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Large-Scale Synthesis of Man9GlcNAc2 High-Mannose Glycan and the Effect of the Glycan Core on Multivalent Recognition by HIV Antibody 2G12
Journal article   Peer reviewed

Large-Scale Synthesis of Man9GlcNAc2 High-Mannose Glycan and the Effect of the Glycan Core on Multivalent Recognition by HIV Antibody 2G12

Isaac Krauss
ACS infectious diseases, Vol.8(11), pp.2232-2241
10/24/2022
Handle:
https://hdl.handle.net/10192/61275
PMID: 36278940

Abstract

oligosaccharide synthesis glycopeptide synthesis HIV vaccines directed evolution biolayer interferometry HIV broadly neutralizing antibodies bnAb 2G12 Biochemistry Human Immunodeficiency Virus--HIV Infectious Diseases
Access to homogeneous high-mannose glycans in high-mg quantities is necessary for carbohydrate-based HIV vaccine development research. We have used directed evolution to design highly antigenic oligomannose clusters that are recognized in low-nM affinity by HIV antibodies. Herein we report an optimized large-scale synthesis of Man9GlcNAc2 including improved building block synthesis and a fully stereoselective 5 + 6 coupling, yielding 290 mg of glycan. We then use this glycan to study the effect of the GlcNAc2 core on the antigenicity of an evolved 2G12-binding glycopeptide, 10F2.

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