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PMID: 15806107 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, U.S. Gov't, P.H.S.

A Brownian motor mechanism of translocation and strand separation by hepatitis C virus helicase.

Nature structural & molecular biology ·Vol. 12 ·No. 5 ·2005-05-00 ·Pages 429-35

Levin MK, Gurjar M, Patel SS

Abstract

Helicases translocate along their nucleic acid substrates using the energy of ATP hydrolysis and by changing conformations of their nucleic acid-binding sites. Our goal is to characterize the conformational changes of hepatitis C virus (HCV) helicase at different stages of ATPase cycle and to determine how they lead to translocation. We have reported that ATP binding reduces HCV helicase affinity for nucleic acid. Now we identify the stage of the ATPase cycle responsible for translocation and unwinding. We show that a rapid directional movement occurs upon helicase binding to DNA in the absence of ATP, resulting in opening of several base pairs. We propose that HCV helicase translocates as a Brownian motor with a simple two-stroke cycle. The directional movement step is fueled by single-stranded DNA binding energy while ATP binding allows for a brief period of random movement that prepares the helicase for the next cycle.

MeSH Terms
Base Pairing DNA/chemistry,metabolism Hepacivirus/enzymology,genetics Kinetics Models, Biological Protein Transport RNA Helicases/genetics,metabolism Substrate Specificity Viral Nonstructural Proteins/genetics,metabolism
Chemicals
NS3 protein, hepatitis C virus Viral Nonstructural Proteins DNA RNA Helicases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Levin Mikhail K
UMDNJ-Robert Wood Johnson Medical School, Department of Biochemistry, 675 Hoes Lane, Piscataway, New Jersey 08854, USA.
Gurjar Madhura
Patel Smita S
Article Info
Journal
Nature structural & molecular biology
Abbr.
Nat Struct Mol Biol
ISSN
1545-9993
Published
2005-05-00
Epub
2005-00-03
Pages
429-35
Language
English
Region
United States
NLM ID
101186374
Subset
IM
Grants
NIGMS NIH HHS · GM55310 · United States
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