1. Identification of alternative binding sites for inhibitors of HIV-1 ribonuclease H through comparative analysis of virtual enrichment studies.
- Author
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Felts AK, Labarge K, Bauman JD, Patel DV, Himmel DM, Arnold E, Parniak MA, and Levy RM
- Subjects
- Allosteric Site drug effects, Binding Sites, Catalytic Domain drug effects, Computer Simulation, Glutamine chemistry, Glutamine genetics, HIV Infections drug therapy, HIV Infections virology, HIV Reverse Transcriptase analysis, HIV Reverse Transcriptase chemistry, Humans, Hydrazines chemistry, Hydrazines pharmacology, Hydrazones chemistry, Hydrazones pharmacology, Models, Molecular, Protein Binding, Protein Structure, Tertiary, ROC Curve, Reverse Transcriptase Inhibitors chemistry, Reverse Transcriptase Inhibitors pharmacology, Ribonuclease H analysis, Ribonuclease H chemistry, Small Molecule Libraries, Glutamine metabolism, HIV Reverse Transcriptase metabolism, HIV-1 chemistry, HIV-1 enzymology, Hydrazines metabolism, Hydrazones metabolism, Reverse Transcriptase Inhibitors metabolism, Ribonuclease H metabolism
- Abstract
The ribonuclease H (RNase H) domain on the p66 monomer of HIV-1 reverse transcriptase enzyme has become a target for inhibition. The active site is one potential binding site, but other RNase H sites can accommodate inhibitors. Using a combination of experimental and computational studies, potential new binding sites and binding modes have been identified. Libraries of compounds were screened with an experimental assay to identify actives without knowledge of the binding site. The compounds were computationally docked at putative binding sites. Based on positive enrichment of natural-product actives relative to the database of compounds, we propose that many inhibitors bind to an alternative, potentially allosteric, site centered on Q507 of p66. For a series of hydrazone compounds, a small amount of positive enrichment was obtained when active compounds were bound by induced-fit docking at the interface between the DNA:RNA substrate and the RNase H domain near residue Q500.
- Published
- 2011
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