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Updated: Jun 26, 2026

Conformational Evaluation of HIV-1 Trimeric Envelope Glycoproteins Using a Cell-based ELISA Assay
Published on: September 14, 2014
Determinants flanking the CD4 binding loop modulate macrophage tropism of human immunodeficiency virus type 1 R5
Maria José Duenas-Decamp1, Paul J Peters, Dennis Burton
1Program in Molecular Medicine and Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.
Abstract:
Human immunodeficiency virus type 1 R5 viruses vary extensively in phenotype. Thus, R5 envelopes (env) in the brain tissue of individuals with neurological complications are frequently highly macrophage-tropic. Macrophage tropism correlates with the capacity of the envelope to exploit low CD4 levels for infection. In addition, the presence of an asparagine at residue 283 within the CD4 binding site has been associated with brain-derived envelopes, increased env-CD4 affinity, and enhanced macrophage tropism. Here, we identify additional envelope determinants of R5 macrophage tropism. We compared highly macrophage-tropic (B33) and non-macrophage-tropic (LN40) envelopes from brain and lymph node specimens of one individual. We first examined the role of residue 283 in macrophage tropism. Introduction of N283 into LN40 (T283N) conferred efficient macrophage infectivity. In contrast, substitution of N283 for the more conserved threonine in B33 had little effect on macrophage infection. Thus, B33 carried determinants for macrophage tropism that were independent of N283. We prepared chimeric B33/LN40 envelopes and used site-directed mutagenesis to identify additional determinants. The determinants of macrophage tropism that were identified included residues on the CD4 binding loop flanks that were proximal to CD4 contact residues and residues in the V3 loop. The same residues affected sensitivity to CD4-immunoglobulin G inhibition, consistent with an altered env-CD4 affinity. We predict that these determinants alter exposure of CD4 contact residues. Moreover, the CD4 binding loop flanks are variable and may contribute to a general mechanism for protecting proximal CD4 contact residues from neutralizing antibodies. Our results have relevance for env-based vaccines that will need to expose critical CD4 contact residues to the immune system.
Insights
Human immunodeficiency virus type 1 R5 viruses exhibit varied phenotypes. This study identified key envelope determinants, beyond residue 283, that enhance macrophage tropism and CD4 binding affinity, crucial for vaccine development.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Human immunodeficiency virus type 1 (HIV-1) R5 viruses display diverse phenotypes.
- R5 envelopes (env) from brain tissue in individuals with neurological complications often show high macrophage tropism.
- Macrophage tropism is linked to the envelope's ability to infect cells with low CD4 levels.
Purpose of the Study:
- To identify additional envelope determinants responsible for R5 macrophage tropism.
- To investigate the role of residue 283 in macrophage tropism and env-CD4 affinity.
- To understand how these determinants influence viral entry and potential vaccine strategies.
Main Methods:
- Comparison of highly macrophage-tropic (B33) and non-macrophage-tropic (LN40) envelopes from brain and lymph node specimens.
- Site-directed mutagenesis and preparation of chimeric envelopes to identify key residues.
- Assessment of macrophage infectivity and sensitivity to CD4-immunoglobulin G inhibition.
Main Results:
- Introduction of asparagine at residue 283 (N283) into LN40 conferred efficient macrophage infectivity.
- Residue 283 was not the sole determinant; B33 possessed independent macrophage tropism determinants.
- Additional determinants located on CD4 binding loop flanks and V3 loop were identified, affecting env-CD4 affinity.
Conclusions:
- HIV-1 R5 macrophage tropism is influenced by multiple envelope determinants, including those on CD4 binding loop flanks and the V3 loop.
- These determinants alter the exposure of CD4 contact residues, impacting viral entry and antibody neutralization.
- Understanding these mechanisms is vital for designing effective env-based HIV-1 vaccines.
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