Inhibition of hepatitis C virus NS5A by fluoro-olefin based γ-turn mimetics

Fluoro-olefin 2 was designed to mimic intramolecular hydrogen bonds in NS5A inhibitors and demonstrated pico-molar anti-HCV activity in vitro. The HCV non-structural protein NS5A has been established as a viable target for the development of direct acting antiviral therapy. From computational modeli...

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Veröffentlicht in:Bioorganic & medicinal chemistry letters 2012-04, Vol.22 (8), p.2938-2942
Hauptverfasser: Chang, Wonsuk, Mosley, Ralph T., Bansal, Shalini, Keilman, Meg, Lam, Angela M., Furman, Phillip A., Otto, Michael J., Sofia, Michael J.
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Sprache:eng
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Zusammenfassung:Fluoro-olefin 2 was designed to mimic intramolecular hydrogen bonds in NS5A inhibitors and demonstrated pico-molar anti-HCV activity in vitro. The HCV non-structural protein NS5A has been established as a viable target for the development of direct acting antiviral therapy. From computational modeling studies strong intra-molecular hydrogen bonds were found to be a common structural moiety within known NS5A inhibitors that have low pico-molar replicon potency. Efforts to reproduce these γ-turn-like substructures provided a novel NS5A inhibitor based on a fluoro-olefin isostere. This fluoro-olefin containing inhibitor exhibited picomolar activity (EC50=79pM) against HCV genotype 1b replicon without measurable cytotoxicity. This level of activity is comparable to the natural peptide-based inhibitors currently under clinic evaluation, and demonstrates that a peptidomimetic approach can serve as a useful strategy to produce potent and structurally unique inhibitors of HCV NS5A.
ISSN:0960-894X
1464-3405
DOI:10.1016/j.bmcl.2012.02.051