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Discovery and Characterization of Fluorine-Substituted Diarylpyrimidine Derivatives as Novel HIV-1 NNRTIs with Highly Improved Resistance Profiles and Low Activity for the hERG Ion Channel

  • Dongwei Kang
  • , Francesc Ruiz Figueras
  • , Da Feng
  • , Alyssa Pilch
  • , Tong Zhao
  • , Fenju Wei
  • , Zhao Wang
  • , Yanying Sun
  • , Zengjun Fang
  • , Erik De Clercq
  • , Christophe Pannecouque
  • , Eddy Arnold
  • , Xinyong Liu
  • , Peng Zhan

Research output: Contribution to journalArticlepeer-review

Abstract

Our previous efforts have led to the development of two potent NNRTIs, K-5a2 and 25a, exhibiting effective anti-HIV-1 potency and resistance profiles compared with etravirine. However, both inhibitors suffered from potent hERG inhibition and short half-life. In this article, with K-5a2 and etravirine as leads, series of novel fluorine-substituted diarylpyrimidine derivatives were designed via molecular hybridization and bioisosterism strategies. The results indicated 24b was the most active inhibitor, exhibiting broad-spectrum activity (EC50 = 3.60-21.5 nM) against resistant strains, significantly lower cytotoxicity (CC50= 155 μM), and reduced hERG inhibition (IC50 > 30 μM). Crystallographic studies confirmed the binding of 24b and the role of the fluorine atom, as well as optimal contacts of a nitrile group with the main-chain carbonyl group of H235. Furthermore, 24b showed longer half-life and favorable safety properties. All the results demonstrated that 24b has significant promise in circumventing drug resistance as an anti-HIV-1 candidate.

Original languageEnglish (US)
Pages (from-to)1298-1312
Number of pages15
JournalJournal of medicinal chemistry
Volume63
Issue number3
DOIs
StatePublished - Feb 13 2020

All Science Journal Classification (ASJC) codes

  • Molecular Medicine
  • Drug Discovery

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