Critical Role of Cyclophilin A and Its Prolyl-Peptidyl Isomerase Activity in the Structure and Function of the Hepatitis C Virus Replication Complex
- 1 July 2009
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 83 (13) , 6554-6565
- https://doi.org/10.1128/jvi.02550-08
Abstract
Replication of hepatitis C virus (HCV) RNA occurs on intracellular membranes, and the replication complex (RC) contains viral RNA, nonstructural proteins, and cellular cofactors. We previously demonstrated that cyclophilin A (CyPA) is an essential cofactor for HCV infection and the intracellular target of cyclosporine9s anti-HCV effect. Here we investigate the mechanism by which CyPA facilitates HCV replication. Cyclosporine treatment specifically blocked the incorporation of NS5B into the RC without affecting either the total protein level or the membrane association of the protein. Other nonstructural proteins or viral RNAs in the RC were not affected. NS5B from the cyclosporine-resistant replicon was resistant to this disruption of RC incorporation. We also isolated membrane fractions from both naïve and HCV-positive cells and found that CyPA is recruited into membrane fractions in HCV-replicating cells via an interaction with RC-associated NS5B, which is sensitive to cyclosporine treatment. Finally, we introduced point mutations in the prolyl-peptidyl isomerase (PPIase) motif of CyPA and demonstrated a critical role of this motif in HCV replication in cDNA rescue experiments. We propose a model in which the incorporation of the HCV polymerase into the RC depends on its interaction with a cellular chaperone protein and in which cyclosporine inhibits HCV replication by blocking this critical interaction and the PPIase activity of CyPA. Our results provide a mechanism of action for the cyclosporine-mediated inhibition of HCV and identify a critical role of CyPA9s PPIase activity in the proper assembly and function of the HCV RC.This publication has 77 references indexed in Scilit:
- Chaperones Activate Hepadnavirus Reverse Transcriptase by Transiently Exposing a C-Proximal Region in the Terminal Protein Domain That Contributes to ε RNA BindingJournal of Virology, 2007
- A Rab-GAP TBC Domain Protein Binds Hepatitis C Virus NS5A and Mediates Viral ReplicationJournal of Virology, 2007
- A Functional Heat Shock Protein 90 Chaperone Is Essential for Efficient Flock House Virus RNA Polymerase Synthesis in Drosophila CellsJournal of Virology, 2007
- Identification of Determinants Involved in Initiation of Hepatitis C Virus RNA Synthesis by Using Intergenotypic Replicase ChimerasJournal of Virology, 2007
- Participation of Rab5, an Early Endosome Protein, in Hepatitis C Virus RNA Replication MachineryJournal of Virology, 2007
- An RNA-Binding Protein, hnRNP A1, and a Scaffold Protein, Septin 6, Facilitate Hepatitis C Virus ReplicationJournal of Virology, 2007
- Hepatitis C virus RNA replication is regulated by FKBP8 and Hsp90The EMBO Journal, 2006
- NIM811, a Cyclophilin Inhibitor, Exhibits Potent In Vitro Activity against Hepatitis C Virus Alone or in Combination with Alpha InterferonAntimicrobial Agents and Chemotherapy, 2006
- Production of infectious hepatitis C virus in tissue culture from a cloned viral genomeNature Medicine, 2005
- Dual Role of the 44/62 Protein as a Matchmaker Protein and DNA Polymerase Chaperone during Assembly of the Bacteriophage T4 Holoenzyme ComplexBiochemistry, 1996