Journal of Biological Chemistry · 2005 · 86 citations · 22 references
Viral ReplicationProtein FoldingMedicineImmature Hiv-1 ParticlesImmunologyHuman RetrovirusMolecular BiologyVirologyHiv-1 ParticlesAntiviral ResponseAntiviral Drug DevelopmentAntiviral TherapyViral Gag ProteinHivViral Structural ProteinHiv-1 MaturationAntiviral DrugDsb Associates
The small molecule 3-O-(3',3'-dimethylsuccinyl)-betulinic acid (DSB) potently inhibits human immunodeficiency virus, type 1 (HIV-1) replication by interfering with proteolytic cleavage of the viral Gag protein at a specific site. Here we have demonstrated that the antiviral mechanism involves the association of DSB with Gag at a 1:1 stoichiometry within immature HIV-1 particles. The binding was specific, as mutations in Gag that confer resistance to DSB inhibited the association, which could be competed by DSB but not by the inactive compound betulinic acid. The addition of DSB to purified immature viral cores inhibited the cleavage of Gag at the CA-SP1 junction in vitro, thus reproducing the effect of the drug when present during maturation of HIV-1 particles. Based on these findings, we propose a model in which a trimer of DSB associates with the CA-SP1 junction of adjacent subunits within the Gag polymer. The model may explain the ability of highly similar compounds to specifically target the seemingly unrelated steps of HIV-1 maturation and virus entry.
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Akio Adachi, Howard E. Gendelman, Scott Koenig et al. · Journal of Virology · 1986 · 2.9K citations · Full text
Primary Immunodeficiency, Viral Replication, Human Retrovirus +15
The stoichiometry of Gag protein in HIV-1
John A. G. Briggs, Martha N. Simon, Ingolf Gross et al. · Nature Structural & Molecular Biology · 2004 · 518 citations