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Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides

C-Glycosyl peptides possess excellent metabolic stability and therapeutic properties and thus play critical roles in biological studies as well as drug discoveries. However, the limited accessibility of C-glycosyl amino acids has significantly hindered the broader research of their structural featur...

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Autores principales: Chen, Anrong, Zhao, Shiyin, Han, Yang, Zhou, Zhenghong, Yang, Bo, Xie, Lan-Gui, Walczak, Maciej A., Zhu, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337754/
https://www.ncbi.nlm.nih.gov/pubmed/37449071
http://dx.doi.org/10.1039/d3sc01995k
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author Chen, Anrong
Zhao, Shiyin
Han, Yang
Zhou, Zhenghong
Yang, Bo
Xie, Lan-Gui
Walczak, Maciej A.
Zhu, Feng
author_facet Chen, Anrong
Zhao, Shiyin
Han, Yang
Zhou, Zhenghong
Yang, Bo
Xie, Lan-Gui
Walczak, Maciej A.
Zhu, Feng
author_sort Chen, Anrong
collection PubMed
description C-Glycosyl peptides possess excellent metabolic stability and therapeutic properties and thus play critical roles in biological studies as well as drug discoveries. However, the limited accessibility of C-glycosyl amino acids has significantly hindered the broader research of their structural features and mode of action. Herein, for the first time we disclose a novel visible-light-driven radical conjugate addition of 1,4-dihydropyridine (DHP)-derived glycosyl esters with dehydroalanine derivatives, generating C-glycosyl amino acids and C-glycosyl peptides in good yields with excellent stereoselectivities. Redox-active glycosyl esters, as readily accessible and bench-stable radical precursors, could be easily converted to glycosyl radicals via anomeric C(sp(3))–O bond homolysis under mild conditions. Importantly, the generality and practicality of this transformation were fully demonstrated in >40 examples including 2-dexosugars, oligosaccharides, oligopeptides, and complex drug molecules. Given its mild reaction conditions, robust sugar scope, and high anomeric control and diastereoselectivity, the method presented herein could find widespread utility in the preparation of C(sp(3))-linked sugar-based peptidomimetics.
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spelling pubmed-103377542023-07-13 Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides Chen, Anrong Zhao, Shiyin Han, Yang Zhou, Zhenghong Yang, Bo Xie, Lan-Gui Walczak, Maciej A. Zhu, Feng Chem Sci Chemistry C-Glycosyl peptides possess excellent metabolic stability and therapeutic properties and thus play critical roles in biological studies as well as drug discoveries. However, the limited accessibility of C-glycosyl amino acids has significantly hindered the broader research of their structural features and mode of action. Herein, for the first time we disclose a novel visible-light-driven radical conjugate addition of 1,4-dihydropyridine (DHP)-derived glycosyl esters with dehydroalanine derivatives, generating C-glycosyl amino acids and C-glycosyl peptides in good yields with excellent stereoselectivities. Redox-active glycosyl esters, as readily accessible and bench-stable radical precursors, could be easily converted to glycosyl radicals via anomeric C(sp(3))–O bond homolysis under mild conditions. Importantly, the generality and practicality of this transformation were fully demonstrated in >40 examples including 2-dexosugars, oligosaccharides, oligopeptides, and complex drug molecules. Given its mild reaction conditions, robust sugar scope, and high anomeric control and diastereoselectivity, the method presented herein could find widespread utility in the preparation of C(sp(3))-linked sugar-based peptidomimetics. The Royal Society of Chemistry 2023-06-20 /pmc/articles/PMC10337754/ /pubmed/37449071 http://dx.doi.org/10.1039/d3sc01995k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Anrong
Zhao, Shiyin
Han, Yang
Zhou, Zhenghong
Yang, Bo
Xie, Lan-Gui
Walczak, Maciej A.
Zhu, Feng
Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title_full Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title_fullStr Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title_full_unstemmed Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title_short Stereoselective alkyl C-glycosylation of glycosyl esters via anomeric C–O bond homolysis: efficient access to C-glycosyl amino acids and C-glycosyl peptides
title_sort stereoselective alkyl c-glycosylation of glycosyl esters via anomeric c–o bond homolysis: efficient access to c-glycosyl amino acids and c-glycosyl peptides
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337754/
https://www.ncbi.nlm.nih.gov/pubmed/37449071
http://dx.doi.org/10.1039/d3sc01995k
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