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Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates

A few α-glucan debranching enzymes (DBEs) of the large glycoside hydrolase family 13 (GH13), also known as the α-amylase family, have been shown to catalyze transglycosylation as well as hydrolysis. However, little is known about their acceptor and donor preferences. Here, a DBE from barley, limit d...

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Autores principales: Vester-Christensen, Malene Bech, Holck, Jesper, Rejzek, Martin, Perrin, Léa, Tovborg, Morten, Svensson, Birte, Field, Robert A., Møller, Marie Sofie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223164/
https://www.ncbi.nlm.nih.gov/pubmed/37241852
http://dx.doi.org/10.3390/molecules28104111
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author Vester-Christensen, Malene Bech
Holck, Jesper
Rejzek, Martin
Perrin, Léa
Tovborg, Morten
Svensson, Birte
Field, Robert A.
Møller, Marie Sofie
author_facet Vester-Christensen, Malene Bech
Holck, Jesper
Rejzek, Martin
Perrin, Léa
Tovborg, Morten
Svensson, Birte
Field, Robert A.
Møller, Marie Sofie
author_sort Vester-Christensen, Malene Bech
collection PubMed
description A few α-glucan debranching enzymes (DBEs) of the large glycoside hydrolase family 13 (GH13), also known as the α-amylase family, have been shown to catalyze transglycosylation as well as hydrolysis. However, little is known about their acceptor and donor preferences. Here, a DBE from barley, limit dextrinase (HvLD), is used as a case study. Its transglycosylation activity is studied using two approaches; (i) natural substrates as donors and different p-nitrophenyl (pNP) sugars as well as different small glycosides as acceptors, and (ii) α-maltosyl and α-maltotriosyl fluorides as donors with linear maltooligosaccharides, cyclodextrins, and GH inhibitors as acceptors. HvLD showed a clear preference for pNP maltoside both as acceptor/donor and acceptor with the natural substrate pullulan or a pullulan fragment as donor. Maltose was the best acceptor with α-maltosyl fluoride as donor. The findings highlight the importance of the subsite +2 of HvLD for activity and selectivity when maltooligosaccharides function as acceptors. However, remarkably, HvLD is not very selective when it comes to aglycone moiety; different aromatic ring-containing molecules besides pNP could function as acceptors. The transglycosylation activity of HvLD can provide glycoconjugate compounds with novel glycosylation patterns from natural donors such as pullulan, although the reaction would benefit from optimization.
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spelling pubmed-102231642023-05-28 Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates Vester-Christensen, Malene Bech Holck, Jesper Rejzek, Martin Perrin, Léa Tovborg, Morten Svensson, Birte Field, Robert A. Møller, Marie Sofie Molecules Article A few α-glucan debranching enzymes (DBEs) of the large glycoside hydrolase family 13 (GH13), also known as the α-amylase family, have been shown to catalyze transglycosylation as well as hydrolysis. However, little is known about their acceptor and donor preferences. Here, a DBE from barley, limit dextrinase (HvLD), is used as a case study. Its transglycosylation activity is studied using two approaches; (i) natural substrates as donors and different p-nitrophenyl (pNP) sugars as well as different small glycosides as acceptors, and (ii) α-maltosyl and α-maltotriosyl fluorides as donors with linear maltooligosaccharides, cyclodextrins, and GH inhibitors as acceptors. HvLD showed a clear preference for pNP maltoside both as acceptor/donor and acceptor with the natural substrate pullulan or a pullulan fragment as donor. Maltose was the best acceptor with α-maltosyl fluoride as donor. The findings highlight the importance of the subsite +2 of HvLD for activity and selectivity when maltooligosaccharides function as acceptors. However, remarkably, HvLD is not very selective when it comes to aglycone moiety; different aromatic ring-containing molecules besides pNP could function as acceptors. The transglycosylation activity of HvLD can provide glycoconjugate compounds with novel glycosylation patterns from natural donors such as pullulan, although the reaction would benefit from optimization. MDPI 2023-05-16 /pmc/articles/PMC10223164/ /pubmed/37241852 http://dx.doi.org/10.3390/molecules28104111 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vester-Christensen, Malene Bech
Holck, Jesper
Rejzek, Martin
Perrin, Léa
Tovborg, Morten
Svensson, Birte
Field, Robert A.
Møller, Marie Sofie
Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title_full Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title_fullStr Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title_full_unstemmed Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title_short Exploration of the Transglycosylation Activity of Barley Limit Dextrinase for Production of Novel Glycoconjugates
title_sort exploration of the transglycosylation activity of barley limit dextrinase for production of novel glycoconjugates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223164/
https://www.ncbi.nlm.nih.gov/pubmed/37241852
http://dx.doi.org/10.3390/molecules28104111
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