3EC0
High Resolution HIV-2 Protease Structure in Complex with Antiviral Inhibitor GRL-06579A
Summary for 3EC0
Entry DOI | 10.2210/pdb3ec0/pdb |
Related | 3EBZ |
Descriptor | Protease, (3AS,5R,6AR)-HEXAHYDRO-2H-CYCLOPENTA[B]FURAN-5-YL (2S,3S)-3-HYDROXY-4-(4-(HYDROXYMETHYL)-N-ISOBUTYLPHENYLSULFONAMIDO)-1-PHENYLBUTAN-2-YLCARBAMATE, IMIDAZOLE, ... (7 entities in total) |
Functional Keywords | hiv-2, aspartic protease, inhibitor, protease-inhibitor complex, hydrolase |
Biological source | Human immunodeficiency virus type 2 (ISOLATE ROD) |
Cellular location | Matrix protein p17: Virion (Potential). Capsid protein p24: Virion (Potential). Nucleocapsid protein p7: Virion (Potential). Reverse transcriptase/ribonuclease H: Virion (Potential). Integrase: Virion (Potential): P04584 |
Total number of polymer chains | 2 |
Total formula weight | 23392.59 |
Authors | Kovalevsky, A.Y.,Weber, I.T. (deposition date: 2008-08-28, release date: 2008-09-16, Last modification date: 2023-11-01) |
Primary citation | Kovalevsky, A.Y.,Louis, J.M.,Aniana, A.,Ghosh, A.K.,Weber, I.T. Structural evidence for effectiveness of darunavir and two related antiviral inhibitors against HIV-2 protease J.Mol.Biol., 384:178-192, 2008 Cited by PubMed Abstract: No drug has been targeted specifically for HIV-2 (human immunodeficiency virus type 2) infection despite its increasing prevalence worldwide. The antiviral HIV-1 (human immunodeficiency virus type 1) protease (PR) inhibitor darunavir and the chemically related GRL98065 and GRL06579A were designed with the same chemical scaffold and different substituents at P2 and P2' to optimize polar interactions for HIV-1 PR (PR1). These inhibitors are also effective antiviral agents for HIV-2-infected cells. Therefore, crystal structures of HIV-2 PR (PR2) complexes with the three inhibitors have been solved at 1.2-A resolution to analyze the molecular basis for their antiviral potency. Unusually, the crystals were grown in imidazole and zinc acetate buffer, which formed interactions with the PR2 and the inhibitors. Overall, the structures were very similar to the corresponding inhibitor complexes of PR1 with an RMSD of 1.1 A on main-chain atoms. Most hydrogen-bond and weaker C-H...O interactions with inhibitors were conserved in the PR2 and PR1 complexes, except for small changes in interactions with water or disordered side chains. Small differences were observed in the hydrophobic contacts for the darunavir complexes, in agreement with relative inhibition of the two PRs. These near-atomic-resolution crystal structures verify the inhibitor potency for PR1 and PR2 and will provide the basis for the development of antiviral inhibitors targeting PR2. PubMed: 18834890DOI: 10.1016/j.jmb.2008.09.031 PDB entries with the same primary citation |
Experimental method | X-RAY DIFFRACTION (1.18 Å) |
Structure validation
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