large2-dependent glycosylation confers laminin-binding ability on proteoglycans
topic Original articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5137251/
https://www.ncbi.nlm.nih.gov/pubmed/27496765
http://dx.doi.org/10.1093/glycob/cww075
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