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PMID: 12954218 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The utility of siRNA transcripts produced by RNA polymerase i in down regulating viral gene expression and replication of negative- and positive-strand RNA viruses.

Virology ·Vol. 313 ·No. 2 ·2003-09-01 ·Pages 514-24

McCown M, Diamond MS, Pekosz A

Abstract

Short interfering double-stranded RNAs (siRNAs) expressed under the control of an RNA polymerase I promoter system were used to target gene expression of influenza A and West Nile virus. Decreased RNA and protein expression was induced in a sequence-specific manner-reducing sequence complementarity from 21 to 17 nucleotides abrogated the siRNA effect. Reduced M(2) expression resulted in a decrease in total and infectious influenza A virus production. WNV protein expression, genomic RNA, and infectious virus production were all dramatically reduced by siRNAs targeting two distinct viral sequences. The data demonstrate the utility of plasmid-driven siRNAs in regulating the expression of single viral genes, global viral gene expression, as a potential antiviral treatment, and as a genetic tool for viruses whose genomes are difficult to manipulate.

MeSH Terms
Animals Cell Line Cricetinae Gene Expression Regulation, Viral Humans Influenza A virus/genetics,physiology Mice RNA Interference RNA Polymerase I/metabolism RNA, Small Interfering/biosynthesis,genetics RNA, Viral/genetics Transcription, Genetic Transformation, Genetic Viral Matrix Proteins/metabolism Virus Replication West Nile virus/genetics,physiology
Chemicals
M-protein, influenza virus RNA, Small Interfering RNA, Viral Viral Matrix Proteins RNA Polymerase I
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
McCown Matthew
Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110-1093, USA.
Diamond Michael S
Pekosz Andrew
Article Info
Journal
Virology
Abbr.
Virology
ISSN
0042-6822
Published
2003-09-01
Pages
514-24
Language
English
Region
United States
NLM ID
0110674
Subset
IM
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