Key result
PTB-specific SELEX RNA inhibits HCV IRES-driven translation in vitro, demonstrating cellular PTB requirement.
The study demonstrates the functional requirement of cellular PTB in HCV translation using a SELEX RNA strategy.
PTB-targeted SELEX RNA may offer a novel HCV antiviral approach; leaves open in vivo efficacy and clinical translation.
Polypyrimidine tract-binding protein (PTB) has been previously shown to physically interact with the hepatitis C virus (HCV) RNA genome at its 5'- and 3'-noncoding regions. Using high affinity SELEX RNA molecules, we present evidence for the functional requirement of PTB during HCV internal ribosome entry site (IRES)-controlled translation initiation. This study was carried out in rabbit reticulocyte translation lysates in which the HCV IRES-driven reporter RNA was introduced along with the PTB-specific SELEX RNA molecules. The SELEX RNAs specifically inhibited the HCV IRES function in the context of mono- and dicistronic mRNAs. The cap-dependent translation of a reporter (chloramphenicol acetyltransferase) RNA or naturally capped brome mosaic virus RNA, however, was not affected by the presence of SELEX during in vitro translation assays. The SELEX-mediated inhibition of the HCV IRES is shown to be relieved by the addition of recombinant human PTB in an add-back experiment. The in vivo requirement of PTB was further confirmed by cotransfection of Huh7 cells with reporter RNA and PTB-specific SELEX RNA. The HCV IRES activity was inhibited by the SELEX RNA in these cells, but not by an unrelated control RNA. Together, these results demonstrate the functional requirement of cellular PTB in HCV translation and further support the feasible use of SELEX RNA strategy in demonstrating the functional relevance of cellular protein(s) in complex biological processes.
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Anwar et al. (2000) studied Hepatitis C Virus (HCV) translation. PTB-specific SELEX RNA vs. unrelated control RNA was evaluated on HCV IRES-controlled translation initiation. PTB-specific SELEX RNA specifically inhibited HCV IRES-driven translation in vitro and in Huh7 cells, demonstrating the functional requirement of cellular PTB in HCV translation.
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