| Literature DB >> 31935327 |
Dongwei Kang1,2, F Xavier Ruiz3,4, Da Feng1, Alyssa Pilch3,4, Tong Zhao1, Fenju Wei1, Zhao Wang1, Yanying Sun1, Zengjun Fang5, Erik De Clercq6, Christophe Pannecouque6, Eddy Arnold3,4, Xinyong Liu1, Peng Zhan1.
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.Entities:
Year: 2020 PMID: 31935327 DOI: 10.1021/acs.jmedchem.9b01769
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446