Position-dependent function for a tandem microRNA miR-122-binding site located in the hepatitis C virus RNA genome

MicroRNAs usually interact with 3' noncoding regions (3'NCRs) of target mRNAs leading to downregulation of mRNA expression. In contrast, liver-specific microRNA miR-122 interacts with the 5' end of the hepatitis C virus RNA genome, resulting in increased viral RNA abundance. We find t...

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Veröffentlicht in:Cell host & microbe 2008-07, Vol.4 (1), p.77-85
Hauptverfasser: Jopling, Catherine L, Schütz, Sylvia, Sarnow, Peter
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creator Jopling, Catherine L
Schütz, Sylvia
Sarnow, Peter
description MicroRNAs usually interact with 3' noncoding regions (3'NCRs) of target mRNAs leading to downregulation of mRNA expression. In contrast, liver-specific microRNA miR-122 interacts with the 5' end of the hepatitis C virus RNA genome, resulting in increased viral RNA abundance. We find that inserting the viral miR-122 binding site into the 3' noncoding region of a reporter mRNA leads to downregulation of mRNA expression, indicating that the location of the miR-122 binding site dictates its effect on gene regulation. Furthermore, we discovered an adjacent, second miR-122 binding site, separated from the first by a highly conserved 14-nucleotide sequence. Mutational analysis demonstrates that both miR-122 binding sites in a single viral genome are occupied by the microRNA and function cooperatively to regulate target gene expression. These findings set a paradigm for dual, position-dependent functions of tandem microRNA-binding sites. Targeting an oligomeric microRNA complex offers potential as an antiviral-intervention strategy.
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subjects 3' Untranslated Regions
5' Untranslated Regions
Binding Sites
DNA Mutational Analysis
Genes, Reporter
Genome, Viral
Hepacivirus - genetics
Hepatitis C virus
MicroRNAs - metabolism
RNA, Messenger - genetics
RNA, Messenger - metabolism
RNA, Viral - genetics
RNA, Viral - metabolism
title Position-dependent function for a tandem microRNA miR-122-binding site located in the hepatitis C virus RNA genome
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