The Macroscopic Rate of Nucleic Acid Translocation by Hepatitis C Virus Helicase NS3h Is Dependent on Both Sugar and Base Moieties

被引:21
作者
Khaki, Ali R. [2 ]
Field, Cassandra [1 ]
Malik, Shuja [1 ]
Niedziela-Majka, Anita [2 ]
Leavitt, Stephanie A. [2 ]
Wang, Ruth [2 ]
Hung, Magdeleine [2 ]
Sakowicz, Roman [2 ]
Brendza, Katherine M. [2 ]
Fischer, Christopher J. [1 ]
机构
[1] Univ Kansas, Dept Phys & Astron, Lawrence, KS 66045 USA
[2] Gilead Sci Inc, Foster City, CA 94404 USA
基金
美国国家卫生研究院;
关键词
NS3; helicase; translocation; nucleic acid; ATPase; mechanism; SINGLE-STRANDED-DNA; MECHANISM; BINDING; RNA; PROTEIN; ATP; HYDRATION; MONOMER; DOMAIN; MOTOR;
D O I
10.1016/j.jmb.2010.04.065
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The nonstructural protein 3 helicase (NS3h) of hepatitis C virus is a 3'-to-5' superfamily 2 RNA and DNA helicase that is essential for the replication of hepatitis C virus. We have examined the kinetic mechanism of the translocation of NS3h along single-stranded nucleic acid with bases uridylate (rU), deoxyuridylate (dU), and deoxythymidylate (dT), and have found that the macroscopic rate of translocation is dependent on both the base moiety and the sugar moiety of the nucleic acid, with approximate macroscopic translocation rates of 3 nt s(-1) (oligo(dT)), 35 nt s(-1) (oligo(dU)), and 42 nt s(-1) (oligo(rU)), respectively. We found a strong correlation between the macroscopic translocation rates and the binding affinity of the translocating NS3h protein for the respective substrates such that weaker affinity corresponded to faster translocation. The values of K(0.5) for NS3h translocation at a saturating ATP concentration are as follows: 3.3+/-0.4 RM nucleotide (poly(dT)), 27+/-2 mu M nucleotide (poly(dU)), and 36+/-2 mu M nucleotide (poly(rU)). Furthermore, results of the isothermal titration of NS3h with these oligonucleotides suggest that differences in TA S are the principal source of differences in the affinity of NS3h binding to these substrates. Interestingly, despite the differences in macroscopic translocation rates and binding affinities, the ATP coupling stoichiometries for NS3h translocation were identical for all three substrates (similar to 0.5 ATP molecule consumed per nucleotide translocated). This similar periodicity of ATP consumption implies a similar mechanism for NS3h translocation along RNA and DNA substrates. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:354 / 378
页数:25
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