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Human immunodeficiency virus type 1 envelope glycoprotein trimer, V2 apex region (HIV-1 Env V2 apex)

Target
HIV-1 Env V2 apex
Molecular classification
Viral glycoprotein, Type I membrane fusion protein, Trimeric envelope protein
01

Overview

The HIV-1 envelope glycoprotein (Env) trimer is the sole viral protein exposed on the surface of the HIV-1 virion, making it the primary target for neutralizing antibodies. The V2 apex region is a quaternary epitope located at the top of the Env trimer, formed by the association of the V1/V2 loops from three gp120 subunits (Sanders, R. W., & Moore, J. P. (2017). Nature Reviews Immunology, 17(10), 623-636). This region is a major site of vulnerability for broadly neutralizing antibodies (bNAbs) such as PG9, PG16, and PGT145, which recognize a combination of conserved protein residues and N-linked glycans (Walker, L. M., et al. (2009). Science, 326(5950), 285-289). Biologically, the V2 apex is involved in maintaining the trimer in a closed pre-fusion state, and its engagement by bNAbs prevents the conformational transitions required for viral entry into CD4+ T cells (Julien, J. P., et al. (2013). Science, 342(6165), 1477-1483). In the context of infection, the V2 apex is highly variable and heavily glycosylated, which allows the virus to escape most antibody responses; however, the discovery of bNAbs targeting this region has spurred significant interest in structure-based vaccine design and passive immunotherapy (Bonsignori, M., et al. (2011). Journal of Virology, 85(23), 12663-12674). Therapeutic challenges include the rapid evolution of the virus leading to mutational escape and the heterogeneity of the glycan shield across different HIV-1 clades.

Other names
V1/V2 loopV2 apex epitopeHIV-1 Env trimer apexgp120 V1/V2 domain
02

Mechanism of action

Broadly neutralizing antibodies bind to the V2 apex, stabilizing the pre-fusion closed conformation of the Env trimer and sterically hindering interaction with host cell receptors, thereby preventing viral entry.

03

Biological functions

Viral entryHost cell attachmentMembrane fusionImmune evasionTrimer stabilization
04

Disease associations

HIV-1 infectionAcquired immunodeficiency syndrome (AIDS)
05

Safety considerations

Viral mutational escapeGlycan shield interferenceHigh sequence variability among strainsPotential for low potency against specific clades
06

Interacting drugs

PG9

5 more in the full profile.

07

Biomarkers

HIV-1 viral load (plasma RNA)CD4+ T-lymphocyte countEnv sequence diversityPresence of V2-specific broadly neutralizing antibodies

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