Step‐by‐step progress toward understanding the hepatitis C virus RNA helicase†
Open Access
- 25 May 2006
- journal article
- research article
- Published by Wolters Kluwer Health in Hepatology
- Vol. 43 (6) , 1392-1395
- https://doi.org/10.1002/hep.21200
Abstract
Helicases are a ubiquitous class of enzymes involved in nearly all aspects of DNA and RNA metabolism. Despite recent progress in understanding their mechanism of action, limited resolution has left inaccessible the detailed mechanisms by which these enzymes couple the rearrangement of nucleic acid structures to the binding and hydrolysis of ATP. Observing individual mechanistic cycles of these motor proteins is central to understanding their cellular functions. Here we follow in real time, at a resolution of two base pairs and 20 ms, the RNA translocation and unwinding cycles of a hepatitis C virus helicase (NS3) monomer. NS3 is a representative superfamily‐2 helicase essential for viral replication, and therefore a potentially important drug target. We show that the cyclic movement of NS3 is coordinated by ATP in discrete steps of 11 +/‐ 3 base pairs, and that actual unwinding occurs in rapid smaller substeps of 3.6 +/‐ 1.3 base pairs, also triggered by ATP binding, indicating that NS3 might move like an inchworm. This ATP‐coupling mechanism is likely to be applicable to other non‐hexameric helicases involved in many essential cellular functions. The assay developed here should be useful in investigating a broad range of nucleic acid translocation motors.Keywords
This publication has 23 references indexed in Scilit:
- Searching for a new anti-HCV therapy: Synthesis and properties of tropolone derivativesBiochemical and Biophysical Research Communications, 2006
- Structural and Biological Identification of Residues on the Surface of NS3 Helicase Required for Optimal Replication of the Hepatitis C VirusJournal of Biological Chemistry, 2006
- RNA translocation and unwinding mechanism of HCV NS3 helicase and its coordination by ATPNature, 2006
- Hepatitis C Virus Subgenomic Replicon Requires an Active NS3 RNA HelicaseJournal of Virology, 2006
- Specific Targeting of Hepatitis C Virus NS3 RNA Helicase. Discovery of the Potent and Selective Competitive Nucleotide-Mimicking Inhibitor QU663Biochemistry, 2005
- Periodic cycles of RNA unwinding and pausing by hepatitis C virus NS3 helicaseNature, 2004
- The Functional Interaction of the Hepatitis C Virus Helicase Molecules Is Responsible for Unwinding ProcessivityJournal of Biological Chemistry, 2004
- General Methods for Analysis of Sequential “n-step” Kinetic Mechanisms: Application to Single Turnover Kinetics of Helicase-Catalyzed DNA UnwindingBiophysical Journal, 2003
- Solution structure and backbone dynamics of an engineered arginine-rich subdomain 2 of the hepatitis C virus NS3 RNA helicaseJournal of Molecular Biology, 2001
- Product Release Is the Major Contributor tok cat for the Hepatitis C Virus Helicase-catalyzed Strand Separation of Short Duplex DNAJournal of Biological Chemistry, 1998