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Inhibition of the interaction between NS3 protease and HCV IRES with a small peptide: a novel therapeutic strategy.


ABSTRACT: Recently, we have demonstrated that the protease domain of NS3 alone can bind specifically to hepatitis C virus (HCV) internal ribosome entry site (IRES) near the initiator AUG, dislodges human La protein and inhibits translation in favor of viral RNA replication. Here, by using a computational approach, the contact points of the protease on the HCV IRES were putatively mapped. A 30-mer NS3 peptide was designed from the predicted RNA-binding region that retained RNA-binding ability and also inhibited IRES-mediated translation. This peptide was truncated to 15 mer and this also demonstrated ability to inhibit HCV RNA-directed translation as well as replication. More importantly, its activity was tested in an in vivo mouse model by encapsulating the peptide in Sendai virus virosomes followed by intravenous delivery. The study demonstrates for the first time that the HCV NS3-IRES RNA interaction can be selectively inhibited using a small peptide and reports a strategy to deliver the peptide into the liver.

SUBMITTER: Ray U 

PROVIDER: S-EPMC3538298 | biostudies-literature | 2013 Jan

REPOSITORIES: biostudies-literature

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Inhibition of the interaction between NS3 protease and HCV IRES with a small peptide: a novel therapeutic strategy.

Ray Upasana U   Roy Chaitrali L CL   Kumar Anuj A   Mani Prashant P   Joseph Agnel P AP   Sudha G G   Sarkar Debi P DP   Srinivasan N N   Das Saumitra S  

Molecular therapy : the journal of the American Society of Gene Therapy 20120821 1


Recently, we have demonstrated that the protease domain of NS3 alone can bind specifically to hepatitis C virus (HCV) internal ribosome entry site (IRES) near the initiator AUG, dislodges human La protein and inhibits translation in favor of viral RNA replication. Here, by using a computational approach, the contact points of the protease on the HCV IRES were putatively mapped. A 30-mer NS3 peptide was designed from the predicted RNA-binding region that retained RNA-binding ability and also inhi  ...[more]

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