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A complementation method for functional analysis of mammalian genes

Our progress in understanding mammalian gene function has lagged behind that of gene identification. New methods for mammalian gene functional analysis are needed to accelerate the process. In yeast, the powerful genetic shuffle system allows deletion of any chromosomal gene by homologous recombinat...

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Detalles Bibliográficos
Autores principales: Gonzalez-Santos, Juana Maria, Cao, Huibi, Wang, Anan, Koehler, David R., Martin, Bernard, Navab, Roya, Hu, Jim
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1145195/
https://www.ncbi.nlm.nih.gov/pubmed/15944448
http://dx.doi.org/10.1093/nar/gni093
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author Gonzalez-Santos, Juana Maria
Cao, Huibi
Wang, Anan
Koehler, David R.
Martin, Bernard
Navab, Roya
Hu, Jim
author_facet Gonzalez-Santos, Juana Maria
Cao, Huibi
Wang, Anan
Koehler, David R.
Martin, Bernard
Navab, Roya
Hu, Jim
author_sort Gonzalez-Santos, Juana Maria
collection PubMed
description Our progress in understanding mammalian gene function has lagged behind that of gene identification. New methods for mammalian gene functional analysis are needed to accelerate the process. In yeast, the powerful genetic shuffle system allows deletion of any chromosomal gene by homologous recombination and episomal expression of a mutant allele in the same cell. Here, we report a method for mammalian cells, which employs a helper-dependent adenoviral (HD-Ad) vector to synthesize small hairpin (sh) RNAs to knock-down the expression of an endogenous gene by targeting untranslated regions (UTRs). The vector simultaneously expresses an exogenous version of the same gene (wild-type or mutant allele) lacking the UTRs for functional analysis. We demonstrated the utility of the method by using PRPF3, which encodes the human RNA splicing factor Hprp3p. Recently, missense mutations in PRPF3 were found to cause autosomal-dominant Retinitis Pigmentosa, a form of genetic eye diseases affecting the retina. We knocked-down endogenous PRPF3 in multiple cell lines and rescued the phenotype (cell death) with exogenous PRPF3 cDNA, thereby creating a genetic complementation method. Because Ad vectors can efficiently transduce a wide variety of cell types, and many tissues in vivo, this method could have a wide application for gene function studies.
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spelling pubmed-11451952005-06-09 A complementation method for functional analysis of mammalian genes Gonzalez-Santos, Juana Maria Cao, Huibi Wang, Anan Koehler, David R. Martin, Bernard Navab, Roya Hu, Jim Nucleic Acids Res Methods Online Our progress in understanding mammalian gene function has lagged behind that of gene identification. New methods for mammalian gene functional analysis are needed to accelerate the process. In yeast, the powerful genetic shuffle system allows deletion of any chromosomal gene by homologous recombination and episomal expression of a mutant allele in the same cell. Here, we report a method for mammalian cells, which employs a helper-dependent adenoviral (HD-Ad) vector to synthesize small hairpin (sh) RNAs to knock-down the expression of an endogenous gene by targeting untranslated regions (UTRs). The vector simultaneously expresses an exogenous version of the same gene (wild-type or mutant allele) lacking the UTRs for functional analysis. We demonstrated the utility of the method by using PRPF3, which encodes the human RNA splicing factor Hprp3p. Recently, missense mutations in PRPF3 were found to cause autosomal-dominant Retinitis Pigmentosa, a form of genetic eye diseases affecting the retina. We knocked-down endogenous PRPF3 in multiple cell lines and rescued the phenotype (cell death) with exogenous PRPF3 cDNA, thereby creating a genetic complementation method. Because Ad vectors can efficiently transduce a wide variety of cell types, and many tissues in vivo, this method could have a wide application for gene function studies. Oxford University Press 2005 2005-06-08 /pmc/articles/PMC1145195/ /pubmed/15944448 http://dx.doi.org/10.1093/nar/gni093 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Methods Online
Gonzalez-Santos, Juana Maria
Cao, Huibi
Wang, Anan
Koehler, David R.
Martin, Bernard
Navab, Roya
Hu, Jim
A complementation method for functional analysis of mammalian genes
title A complementation method for functional analysis of mammalian genes
title_full A complementation method for functional analysis of mammalian genes
title_fullStr A complementation method for functional analysis of mammalian genes
title_full_unstemmed A complementation method for functional analysis of mammalian genes
title_short A complementation method for functional analysis of mammalian genes
title_sort complementation method for functional analysis of mammalian genes
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1145195/
https://www.ncbi.nlm.nih.gov/pubmed/15944448
http://dx.doi.org/10.1093/nar/gni093
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