4.5 Article

Benzothiazole and Pyrrolone Flavivirus Inhibitors Targeting the Viral Helicase

Journal

ACS INFECTIOUS DISEASES
Volume 1, Issue 3, Pages 140-148

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/id5000458

Keywords

nonstructural protein 3; ATPase; motor protein; direct acting antiviral; Dengue fever; West Nile virus; yellow fever virus; positive sense single-stranded RNA ((+)ssRNA) virus

Funding

  1. National Institutes of Health Grants [R01 AI088001, U54 HG005031]
  2. UW-Milwaukee Research Foundation [5U54AI065357, 6142, 1R01AI114675]

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The flavivirus nonstructural protein 3 (NS3) is a protease and helicase, and on the basis of its similarity to its homologue encoded by the hepatitis C virus (HCV), the flavivirus NS3 might be a promising drug target. Few flavivirus helicase inhibitors have been reported, in part, because few specific inhibitors have been identified when nucleic acid unwinding assays have been used to screen for helicase inhibitors. To explore the possibility that compounds inhibiting NS3-catalyzed ATP hydrolysis might function as antivirals even if they do not inhibit RNA unwinding in vitro, we designed a robust dengue virus (DENY) NS3 ATPase assay suitable for high throughput screening. Members of two classes of inhibitory compounds were further tested in DENV helicase-catalyzed RNA unwinding assays, assays monitoring HCV helicase action, subgenomic DENV replicon assays, and cell viability assays and for their ability to inhibit West Nile virus (Kunjin subtype) replication in cells. The first class contained analogues of NIH molecular probe ML283, a benzothiazole oligomer derived from the dye primuline, and they also inhibited HCV helicase and DENV NS3-catalyzed RNA unwinding. The most intriguing ML283 analogue inhibited DENV NS3 with an IC50 value of 500 nM and was active against the DENY replicon. The second class contained specific DENV ATPase inhibitors that did not inhibit DENV RNA unwinding or reactions catalyzed by HCV helicase. Members of this class contained a 4-hydroxy-3-(5-rnethylfuran-2-carbonyl)-2H-pyrrol-5-one scaffold, and about 20 mu M of the most potent pyrrolone inhibited both DENV replicons and West Nile virus replication in cells by 50%.

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