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Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins

Bisected N-glycans represent a unique class of protein N-glycans that play critical roles in many biological processes. Herein, we describe the systematic synthesis of these structures. A bisected N-glycan hexasaccharide was chemically assembled with two orthogonal protecting groups attached at the...

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Autores principales: Cao, Xuefeng, Wang, Shuaishuai, Gadi, Madhusudhan Reddy, Liu, Ding, Wang, Peng G., Wan, Xiu-Feng, Zhang, Jian, Chen, Xi, Pepi, Lauren E., Azadi, Parastoo, Li, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241959/
https://www.ncbi.nlm.nih.gov/pubmed/35872821
http://dx.doi.org/10.1039/d1sc05435j
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author Cao, Xuefeng
Wang, Shuaishuai
Gadi, Madhusudhan Reddy
Liu, Ding
Wang, Peng G.
Wan, Xiu-Feng
Zhang, Jian
Chen, Xi
Pepi, Lauren E.
Azadi, Parastoo
Li, Lei
author_facet Cao, Xuefeng
Wang, Shuaishuai
Gadi, Madhusudhan Reddy
Liu, Ding
Wang, Peng G.
Wan, Xiu-Feng
Zhang, Jian
Chen, Xi
Pepi, Lauren E.
Azadi, Parastoo
Li, Lei
author_sort Cao, Xuefeng
collection PubMed
description Bisected N-glycans represent a unique class of protein N-glycans that play critical roles in many biological processes. Herein, we describe the systematic synthesis of these structures. A bisected N-glycan hexasaccharide was chemically assembled with two orthogonal protecting groups attached at the C2 of the branching mannose residues, followed by sequential installation of GlcNAc and LacNAc building blocks to afford two asymmetric bisecting “cores”. Subsequent enzymatic modular extension of the “cores” yielded a comprehensive library of biantennary N-glycans containing the bisecting GlcNAc and presenting 6 common glycan determinants in a combinatorial fashion. These bisected N-glycans and their non-bisected counterparts were used to construct a distinctive glycan microarray to study their recognition by a wide variety of glycan-binding proteins (GBPs), including plant lectins, animal lectins, and influenza A virus hemagglutinins. Significantly, the bisecting GlcNAc could bestow (PHA-L, rDCIR2), enhance (PHA-E), or abolish (ConA, GNL, anti-CD15s antibody, etc.) N-glycan recognition of specific GBPs, and is tolerated by many others. In summary, synthesized compounds and the unique glycan microarray provide ideal standards and tools for glycoanalysis and functional glycomic studies. The microarray data provide new information regarding the fine details of N-glycan recognition by GBPs, and in turn improve their applications.
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spelling pubmed-92419592022-07-22 Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins Cao, Xuefeng Wang, Shuaishuai Gadi, Madhusudhan Reddy Liu, Ding Wang, Peng G. Wan, Xiu-Feng Zhang, Jian Chen, Xi Pepi, Lauren E. Azadi, Parastoo Li, Lei Chem Sci Chemistry Bisected N-glycans represent a unique class of protein N-glycans that play critical roles in many biological processes. Herein, we describe the systematic synthesis of these structures. A bisected N-glycan hexasaccharide was chemically assembled with two orthogonal protecting groups attached at the C2 of the branching mannose residues, followed by sequential installation of GlcNAc and LacNAc building blocks to afford two asymmetric bisecting “cores”. Subsequent enzymatic modular extension of the “cores” yielded a comprehensive library of biantennary N-glycans containing the bisecting GlcNAc and presenting 6 common glycan determinants in a combinatorial fashion. These bisected N-glycans and their non-bisected counterparts were used to construct a distinctive glycan microarray to study their recognition by a wide variety of glycan-binding proteins (GBPs), including plant lectins, animal lectins, and influenza A virus hemagglutinins. Significantly, the bisecting GlcNAc could bestow (PHA-L, rDCIR2), enhance (PHA-E), or abolish (ConA, GNL, anti-CD15s antibody, etc.) N-glycan recognition of specific GBPs, and is tolerated by many others. In summary, synthesized compounds and the unique glycan microarray provide ideal standards and tools for glycoanalysis and functional glycomic studies. The microarray data provide new information regarding the fine details of N-glycan recognition by GBPs, and in turn improve their applications. The Royal Society of Chemistry 2022-06-09 /pmc/articles/PMC9241959/ /pubmed/35872821 http://dx.doi.org/10.1039/d1sc05435j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Cao, Xuefeng
Wang, Shuaishuai
Gadi, Madhusudhan Reddy
Liu, Ding
Wang, Peng G.
Wan, Xiu-Feng
Zhang, Jian
Chen, Xi
Pepi, Lauren E.
Azadi, Parastoo
Li, Lei
Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title_full Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title_fullStr Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title_full_unstemmed Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title_short Systematic synthesis of bisected N-glycans and unique recognitions by glycan-binding proteins
title_sort systematic synthesis of bisected n-glycans and unique recognitions by glycan-binding proteins
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9241959/
https://www.ncbi.nlm.nih.gov/pubmed/35872821
http://dx.doi.org/10.1039/d1sc05435j
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