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1.
Bioorg Med Chem Lett ; 20(8): 2485-8, 2010 Apr 15.
Article in English | MEDLINE | ID: mdl-20304641

ABSTRACT

Design of non-nucleoside inhibitors of HIV-1 reverse transcriptase is being pursued with the assistance of free energy perturbation (FEP) calculations to predict relative free energies of binding. Extension of azole-containing inhibitors into an 'eastern' channel between Phe227 and Pro236 has led to the discovery of potent and structurally novel derivatives.


Subject(s)
Azoles/pharmacology , HIV-1/enzymology , Reverse Transcriptase Inhibitors/pharmacology , Azoles/chemistry , Models, Molecular , Reverse Transcriptase Inhibitors/chemistry
2.
J Am Chem Soc ; 130(29): 9492-9, 2008 Jul 23.
Article in English | MEDLINE | ID: mdl-18588301

ABSTRACT

Efficient optimization of an inactive 2-anilinyl-5-benzyloxadiazole core has been guided by free energy perturbation (FEP) calculations to provide potent non-nucleoside inhibitors of human immunodeficiency virus (HIV) reverse transcriptase (NNRTIs). An FEP "chlorine scan" was performed to identify the most promising sites for substitution of aryl hydrogens. This yielded NNRTIs 8 and 10 with activities (EC50) of 820 and 310 nM for protection of human T-cells from infection by wild-type HIV-1. FEP calculations for additional substituent modifications and change of the core heterocycle readily led to oxazoles 28 and 29, which were confirmed as highly potent anti-HIV agents with activities in the 10-20 nM range. The designed compounds were also monitored for possession of desirable pharmacological properties by use of additional computational tools. Overall, the trends predicted by the FEP calculations were well borne out by the assay results. FEP-guided lead optimization is confirmed as a valuable tool for molecular design including drug discovery; chlorine scans are particularly attractive since they are both straightforward to perform and highly informative.


Subject(s)
Azoles/chemistry , Azoles/pharmacology , HIV Reverse Transcriptase/antagonists & inhibitors , HIV-1/enzymology , Reverse Transcriptase Inhibitors/chemistry , Reverse Transcriptase Inhibitors/pharmacology , Azoles/chemical synthesis , HIV Reverse Transcriptase/chemistry , HIV Reverse Transcriptase/genetics , HIV-1/genetics , Models, Molecular , Monte Carlo Method , Mutation , Oxadiazoles/chemical synthesis , Oxadiazoles/chemistry , Oxadiazoles/pharmacology , Oxazoles/chemical synthesis , Oxazoles/chemistry , Oxazoles/pharmacology , Reverse Transcriptase Inhibitors/chemical synthesis , Structure-Activity Relationship , Thermodynamics
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