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Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41

[Image: see text] We previously described indole-containing compounds with the potential to inhibit HIV-1 fusion by targeting the hydrophobic pocket of transmembrane glycoprotein gp41. Here we report optimization and structure–activity relationship studies on the basic scaffold, defining the role of...

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Autores principales: Zhou, Guangyan, Sofiyev, Vladimir, Kaur, Hardeep, Snyder, Beth A., Mankowski, Marie K., Hogan, Priscilla A., Ptak, Roger G., Gochin, Miriam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4216203/
https://www.ncbi.nlm.nih.gov/pubmed/24856833
http://dx.doi.org/10.1021/jm500344y
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author Zhou, Guangyan
Sofiyev, Vladimir
Kaur, Hardeep
Snyder, Beth A.
Mankowski, Marie K.
Hogan, Priscilla A.
Ptak, Roger G.
Gochin, Miriam
author_facet Zhou, Guangyan
Sofiyev, Vladimir
Kaur, Hardeep
Snyder, Beth A.
Mankowski, Marie K.
Hogan, Priscilla A.
Ptak, Roger G.
Gochin, Miriam
author_sort Zhou, Guangyan
collection PubMed
description [Image: see text] We previously described indole-containing compounds with the potential to inhibit HIV-1 fusion by targeting the hydrophobic pocket of transmembrane glycoprotein gp41. Here we report optimization and structure–activity relationship studies on the basic scaffold, defining the role of shape, contact surface area, and molecular properties. Thirty new compounds were evaluated in binding, cell–cell fusion, and viral replication assays. Below a 1 μM threshold, correlation between binding and biological activity was diminished, indicating an amphipathic requirement for activity in cells. The most active inhibitor 6j exhibited 0.6 μM binding affinity and 0.2 μM EC(50) against cell–cell fusion and live virus replication and was active against T20 resistant strains. Twenty-two compounds with the same connectivity displayed a consensus pose in docking calculations, with rank order matching the biological activity. The work provides insight into requirements for small molecule inhibition of HIV-1 fusion and demonstrates a potent low molecular weight fusion inhibitor.
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spelling pubmed-42162032015-05-24 Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41 Zhou, Guangyan Sofiyev, Vladimir Kaur, Hardeep Snyder, Beth A. Mankowski, Marie K. Hogan, Priscilla A. Ptak, Roger G. Gochin, Miriam J Med Chem [Image: see text] We previously described indole-containing compounds with the potential to inhibit HIV-1 fusion by targeting the hydrophobic pocket of transmembrane glycoprotein gp41. Here we report optimization and structure–activity relationship studies on the basic scaffold, defining the role of shape, contact surface area, and molecular properties. Thirty new compounds were evaluated in binding, cell–cell fusion, and viral replication assays. Below a 1 μM threshold, correlation between binding and biological activity was diminished, indicating an amphipathic requirement for activity in cells. The most active inhibitor 6j exhibited 0.6 μM binding affinity and 0.2 μM EC(50) against cell–cell fusion and live virus replication and was active against T20 resistant strains. Twenty-two compounds with the same connectivity displayed a consensus pose in docking calculations, with rank order matching the biological activity. The work provides insight into requirements for small molecule inhibition of HIV-1 fusion and demonstrates a potent low molecular weight fusion inhibitor. American Chemical Society 2014-05-24 2014-06-26 /pmc/articles/PMC4216203/ /pubmed/24856833 http://dx.doi.org/10.1021/jm500344y Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Zhou, Guangyan
Sofiyev, Vladimir
Kaur, Hardeep
Snyder, Beth A.
Mankowski, Marie K.
Hogan, Priscilla A.
Ptak, Roger G.
Gochin, Miriam
Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title_full Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title_fullStr Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title_full_unstemmed Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title_short Structure–Activity Relationship Studies of Indole-Based Compounds as Small Molecule HIV-1 Fusion Inhibitors Targeting Glycoprotein 41
title_sort structure–activity relationship studies of indole-based compounds as small molecule hiv-1 fusion inhibitors targeting glycoprotein 41
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4216203/
https://www.ncbi.nlm.nih.gov/pubmed/24856833
http://dx.doi.org/10.1021/jm500344y
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