| Literature DB >> 35104013 |
Matteo Cattin1, Jean-François Bruxelle2,3, Kurtis Ng2, Markus Blaukopf1, Ralph Pantophlet2, Paul Kosma1.
Abstract
Oligomannose-type glycans on the spike protein of HIV-1 constitute relevant epitopes to elicit broadly neutralizing antibodies (bnAbs). Herein we describe an improved synthesis of α- and β-linked hepta- and nonamannosyl ligands that were subsequently converted into BSA and CRM197 neoglycoconjugates. We assembled the ligands from anomeric 3-azidopropyl spacer glycosides from select 3-O-protected thiocresyl mannoside donors. Chain extensions were achieved using [4+3] or [4+5] block synthesis of thiocresyl and trichloroacetimidate glycosyl donors. Subsequent global deprotection generated the 3-aminopropyl oligosaccharide ligands. ELISA binding data obtained with the β-anomeric hepta- and nonamannosyl conjugates with a selection of HIV-1 bnAbs showed comparable binding of both mannosyl ligands by Fab fragments yet lesser binding of the nonasaccharide conjugate by the corresponding IgG antibodies. These results support previous observations that a complete Man9 structure might not be the preferred antigenic binding motif for some oligomannose-specific antibodies, and have implications for glycoside designs to elicit oligomannose-targeted HIV-1-neutralizing antibodies.Entities:
Keywords: HIV/AIDS; glycoconjugates; glycosylation; oligomannosides; synthesis
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Year: 2022 PMID: 35104013 PMCID: PMC9108342 DOI: 10.1002/cbic.202200061
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.461