Structural characterization of a highly-potent V3-glycan broadly neutralizing antibody bound to natively-glycosylated HIV-1 envelope.

Barnes, Christopher O; Gristick, Harry B; Freund, Natalia T; Escolano, Amelia; Lyubimov, Artem Y; Hartweger, Harald; West, Anthony P; Cohen, Aina E et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Broadly neutralizing antibodies (bNAbs) isolated from HIV-1-infected individuals inform HIV-1 vaccine design efforts. Developing bNAbs with increased efficacy requires understanding how antibodies interact with the native oligomannose and complex-type N-glycan shield that hides most protein epitopes on HIV-1 envelope (Env). Here we present crystal structures, including a 3.8-Å X-ray free electron laser dataset, of natively glycosylated Env trimers complexed with BG18, the most potent V3/N332<sub>gp120</sub> glycan-targeting bNAb reported to date. Our structures show conserved contacts mediated by common D gene-encoded residues with the N332<sub>gp120</sub> glycan and the gp120 GDIR peptide motif, but a distinct Env-binding orientation relative to PGT121/10-1074 bNAbs. BG18's binding orientation provides additional contacts with N392<sub>gp120</sub> and N386<sub>gp120</sub> glycans near the V3-loop base and engages protein components of the V1-loop. The BG18-natively-glycosylated Env structures facilitate understanding of bNAb-glycan interactions critical for using V3/N332<sub>gp120</sub> bNAbs therapeutically and targeting their epitope for immunogen design.

Medical subject headings