Design and development of highly potent HIV-1 protease inhibitors with a crown-like oxotricyclic core as the P2-ligand to combat multidrug-resistant HIV variants

AK Ghosh, KV Rao, PR Nyalapatla… - Journal of medicinal …, 2017 - ACS Publications
AK Ghosh, KV Rao, PR Nyalapatla, HL Osswald, CD Martyr, M Aoki, H Hayashi…
Journal of medicinal chemistry, 2017ACS Publications
Design, synthesis, and evaluation of a new class of exceptionally potent HIV-1 protease
inhibitors are reported. Inhibitor 5 displayed superior antiviral activity and drug-resistance
profiles. In fact, this inhibitor showed several orders of magnitude improved antiviral activity
over the FDA approved drug darunavir. This inhibitor incorporates an unprecedented 6–5–5
ring-fused crown-like tetrahydropyranofuran as the P2 ligand and an aminobenzothiazole as
the P2′ ligand with the (R)-hydroxyethylsulfonamide isostere. The crown-like P2 ligand for …
Design, synthesis, and evaluation of a new class of exceptionally potent HIV-1 protease inhibitors are reported. Inhibitor 5 displayed superior antiviral activity and drug-resistance profiles. In fact, this inhibitor showed several orders of magnitude improved antiviral activity over the FDA approved drug darunavir. This inhibitor incorporates an unprecedented 6–5–5 ring-fused crown-like tetrahydropyranofuran as the P2 ligand and an aminobenzothiazole as the P2′ ligand with the (R)-hydroxyethylsulfonamide isostere. The crown-like P2 ligand for this inhibitor has been synthesized efficiently in an optically active form using a chiral Diels–Alder catalyst providing a key intermediate in high enantiomeric purity. Two high resolution X-ray structures of inhibitor-bound HIV-1 protease revealed extensive interactions with the backbone atoms of HIV-1 protease and provided molecular insight into the binding properties of these new inhibitors.
ACS Publications
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