Class III Phosphatidylinositol 4-Kinase Alpha and Beta Are Novel Host Factor Regulators of Hepatitis C Virus Replication
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Published:2009-10
Issue:19
Volume:83
Page:10058-10074
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ISSN:0022-538X
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Container-title:Journal of Virology
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language:en
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Short-container-title:J Virol
Author:
Borawski Jason1, Troke Philip1, Puyang Xiaoling1, Gibaja Veronica1, Zhao ShanChaun1, Mickanin Craig1, Leighton-Davies Juliet1, Wilson Christopher J.1, Myer Vic1, CornellaTaracido Ivan1, Baryza Jeremy1, Tallarico John1, Joberty Gerard2, Bantscheff Marcus2, Schirle Markus1, Bouwmeester Tewis2, Mathy Joanna E.1, Lin Kai1, Compton Teresa1, Labow Mark1, Wiedmann Brigitte1, Gaither L. Alex1
Affiliation:
1. Novartis Institutes for Biomedical Research, 250 Massachusetts Ave., Cambridge, Massachusetts 02139 2. Cellzome AG, Meyerhofstrasse 1, D-69117 Heidelberg, Germany
Abstract
ABSTRACT
Host factor pathways are known to be essential for hepatitis C virus (HCV) infection and replication in human liver cells. To search for novel host factor proteins required for HCV replication, we screened a subgenomic genotype 1b replicon cell line (Luc-1b) with a kinome and druggable collection of 20,779 siRNAs. We identified and validated several enzymes required for HCV replication, including class III phosphatidylinositol 4-kinases (PI4KA and PI4KB), carbamoyl-phosphate synthetase 2, aspartate transcarbamylase, and dihydroorotase (CAD), and mevalonate (diphospho) decarboxylase. Knockdown of PI4KA could inhibit the replication and/or HCV RNA levels of the two subgenomic genotype 1b clones (SG-1b and Luc-1b), two subgenomic genotype 1a clones (SG-1a and Luc-1a), JFH-1 genotype 2a infectious virus (JFH1-2a), and the genomic genotype 1a (FL-1a) replicon. In contrast, PI4KB knockdown inhibited replication and/or HCV RNA levels of Luc-1b, SG-1b, and Luc-1a replicons. The small molecule inhibitor, PIK93, was found to block subgenomic genotype 1b (Luc-1b), subgenomic genotype 1a (Luc-1a), and genomic genotype 2a (JFH1-2a) infectious virus replication in the nanomolar range. PIK93 was characterized by using quantitative chemical proteomics and in vitro biochemical assays to demonstrate PIK93 is a bone fide PI4KA and PI4KB inhibitor. Our data demonstrate that genetic or pharmacological modulation of PI4KA and PI4KB inhibits multiple genotypes of HCV and represents a novel druggable class of therapeutic targets for HCV infection.
Publisher
American Society for Microbiology
Subject
Virology,Insect Science,Immunology,Microbiology
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