HCV IRES
A Small Yeast RNA Blocks Hepatitis C Virus Internal Ribosome Entry Site (HCV IRES)-Mediated Translation and Inhibits Replication of a Chimeric Poliovirus under Translational Control of the HCV IRES Element
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Structural Determinant of Human La Protein Critical for Internal Initiation of Translation of Hepatitis C Virus RNA
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Hepatitis C Virus Internal Ribosome Entry Site-Dependent Translation in Saccharomyces cerevisiae Is Independent of Polypyrimidine Tract-Binding Protein, Poly(rC)-Binding Protein 2, and La Protein
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journal.pone.0072791.PDF
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Poliovirus proves IRES istible in vivo
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Core Protein-Coding Sequence, but Not Core Protein, Modulates the Efficiency of Cap-Independent Translation Directed by the Internal Ribosome Entry Site of Hepatitis C Virus
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Mutational Analysis of the GB Virus B Internal Ribosome Entry Site
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Pestivirus Internal Ribosome Entry Site (IRES) Structure and Function: Elements in the 5′ Untranslated Region Important for IRES Function
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Inhibition of HCV translation by disrupting the structure and interactions of the viral CRE and 3’ X-tail
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RNA-Binding Protein hnRNP D Modulates Internal Ribosome Entry Site-Dependent Translation of Hepatitis C Virus RNA
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The duck hepatitis virus 5' UTR possesses HCV like IRES activity that is independent of eIF4F complex and modulated by downstream coding sequences
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Structure-function analysis of the equine hepacivirus 5′ untranslated region highlights the conservation of translational mechanisms across the hepaciviruses
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Differential Effects on the Hepatitis C Virus (HCV) Internal Ribosome Entry Site by Vitamin B12 and the HCV Core Protein
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Sequences in the 5′ Nontranslated Region of Hepatitis C Virus Required for RNA Replication
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Down regulation of IRES containing 5'UTR of HCV genotype 3a using siRNAs
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Structural Features of the Seneca Valley Virus Internal Ribosome Entry Site (IRES) Element: a Picornavirus with a Pestivirus-Like IRES
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EAW & IRES PARAPHRASING NOV 23
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Coding Sequences Enhance Internal Initiation of Translation by Hepatitis A Virus RNA In Vitro
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EAW IRES TASK & OUTLINE 12 6
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Factor-Independent Assembly of Elongation-Competent Ribosomes by an Internal Ribosome Entry Site Located in an RNA Virus That Infects Penaeid Shrimp
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