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Chlorcyclizine Inhibits Viral Fusion of Hepatitis C Virus Entry by Directly Targeting HCV Envelope Glycoprotein 1

Authors :
Adam Rolt
John R. Lloyd
Juan Marugan
Christopher D. Ma
Seung Bum Park
Noel Southall
Daniel C. Talley
Xin Hu
Zongyi Hu
D. Eric Anderson
Derek Le
T. Jake Liang
Michael Houghton
Source :
Cell Chem Biol
Publication Year :
2019

Abstract

Summary Chlorcyclizine (CCZ) is a potent hepatitis C virus (HCV) entry inhibitor, but its molecular mechanism is unknown. Here, we show that CCZ directly targets the fusion peptide of HCV E1 and interferes with the fusion process. Generation of CCZ resistance-associated substitutions of HCV in vitro revealed six missense mutations in the HCV E1 protein, five being in the putative fusion peptide. A viral fusion assay demonstrated that CCZ blocked HCV entry at the membrane fusion step and that the mutant viruses acquired resistance to CCZ's action in blocking membrane fusion. UV cross-linking of photoactivatable CCZ-diazirine-biotin in both HCV-infected cells and recombinant HCV E1/E2 protein demonstrated direct binding to HCV E1 glycoprotein. Mass spectrometry analysis revealed that CCZ cross-linked to an E1 sequence adjacent to the putative fusion peptide. Docking simulations demonstrate a putative binding model, wherein CCZ binds to a hydrophobic pocket of HCV E1 and forms extensive interactions with the fusion peptide.

Details

ISSN :
24519448
Volume :
27
Issue :
7
Database :
OpenAIRE
Journal :
Cell chemical biology
Accession number :
edsair.doi.dedup.....94ac1d18db3cbec37d17e7469011e594