| Literature DB >> 27750202 |
Fatiha Benmansour1, Iuni Trist2, Bruno Coutard3, Etienne Decroly3, Gilles Querat4, Andrea Brancale2, Karine Barral5.
Abstract
With the aim to help drug discovery against dengue virus (DENV), a fragment-based drug design approach was applied to identify ligands targeting a main component of DENV replication complex: the NS5 AdoMet-dependent mRNA methyltransferase (MTase) domain, playing an essential role in the RNA capping process. Herein, we describe the identification of new inhibitors developed using fragment-based, structure-guided linking and optimization techniques. Thermal-shift assay followed by a fragment-based X-ray crystallographic screening lead to the identification of three fragment hits binding DENV MTase. We considered linking two of them, which bind to proximal sites of the AdoMet binding pocket, in order to improve their potency. X-ray crystallographic structures and computational docking were used to guide the fragment linking, ultimately leading to novel series of non-nucleoside inhibitors of flavivirus MTase, respectively N-phenyl-[(phenylcarbamoyl)amino]benzene-1-sulfonamide and phenyl [(phenylcarbamoyl)amino]benzene-1-sulfonate derivatives, that show a 10-100-fold stronger inhibition of 2'-O-MTase activity compared to the initial fragments. Copyright ÂEntities:
Keywords: Antiviral activity; Dengue virus; Fragment-linking strategy; N-Phenyl-[(phenylcarbamoyl)amino]benzene-1-sulfonamide derivatives; NS5 methyltransferase inhibitors; Phenyl [(phenylcarbamoyl)amino]benzene-1-sulfonate derivatives
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Year: 2016 PMID: 27750202 DOI: 10.1016/j.ejmech.2016.10.007
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514