| Literature DB >> 31252286 |
Herman Nikolayevskiy1, Marco Robello1, Michael T Scerba1, Evan H Pasternak1, Mrinmoy Saha1, Tracy L Hartman2, Caitlin A Buchholz2, Robert W Buckheit2, Stewart R Durell3, Daniel H Appella4.
Abstract
Mercaptobenzamide thioesters and thioethers are chemically simple HIV-1 maturation inhibitors with a unique mechanism of action, low toxicity, and a high barrier to viral resistance. A structure-activity relationship (SAR) profile based on 39 mercaptobenzamide prodrug analogs exposed divergent activity/toxicity roles for the internal and terminal amides. To probe the relationship between antiviral activity and toxicity, we generated an improved computational model for the binding of mercaptobenzamide thioesters (SAMTs) to the HIV-1 NCp7 C-terminal zinc finger, revealing the presence of a second low-energy binding orientation, hitherto undisclosed. Finally, using NMR-derived thiol-thioester exchange equilibrium constants, we propose that thermodynamics plays a role in determining the antiviral activity observed in the SAR profile.Entities:
Keywords: Activity limit; Antiviral; HIV; Mercaptobenzamide prodrug; Molecular dynamics; NCp7; SAMT
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Year: 2019 PMID: 31252286 PMCID: PMC8132308 DOI: 10.1016/j.ejmech.2019.06.020
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514