Design, Synthesis and X-Ray Structural Studies of Potent HIV-1 Protease Inhibitors Containing C-4 Substituted Tricyclic Hexahydro-Furofuran Derivatives as P2 Ligands.
Arun K GhoshSatish KovelaAshish SharmaDana ShahabiAjay K GhoshDenver R HopkinsMonika YadavMegan E JohnsonJohnson AgniswamyYuan-Fang WangShin-Ichiro HattoriNobuyo Higashi-KuwataManabu AokiMasayuki AmanoIrene T WeberHiroaki MitsuyaPublished in: ChemMedChem (2022)
The design, synthesis, X-ray structural, and biological evaluation of a series of highly potent HIV-1 protease inhibitors are reported herein. These inhibitors incorporate novel cyclohexane-fused tricyclic bis-tetrahydrofuran as P2 ligands in combination with a variety of P1 and P2' ligands. The inhibitor with a difluoromethylphenyl P1 ligand and a cyclopropylaminobenzothiazole P2' ligand exhibited the most potent antiviral activity. Also, it maintained potent antiviral activity against a panel of highly multidrug-resistant HIV-1 variants. The corresponding inhibitor with an enantiomeric ligand was significantly less potent in these antiviral assays. The new P2 ligands were synthesized in optically active form using enzymatic desymmetrization of meso-diols as the key step. To obtain molecular insight, two high-resolution X-ray structures of inhibitor-bound HIV-1 protease were determined and structural analyses have been highlighted.
Keyphrases
- high resolution
- antiretroviral therapy
- hiv positive
- hiv infected
- hiv testing
- human immunodeficiency virus
- hepatitis c virus
- hiv aids
- men who have sex with men
- multidrug resistant
- anti inflammatory
- dual energy
- drug resistant
- computed tomography
- mass spectrometry
- gene expression
- high throughput
- ionic liquid
- cystic fibrosis
- case control