| Literature DB >> 29845534 |
Siew Pheng Lim1, Christian G Noble2, Shahul Nilar2,3, Pei-Yong Shi2,4, Fumiaki Yokokawa2.
Abstract
Flavivirus NS5 RNA-dependent RNA polymerase (RdRp) is an important drug target. Whilst a number of allosteric inhibitors have been described for Hepatitis C virus RdRp, few have been described for DENV RdRp. In addition, compound screening campaigns have not yielded suitable leads for this enzyme. Using fragment-based screening via X-ray crystallography, we identified a biphenyl acetic acid fragment that binds to a novel pocket of the dengue virus (DENV) RdRp, in the thumb/palm interface, close to its active site (termed "N pocket"). Structure-guided optimization yielded nanomolar inhibitors of the RdRp de novo initiation activity, with low micromolar EC50 in DENV cell-based assays. Compound-resistant DENV replicons exhibited amino acid mutations that mapped to the N pocket. This is the first report of a class of pan-serotype and cell-active DENV RdRp inhibitors and provides a significant opportunity for rational design of novel therapeutics against this proven antiviral target.Entities:
Keywords: Anti-viral; Dengue virus; Drug discovery; Flaviviruses; Mechanism of inhibition; RNA dependent RNA polymerase; Rational design; Resistance phenotype; X-ray crystallography
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Year: 2018 PMID: 29845534 DOI: 10.1007/978-981-10-8727-1_14
Source DB: PubMed Journal: Adv Exp Med Biol ISSN: 0065-2598 Impact factor: 2.622