Skip to content

In Silico Design of High-Affinity Antibody VRC34.01 for HIV-1 Fusion Peptide Recognition.

Jul 2026 · Journal of Physical Chemistry B · Vol 130 31, pp. 7892-7900 · 0 citations · 48 references
Medicine

TL;DR

Detailed molecular dynamics simulations combined with free energy perturbation calculations were used to systematically investigate the effects of point mutations on both the fusion peptide and the antibody, providing a quantitative and structural framework for understanding fusion peptide recognition.

Abstract

The broadly neutralizing antibody VRC34.01, isolated from donor N123, recognizes the N-terminal fusion peptide of the HIV-1 envelope glycoprotein gp41 and inhibits viral membrane fusion. A detailed molecular understanding of this interaction is essential for elucidating the basis of peptide recognition and guiding antibody optimization. Here, molecular dynamics (MD) simulations combined with free energy perturbation (FEP) calculations were used to systematically investigate the effects of point mutations on both the fusion peptide and the antibody. Mutational analyses of key peptide residues showed that most substitutions reduce binding affinity, indicating that the native peptide sequence is finely optimized for recognition by VRC34.01. Decomposition of binding free energies further reveals that these effects are primarily driven by changes in van der Waals interactions associated with hydrophobic packing at the interface. In contrast, in silico mutagenesis of antibody interfacial residues identifies a small subset of affinity-enhancing mutations, including A33I, L96I and S93T. Structural analyses indicate that these mutations improve binding by optimizing local hydrophobic packing without altering the overall binding mode. These results provide a quantitative and structural framework for understanding fusion peptide recognition and highlight a general strategy for antibody affinity optimization through subtle interfacial packing refinement.

View source

Similar papers

#protein folding Sep 2026

Antibody Hotspot-Centric de Novo Design of Peptide Inhibitors of Influenza A Virus Membrane Fusion

It is demonstrated that hotspot-guided design strategy, previously applied to proteins and d-peptides, can be effectively extended to l-peptide scaffolds, enabling the development of functional HA inhibitors informed by key residues at antigen–antibody interfaces.

R. U. Kadam, J. Juraszek, D. Branduardi et al. · 0 citations
Open access Sep 2026

A rational design strategy and validation for protease-resistant fusion-inhibitor antiviral peptides

Peptide-based fusion inhibitors are promising pharmaceuticals in the fight against enveloped viruses relying on membrane fusion for host infection. However, peptide therapeutic applications have long been hindered by their poor stability in vivo. Here, we discovered that peptide inhibitors with the wildtype sequence of...

Kailu Yang, Chu-Chu Wang, Francesco Topi et al. · 0 citations
Open access Sep 2026

Structure- and Dynamics-Driven Discovery of Small Molecule Inhibitors Targeting a Conserved Pocket near the Fusion Peptide in the Prefusion SARS-CoV‑2 S2 Glycoprotein Subunit

A structure- and dynamics-driven virtual screening to identify novel small-molecule inhibitors of SARS-CoV-2 cell entry by targeting a conserved pocket within the S2 subunit of the spike glycoprotein domain showed good conservation of the pharmacophore region among different SARS-related coronaviruses.

M. Leusciatti, S. Rinaldi, R. Arvia et al. · 0 citations
Aug 2026

Structure-Guided CDR3 Insertion Enables Affinity Maturation of Naive Single-Domain Antibodies against Small-Molecule Haptens.

A "structure-guided directed modification" strategy was developed that focuses on conformational tuning rather than simple side-chain replacement to overcome the structural and energetic barriers inherent in hapten recognition and provide a practical and efficient computational framework for assisting the rapid evoluti...

Zeng-Lin Yang, Guo-Qiang Li, Yuanyuan Ge et al. · 0 citations
Open access Jan 2026

Evaluation of the Therapeutic Potential of Natural Peptides Against Hemagglutinin–Esterase of Bovine Coronavirus Based on Molecular Dynamics Simulation Studies

The hemagglutinin–esterase (HE) protein of bovine coronavirus is required for virus attachment and entry into host cells. It is thus an attractive target for the development of peptide‐based antiviral agents. In the present study, molecular docking was performed to identify bioactive peptides with high binding potentia...

Mohammed Adnan Hashim Al-Battat, Marzieh Gharouni, M. Nassiri et al. · 0 citations
Conference Open access 2026

In Silico Analysis of SARS-CoV-2 Envelope Protein-IgM Antibody Complex

The SARS-CoV-2 envelope protein (protein E) is a small but multifunctional structural protein that plays a critical role in viral assembly, budding, and pathogenesis, making it an attractive target for therapeutic intervention. This study investigated the interaction between the SARS-CoV-2 envelope protein (wild type a...

Afifah Husni Riani, Surya Rosa Putra, Devy Maulidya Cahyani et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.