A structure-guided design strategy was used to improve the resistance profile of HIV-1 protease inhibitors by optimizing hydrogen bonding and van der Waals interactions with the protease while staying within the substrate envelope. Stereoisomers of 4-(1-hydroxyethyl)benzene and 4-(1,2-dihydroxyethyl)benzene moieties were explored as P2\u27 ligands providing pairs of diastereoisomers epimeric at P2\u27, which exhibited distinct potency profiles depending on the configuration of the hydroxyl group and size of the P1\u27 group. While compounds with the 4-(1-hydroxyethyl)benzene P2\u27 moiety maintained excellent antiviral potency against a panel of multidrug-resistant HIV-1 strains, analogues with the polar 4-(1,2-dihydroxyethyl)benzene moiety...
Substituted bis-THF containing protease inhibitors were designed to optimize ligand-enzyme interacti...
Drug resistance mutations in HIV-1 protease selectively alter inhibitor binding without significantl...
Protein-protein interactions are increasingly being studied as targets for therapeutic intervention ...
A structure-guided design strategy was used to improve the resistance profile of HIV-1 protease inhi...
Structure-based design, synthesis, and biological evaluation of a series of very potent HIV-1 protea...
The design, synthesis, and biological evaluation of a new class of HIV-1 protease inhibitors contain...
A series of new HIV-1 protease inhibitors (PIs) were designed using a general strategy that combines...
The design, synthesis, and biological evaluation of a series of HIV-1 protease inhibitors incorporat...
AbstractBackground: The HIV protease is essential for the life cycle of the virus and is an importan...
A series of novel HIV-1 protease inhibitors based on the (hydroxyethylamino)-sulfonamide isostere in...
The design, synthesis, and biological evaluation of a new class of HIV-1 protease inhibitors contain...
Here, we describe the design, synthesis, and biological evaluation of novel HIV-1 protease inhibitor...
Based upon molecular insights from the X-ray structures of inhibitor-bound HIV-1 protease complexes,...
We report the design, synthesis, X-ray structural studies, and biological evaluation of a novel seri...
Although there is growing literature on the structural nature of protein-protein interactions, the d...
Substituted bis-THF containing protease inhibitors were designed to optimize ligand-enzyme interacti...
Drug resistance mutations in HIV-1 protease selectively alter inhibitor binding without significantl...
Protein-protein interactions are increasingly being studied as targets for therapeutic intervention ...
A structure-guided design strategy was used to improve the resistance profile of HIV-1 protease inhi...
Structure-based design, synthesis, and biological evaluation of a series of very potent HIV-1 protea...
The design, synthesis, and biological evaluation of a new class of HIV-1 protease inhibitors contain...
A series of new HIV-1 protease inhibitors (PIs) were designed using a general strategy that combines...
The design, synthesis, and biological evaluation of a series of HIV-1 protease inhibitors incorporat...
AbstractBackground: The HIV protease is essential for the life cycle of the virus and is an importan...
A series of novel HIV-1 protease inhibitors based on the (hydroxyethylamino)-sulfonamide isostere in...
The design, synthesis, and biological evaluation of a new class of HIV-1 protease inhibitors contain...
Here, we describe the design, synthesis, and biological evaluation of novel HIV-1 protease inhibitor...
Based upon molecular insights from the X-ray structures of inhibitor-bound HIV-1 protease complexes,...
We report the design, synthesis, X-ray structural studies, and biological evaluation of a novel seri...
Although there is growing literature on the structural nature of protein-protein interactions, the d...
Substituted bis-THF containing protease inhibitors were designed to optimize ligand-enzyme interacti...
Drug resistance mutations in HIV-1 protease selectively alter inhibitor binding without significantl...
Protein-protein interactions are increasingly being studied as targets for therapeutic intervention ...