p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.

The tumor suppressor gene p53 is mutated or deleted in over 50% of human tumors. As functional p53 plays a pivotal role in protecting against cancer development, several strategies for restoring wild-type (wt) p53 function have been investigated. In this study, we applied an approach using gene repa...

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Main Authors: Frank Herrmann, Mireia Garriga-Canut, Rebecca Baumstark, Emmanuel Fajardo-Sanchez, James Cotterell, André Minoche, Heinz Himmelbauer, Mark Isalan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3111460?pdf=render
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spelling doaj-9771ac1413aa4df0a5ac59f358563c902020-11-25T02:15:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0166e2091310.1371/journal.pone.0020913p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.Frank HerrmannMireia Garriga-CanutRebecca BaumstarkEmmanuel Fajardo-SanchezJames CotterellAndré MinocheHeinz HimmelbauerMark IsalanThe tumor suppressor gene p53 is mutated or deleted in over 50% of human tumors. As functional p53 plays a pivotal role in protecting against cancer development, several strategies for restoring wild-type (wt) p53 function have been investigated. In this study, we applied an approach using gene repair with zinc finger nucleases (ZFNs). We adapted a commercially-available yeast one-hybrid (Y1H) selection kit to allow rapid building and optimization of 4-finger constructs from randomized PCR libraries. We thus generated novel functional zinc finger nucleases against two DNA sites in the human p53 gene, near cancer mutation 'hotspots'. The ZFNs were first validated using in vitro cleavage assays and in vivo episomal gene repair assays in HEK293T cells. Subsequently, the ZFNs were used to restore wt-p53 status in the SF268 human cancer cell line, via ZFN-induced homologous recombination. The frequency of gene repair and mutation by non-homologous end-joining was then ascertained in several cancer cell lines, using a deep sequencing strategy. Our Y1H system facilitates the generation and optimisation of novel, sequence-specific four- to six-finger peptides, and the p53-specific ZFN described here can be used to mutate or repair p53 in genomic loci.http://europepmc.org/articles/PMC3111460?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Frank Herrmann
Mireia Garriga-Canut
Rebecca Baumstark
Emmanuel Fajardo-Sanchez
James Cotterell
André Minoche
Heinz Himmelbauer
Mark Isalan
spellingShingle Frank Herrmann
Mireia Garriga-Canut
Rebecca Baumstark
Emmanuel Fajardo-Sanchez
James Cotterell
André Minoche
Heinz Himmelbauer
Mark Isalan
p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
PLoS ONE
author_facet Frank Herrmann
Mireia Garriga-Canut
Rebecca Baumstark
Emmanuel Fajardo-Sanchez
James Cotterell
André Minoche
Heinz Himmelbauer
Mark Isalan
author_sort Frank Herrmann
title p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
title_short p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
title_full p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
title_fullStr p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
title_full_unstemmed p53 Gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by Solexa sequencing.
title_sort p53 gene repair with zinc finger nucleases optimised by yeast 1-hybrid and validated by solexa sequencing.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The tumor suppressor gene p53 is mutated or deleted in over 50% of human tumors. As functional p53 plays a pivotal role in protecting against cancer development, several strategies for restoring wild-type (wt) p53 function have been investigated. In this study, we applied an approach using gene repair with zinc finger nucleases (ZFNs). We adapted a commercially-available yeast one-hybrid (Y1H) selection kit to allow rapid building and optimization of 4-finger constructs from randomized PCR libraries. We thus generated novel functional zinc finger nucleases against two DNA sites in the human p53 gene, near cancer mutation 'hotspots'. The ZFNs were first validated using in vitro cleavage assays and in vivo episomal gene repair assays in HEK293T cells. Subsequently, the ZFNs were used to restore wt-p53 status in the SF268 human cancer cell line, via ZFN-induced homologous recombination. The frequency of gene repair and mutation by non-homologous end-joining was then ascertained in several cancer cell lines, using a deep sequencing strategy. Our Y1H system facilitates the generation and optimisation of novel, sequence-specific four- to six-finger peptides, and the p53-specific ZFN described here can be used to mutate or repair p53 in genomic loci.
url http://europepmc.org/articles/PMC3111460?pdf=render
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