1. Academic Validation
  2. Design and synthesis of HIV-1 protease inhibitors incorporating oxazolidinones as P2/P2' ligands in pseudosymmetric dipeptide isosteres

Design and synthesis of HIV-1 protease inhibitors incorporating oxazolidinones as P2/P2' ligands in pseudosymmetric dipeptide isosteres

  • J Med Chem. 2007 Sep 6;50(18):4316-28. doi: 10.1021/jm070284z.
G S Kiran Kumar Reddy 1 Akbar Ali Madhavi N L Nalam Saima Ghafoor Anjum Hong Cao Robin S Nathans Celia A Schiffer Tariq M Rana
Affiliations

Affiliation

  • 1 Chemical Biology Program and Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.
Abstract

A series of novel HIV-1 Protease Inhibitors based on two pseudosymmetric dipeptide isosteres have been synthesized and evaluated. The inhibitors were designed by incorporating N-phenyloxazolidinone-5-carboxamides into the hydroxyethylene and (hydroxyethyl)hydrazine dipeptide isosteres as P2 and P2' ligands. Compounds with (S)-phenyloxazolidinones attached at a position proximal to the central hydroxyl group showed low nM inhibitory activities against wild-type HIV-1 protease. Selected compounds were further evaluated for their inhibitory activities against a panel of multidrug-resistant protease variants and for their Antiviral potencies in MT-4 cells. The crystal structures of lopinavir (LPV) and two new inhibitors containing phenyloxazolidinone-based ligands in complex with wild-type HIV-1 protease have been determined. A comparison of the inhibitor-protease structures with the LPV-protease structure provides valuable insight into the binding mode of the new inhibitors to the protease Enzyme. Based on the crystal structures and knowledge of structure-activity relationships, new inhibitors can be designed with enhanced Enzyme inhibitory and Antiviral potencies.

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