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Glycan Positioning Impacts HIV-1 Env Glycan-Shield Density, Function, and Recognition by Antibodies

Authors :
Qing Wei
Michael S. Saag
Olaf Kutsch
Alexandra Duverger
Stacy Hall
Sonya L. Heath
Peter D. Kwong
Audra A. Hargett
Chen-Hsiang Shen
Zina Moldoveanu
Milan Raska
Brandon F. Keele
Jan Novak
Reda Rawi
Barbora Knoppova
S. Katie Farney
Matthew B. Renfrow
Gwo-Yu Chuang
Rhubell Brown
Source :
iScience, Vol 23, Iss 11, Pp 101711-(2020), iScience
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

Summary HIV-1 envelope (Env) N-glycosylation impact virus-cell entry and immune evasion. How each glycan interacts to shape the Env-protein-sugar complex and affects Env function is not well understood. Here, analysis of two Env variants from the same donor, with differing functional characteristics and N-glycosylation-site composition, revealed that changes to key N-glycosylation sites affected the Env structure at distant locations and had a ripple effect on Env-wide glycan processing, virus infectivity, antibody recognition, and virus neutralization. Specifically, the N262 glycan, although not in the CD4-binding site, modulated Env binding to the CD4 receptor, affected Env recognition by several glycan-dependent neutralizing antibodies, and altered site-specific glycosylation heterogeneity, with, for example, N448 displaying limited glycan processing. Molecular-dynamic simulations visualized differences in glycan density and how specific oligosaccharide positions can move to compensate for a glycan loss. This study demonstrates how changes in individual glycans can alter molecular dynamics, processing, and function of the Env-glycan shield.<br />Graphical Abstract<br />Highlights • Two HIV-1 envelopes (Env) that differ in N-glycan composition were investigated • Changes in N-glycosylation had ripple effect on Env-wide glycan processing • Glycan changes impacted virus infectivity, antibody binding, and neutralization • These data revealed a functional role of glycan clusters in Env glycan shield<br />Biological Sciences; Biochemistry; Glycobiology; Microbiology; Virology

Details

ISSN :
25890042
Volume :
23
Database :
OpenAIRE
Journal :
iScience
Accession number :
edsair.doi.dedup.....b8870c4f6a68cdface1743c5316fe1f0
Full Text :
https://doi.org/10.1016/j.isci.2020.101711