Published March 10, 2026 | Version v1
Journal article

Mechanistic insights into lenacapavir-induced off-pathway HIV-1 capsid assembly

  • 1. University of Chicago
  • 2. Cambridge Biomedical Campus
  • 3. University of New South Wales

Description

The HIV-1 capsid is a fullerene cone composed of hexameric and pentameric capsid proteins (CA) that packages the viral genome and mediates nuclear entry. Lenacapavir (LEN), a potent molecular long-acting inhibitor developed by Gilead, disrupts capsid morphogenesis by binding a phenylalanine–glycine (FG) pocket at the interface between adjacent CA subunits. Interestingly, cellular polyanion inositol hexakisphosphate (IP6) promotes conical capsid assembly by coordinating the central pore, which is allosterically coupled to the FG pocket. Because LEN and IP6 engage overlapping structural elements, they can compete to influence the capsid assembly pathway and outcomes. Using coarse-grained molecular simulations, we show that LEN accelerates hexamer formation while suppressing pentamer incorporation, yielding malformed, multilayered, and incomplete capsids. Simulations incorporating a ribonucleoprotein model further reveal that LEN-treated capsids often fail to encapsulate RNA, indicating impaired maturation. Our calculations confirm that LEN impairs the formation of high-curvature CA lattice regions necessary for closure, supporting a model of off-pathway assembly as a mechanism of viral inhibition. These findings define the core mechanism by which a small-molecule inhibitor disrupts the much larger-scale HIV-1 morphogenesis and underscore general principles for targeting self-assembling multi-protein complexes.

Data availability

All CG models, input files, custom pair potentials and analysis scripts have been deposited in publicly accessible repositories https://github.com/manishg0703/MSCG-models and https://doi.org/10.5281/zenodo.18011280 (70, 71). Due to the large sizes of the trajectories and large number of files, the trajectories will be made available upon request. All data needed to evaluate the conclusions in the paper are present in the paper and/or the SI Appendix.

Additional details

Identifiers

DOI
10.1073/pnas.2524995123
Other
oai:uchicago.tind.io:16854

Funding

National Institute of Allergy and Infectious Diseases
U54AI170855
National Institute of Allergy and Infectious Diseases
R01AI178850
National Institutes of Health
F32AI186429

UChicago Information

Division(s)
Physical Sciences Division
Department(s)
Chemistry
Center(s) or Institute(s)
Chicago Center for Theoretical Chemistry, Institute for Biophysical Dynamics, James Franck Institute