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Computational biology approach to uncover hepatitis C virus helicase operation
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作者 Holger Flechsig 《World Journal of Gastroenterology》 SCIE CAS 2014年第13期3401-3409,共9页
Hepatitis C virus(HCV)helicase is a molecular motor that splits nucleic acid duplex structures during viral replication,therefore representing a promising target for antiviral treatment.Hence,a detailed understanding ... Hepatitis C virus(HCV)helicase is a molecular motor that splits nucleic acid duplex structures during viral replication,therefore representing a promising target for antiviral treatment.Hence,a detailed understanding of the mechanism by which it operates would facilitate the development of efficient drug-assisted therapies aiming to inhibit helicase activity.Despite extensive investigations performed in the past,a thorough understanding of the activity of this important protein was lacking since the underlying internal conformational motions could not be resolved.Here we review investigations that have been previously performed by us for HCV helicase.Using methods of structure-based computational modelling it became possible to follow entire operation cycles of this motor protein in structurally resolved simulations and uncover the mechanism by which it moves along the nucleic acid and accomplishes strand separation.We also discuss observations from that study in the light of recent experimental studies that confirm our findings. 展开更多
关键词 Hepatitis C virus Viral replication Helicase protein Adenosine-triphosphate-induced operation Conformational motions Nucleic acid unzipping Computational biology Coarse-grained modelling elastic-network model
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