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Updated: May 20, 2026

Conformational Evaluation of HIV-1 Trimeric Envelope Glycoproteins Using a Cell-based ELISA Assay
Published on: September 14, 2014
Structure-guided alterations of the gp41-directed HIV-1 broadly neutralizing antibody 2F5 reveal new properties
Javier Guenaga1, Richard T Wyatt
1IAVI Neutralizing Antibody Center at The Scripps Research Institute, La Jolla, California, United States of America.
Abstract:
The broadly neutralizing HIV-1 antibody 2F5 recognizes an epitope in the gp41 membrane proximal external region (MPER). The MPER adopts a helical conformation as free peptide, as post-fusogenic forms of gp41, and when bound to the 4E10 monoclonal antibody (Mab). However, when bound to 2F5, the epitope is an extended-loop. The antibody-peptide structure reveals binding between the heavy and light chains with most the long, hydrophobic CDRH3 not contacting peptide. However, mutagenesis identifies this loop as critical for binding, neutralization and for putative hydrophobic membrane interactions. Here, we examined length requirements of the 2F5 CDRH3 and plasticity regarding binding and neutralization. We generated 2F5 variants possessing either longer or shorter CDRH3s and assessed function. The CDRH3 tolerated elongations and reductions up to four residues, displaying a range of binding affinities and retaining some neutralizing capacity. 2F5 antibody variants selective recognition of conformationally distinctive MPER probes suggests a new role for the CDRH3 loop in destabilizing the helical MPER. Binding and neutralization were enhanced by targeted tryptophan substitutions recapitulating fully the activities of the wild-type 2F5 antibody in a shorter CDRH3 variant. MPER alanine scanning revealed binding contacts of this variant downstream of the 2F5 core epitope, into the 4E10 epitope region. This variant displayed increased reactivity to cardiolipin-beta-2-glycoprotein. Tyrosine replacements maintained neutralization while eliminating cardiolipin-beta-2-glycoprotein interaction. The data suggest a new mechanism of action, important for vaccine design, in which the 2F5 CDRH3 contacts and destabilizes the MPER helix downstream of its core epitope to allow induction of the extended-loop conformation.
Insights
The HIV-1 antibody 2F5
Area of Science:
- Immunology
- Virology
- Structural Biology
Background:
- The broadly neutralizing HIV-1 antibody 2F5 targets the gp41 membrane proximal external region (MPER).
- The MPER typically adopts a helical conformation, but an extended-loop conformation when bound by 2F5.
- The antibody's CDRH3 loop, though not initially thought to contact the peptide, is critical for binding and neutralization.
Purpose of the Study:
- To investigate the length requirements and plasticity of the 2F5 CDRH3 loop.
- To understand the role of CDRH3 in MPER epitope recognition and HIV-1 neutralization.
- To explore mechanisms for enhancing antibody function and inform HIV vaccine design.
Main Methods:
- Generation and functional assessment of 2F5 variants with altered CDRH3 lengths.
- Site-directed mutagenesis, including tryptophan substitutions and alanine scanning of the MPER.
- Analysis of antibody binding affinity, neutralization capacity, and cross-reactivity.
Main Results:
- The 2F5 CDRH3 loop tolerated length variations, maintaining binding and neutralization capacity.
- Targeted substitutions enhanced binding and neutralization, with a shorter CDRH3 variant fully recapitulating wild-type activity.
- Specific variants showed altered MPER binding and reactivity to cardiolipin-beta-2-glycoprotein, with tyrosine replacements maintaining neutralization while reducing cross-reactivity.
Conclusions:
- The 2F5 CDRH3 loop plays a crucial role in destabilizing the helical MPER, inducing an extended-loop conformation.
- This mechanism is vital for antibody recognition and neutralization of HIV-1.
- Findings offer insights into antibody-epitope interactions and guide the development of effective HIV vaccines.
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