Optimized High-Throughput Screen for Hepatitis C Virus Translation Inhibitors

Author:

Berry Katherine E.1,Peng Betty2,Koditek David2,Beeman Douglas2,Pagratis Nikos2,Perry Jason K.2,Parrish Jay2,Zhong Weidong2,Doudna Jennifer A.134,Shih I-hung2

Affiliation:

1. Department of Chemistry, University of California, Berkeley, CA

2. Gilead Sciences, Inc., Foster City, CA

3. Department of Molecular and Cell Biology, University of California, Berkeley, CA

4. Howard Hughes Medical Institute, Chevy Chase, MD

Abstract

Hepatitis C virus (HCV) is a considerable global health problem for which new classes of therapeutics are needed. The authors developed a high-throughput assay to identify compounds that selectively block translation initiation from the HCV internal ribosome entry site (HCV IRES). Rabbit reticulocyte lysate conditions were optimized to faithfully report on authentic HCV IRES-dependent translation relative to a 5′ capped mRNA control. The authors screened a library of ~430,000 small molecules for IRES inhibition, leading to ~1700 initial hits. After secondary counterscreening, the vast majority of hits proved to be luciferase and general translation inhibitors. Despite well-optimized in vitro translation conditions, in the end, the authors found no selective HCV IRES inhibitors but did discover a new scaffold of general translation inhibitor. The analysis of these molecules, as well we the finding that a large fraction of false positives resulted from off-target effects, highlights the challenges inherent in screens for RNA-specific inhibitors.

Publisher

Elsevier BV

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