4.6 Article

Access of antibody molecules to the conserved coreceptor binding site on glycoprotein gpl120 is sterically restricted on primary human immunodeficiency virus type 1

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JOURNAL OF VIROLOGY
卷 77, 期 19, 页码 10557-10565

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AMER SOC MICROBIOLOGY
DOI: 10.1128/JVI.77.19.10557-10565.2003

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  1. NIAID NIH HHS [AI42848, R37 AI024755, R01 AI041851, AI31783, R01 AI031783, AI39420, R01 AI039420, AI41851, P30 AI042848, R37 AI033292, R01 AI033292, R01 AI045357, AI33292, AI49566, AI45357, AI24755] Funding Source: Medline

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Anti-human immunodeficiency virus type I (HIV-1) antibodies whose binding to gp120 is enhanced by CD4 binding (CD4i antibodies) are generally considered nonneutralizing for primary HIV-1 isolates. However, a novel CD4i-specific Fab fragment, X5, has recently been found to neutralize a wide range of primary isolates. To investigate the precise nature of the extraordinary neutralizing ability of Fab X5, we evaluated the abilities of different forms (immunoglobulin G [IgG], Fab, and single-chain Fv) of X5 and other CD4i monoclonal antibodies to neutralize a range of primary HIV-1 isolates. Our results show that, for a number of isolates, the size of the neutralizing agent is inversely correlated with its ability to neutralize. Thus, the poor ability of CD4i-specific antibodies to neutralize primary isolates is due, at least in part, to steric factors that limit antibody access to the gp120 epitopes. Studies of temperature-regulated neutralization or fusion-arrested intermediates suggest that the steric effects are important in limiting the binding of IgG to the viral envelope glycoproteins after HIV-1 has engaged CD4 on the target cell membrane. The results identify hurdles in using CD4i epitopes as targets for antibody-mediated neutralization in vaccine design but also indicate that the CD4i regions could be efficiently targeted by small molecule entry inhibitors.

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