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Rapid Optimization of the Metabolic Stability of a Human Immunodeficiency Virus Type-1 Capsid Inhibitor Using a Multistep Computational Workflow.

Megan E MeuserPoli Adi Narayana ReddyAlexej DickJean Marc MaurancyJoseph M SalvinoSimon Cocklin
Published in: Journal of medicinal chemistry (2021)
Poor metabolic stability of the human immunodeficiency virus type-1 (HIV-1) capsid (CA) inhibitor PF-74 is a major concern in its development toward clinical use. To improve on the metabolic stability, we employed a novel multistep computationally driven workflow, which facilitated the rapid design of improved PF-74 analogs in an efficient manner. Using this workflow, we designed three compounds that interact specifically with the CA interprotomer pocket, inhibit HIV-1 infection, and demonstrate enantiomeric preference. Moreover, using this workflow, we were able to increase the metabolic stability 204-fold in comparison to PF-74 in only three analog steps. These results demonstrate our ability to rapidly design CA compounds using a novel computational workflow that has improved metabolic stability over the parental compound. This workflow can be further applied to the redesign of PF-74 and other promising inhibitors with a stability shortfall.
Keyphrases
  • human immunodeficiency virus
  • antiretroviral therapy
  • hepatitis c virus
  • hiv infected
  • electronic health record
  • hiv positive
  • hiv aids
  • hiv testing
  • molecular docking
  • men who have sex with men
  • south africa