ArticleBiophysical journal2024
Conformational transitions of the HIV-1 Gag polyprotein upon multimerization and gRNA binding.
Article in Biophysical journal, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed, 7 citations in OpenAlex.
- Psi RNA-specific Binding Promotes HIV-1 Gag Conformational Change Critical for Immature Viral Particle Assembly.bioRxiv : the preprint server for biology · 2026Article
- Mechanism of Phosphatidylserine Lipid Scrambling by Human SERINC3, an HIV-1 Restriction Factor.bioRxiv : the preprint server for biology · 2025Article
- Modeling reveals the strength of weak interactions in stacked-ring assembly.Biophysical journal · 2024Article
- Cooperative Membrane Binding of HIV-1 Matrix Proteins.The journal of physical chemistry. B · 2024Article
- Molecular dynamics simulations of HIV-1 matrix-membrane interactions at different stages of viral maturation.Biophysical journal · 2024Article
- G-quadruplex formation in RNA aptamers selected for binding to HIV-1 capsid.Frontiers in chemistry · 2024Article
- Computational identification and analysis of CNP0269688 as a natural product inhibitor disrupting the interaction between the HIV matrix domain and tRNA.Frontiers in chemistry · 2024Article
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Abstract
During the HIV-1 assembly process, the Gag polyprotein multimerizes at the producer cell plasma membrane, resulting in the formation of spherical immature virus particles. Gag-genomic RNA (gRNA) interactions play a crucial role in the multimerization process, which is yet to be fully understood. We performed large-scale all-atom molecular dynamics simulations of membrane-bound full-length Gag dimer, hexamer, and 18-mer. The inter-domain dynamic correlation of Gag, quantified by the heterogeneous elastic network model applied to the simulated trajectories, is observed to be altered by implicit gRNA binding, as well as the multimerization state of the Gag. The lateral dynamics of our simulated membrane-bound Gag proteins, with and without gRNA binding, agree with prior experimental data and help to validate our simulation models and methods. The gRNA binding is observed to affect mainly the SP1 domain of the 18-mer and the matrix-capsid linker domain of the hexamer. In the absence of gRNA binding, the independent dynamical motion of the nucleocapsid domain results in a collapsed state of the dimeric Gag. Unlike stable SP1 helices in the six-helix bundle, without IP6 binding, the SP1 domain undergoes a spontaneous helix-to-coil transition in the dimeric Gag. Together, our findings reveal conformational switches of Gag at different stages of the multimerization process and predict that the gRNA binding reinforces an efficient binding surface of Gag for multimerization, and also regulates the dynamic organization of the local membrane region itself.
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