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Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs

A number of groups have developed libraries of siRNAs to identify genes through functional genomics. While these studies have validated the approach of making functional RNAi libraries to understand fundamental cellular mechanisms, they require information and knowledge of existing sequences since t...

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Detalles Bibliográficos
Autores principales: Strat, Aurel, Gao, Lu, Utsuki, Tada, Cheng, Bing, Nuthalapaty, Sam, Mathis, J. Mike, Odaka, Yoshinobu, Giordano, Tony
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1540741/
https://www.ncbi.nlm.nih.gov/pubmed/16916791
http://dx.doi.org/10.1093/nar/gkl532
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author Strat, Aurel
Gao, Lu
Utsuki, Tada
Cheng, Bing
Nuthalapaty, Sam
Mathis, J. Mike
Odaka, Yoshinobu
Giordano, Tony
author_facet Strat, Aurel
Gao, Lu
Utsuki, Tada
Cheng, Bing
Nuthalapaty, Sam
Mathis, J. Mike
Odaka, Yoshinobu
Giordano, Tony
author_sort Strat, Aurel
collection PubMed
description A number of groups have developed libraries of siRNAs to identify genes through functional genomics. While these studies have validated the approach of making functional RNAi libraries to understand fundamental cellular mechanisms, they require information and knowledge of existing sequences since the RNAi sequences are generated synthetically. An alternative strategy would be to create an RNAi library from cDNA. Unfortunately, the complexity of such a library of siRNAs would make screening difficult. To reduce the complexity, longer dsRNAs could be used; however, concerns of induction of the interferon response and off-target effects of long dsRNAs have prevented their use. As a first step in creating such libraries, long dsRNA was expressed in mammalian cells. The 250 nt dsRNAs were capable of efficiently silencing a luciferase reporter gene that was stably transfected in MDA-MB-231 cells without inducing the interferon response or off-target effects any more than reported for siRNAs. In addition, a long dsRNA expressed in the same cell line was capable of silencing endogenous c-met expression and inhibited cell migration, whereas the dsRNA against luciferase had no effect on c-met or cell migration. The studies suggest that large dsRNA libraries are feasible and that functional selection of genes will be possible.
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spelling pubmed-15407412006-08-24 Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs Strat, Aurel Gao, Lu Utsuki, Tada Cheng, Bing Nuthalapaty, Sam Mathis, J. Mike Odaka, Yoshinobu Giordano, Tony Nucleic Acids Res Article A number of groups have developed libraries of siRNAs to identify genes through functional genomics. While these studies have validated the approach of making functional RNAi libraries to understand fundamental cellular mechanisms, they require information and knowledge of existing sequences since the RNAi sequences are generated synthetically. An alternative strategy would be to create an RNAi library from cDNA. Unfortunately, the complexity of such a library of siRNAs would make screening difficult. To reduce the complexity, longer dsRNAs could be used; however, concerns of induction of the interferon response and off-target effects of long dsRNAs have prevented their use. As a first step in creating such libraries, long dsRNA was expressed in mammalian cells. The 250 nt dsRNAs were capable of efficiently silencing a luciferase reporter gene that was stably transfected in MDA-MB-231 cells without inducing the interferon response or off-target effects any more than reported for siRNAs. In addition, a long dsRNA expressed in the same cell line was capable of silencing endogenous c-met expression and inhibited cell migration, whereas the dsRNA against luciferase had no effect on c-met or cell migration. The studies suggest that large dsRNA libraries are feasible and that functional selection of genes will be possible. Oxford University Press 2006 2006-08-11 /pmc/articles/PMC1540741/ /pubmed/16916791 http://dx.doi.org/10.1093/nar/gkl532 Text en © 2006 The Author(s)
spellingShingle Article
Strat, Aurel
Gao, Lu
Utsuki, Tada
Cheng, Bing
Nuthalapaty, Sam
Mathis, J. Mike
Odaka, Yoshinobu
Giordano, Tony
Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title_full Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title_fullStr Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title_full_unstemmed Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title_short Specific and nontoxic silencing in mammalian cells with expressed long dsRNAs
title_sort specific and nontoxic silencing in mammalian cells with expressed long dsrnas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1540741/
https://www.ncbi.nlm.nih.gov/pubmed/16916791
http://dx.doi.org/10.1093/nar/gkl532
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