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Dive into the research topics where André Choulika is active.

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Featured researches published by André Choulika.


Molecular and Cellular Biology | 1998

I-SceI-Induced Gene Replacement at a Natural Locus in Embryonic Stem Cells

Michel Cohen-Tannoudji; Sylvie Robine; André Choulika; Daniel Pinto; Fatima El Marjou; Charles Babinet; Daniel Louvard; Frédéric Jaisser

ABSTRACT Gene targeting is a very powerful tool for studying mammalian development and physiology and for creating models of human diseases. In many instances, however, it is desirable to study different modifications of a target gene, but this is limited by the generally low frequency of homologous recombination in mammalian cells. We have developed a novel gene-targeting strategy in mouse embryonic stem cells that is based on the induction of endogenous gap repair processes at a defined location within the genome by induction of a double-strand break (DSB) in the gene to be mutated. This strategy was used to knock in an NH2-ezrin mutant in the villin gene, which encodes an actin-binding protein expressed in the brush border of the intestine and the kidney. To induce the DSB, an I-SceI yeast meganuclease restriction site was first introduced by gene targeting to the villin gene, followed by transient expression of I-SceI. The repair of the ensuing DSB was achieved with high efficiency (6 × 10−6) by a repair shuttle vector sharing only a 2.8-kb region of homology with the villin gene and no negative selection marker. Compared to conventional gene-targeting experiments at the villin locus, this represents a 100-fold stimulation of gene-targeting frequency, notwithstanding a much lower length of homology. This strategy will be very helpful in facilitating the targeted introduction of several types of mutations within a gene of interest.


Archive | 2004

Custom-made meganuclease and use thereof

Sylvain Arnould; Sylvia Bruneau; Jean-Pierre Cabaniols; Patrick Chames; André Choulika; Philippe Duchateau; Jean-Charles Epinat; Agnès Gouble; Emmanuel Lacroix; Frédéric Paques; Christophe Perez-Michaut; Julianne Smith; David Sourdive


Archive | 2012

Use of meganucleases for inducing homologous recombination ex vivo and in toto in vertebrate somatic tissues and application thereof

Sylvain Arnould; Sylvia Bruneau; Jean-Pierre Cabaniols; Patrick Chames; André Choulika; Philippe Duchateau; Jean-Charles Epinat; Agnès Gouble; Emmanuel Lacroix; Frédéric Paques; Christophe Perez-Michaut; Julianne Smith; David Sourdive


Archive | 2003

HYBRID AND SINGLE CHAIN MEGANUCLEASES AND USE THEREOF

Sylvain Arnould; Patrick Chames; André Choulika; Jean-Charles Epinat; Emmanuel Lacroix


Archive | 2000

Gene repair involving the induction of double-stranded dna cleavage at a chromosomal target site

André Choulika; Richard C. Mulligan


Archive | 2014

Methods for engineering t cells for immunotherapy by using rna-guided cas nuclease system

Philippe Duchateau; André Choulika; Laurent Poirot


Archive | 2003

GENE REPAIR INVOLVING IN VIVO EXCISION OF TARGETING DNA

André Choulika; Richard C. Mulligan


Archive | 1998

I Sce I-induced gene replacement and gene conversion in embryonic stem cells

Frederic Jaisser; Michel Cohen-Tannoudji; Sylvie Robine; André Choulika; Daniel Louvard; Charles Babinet


Comptes Rendus De L Academie Des Sciences Serie Iii-sciences De La Vie-life Sciences | 1994

The yeast I-Sce I meganuclease induces site-directed chromosomal recombination in mammalian cells.

André Choulika; Perrin A; Dujon B; Nicolas Jf


Archive | 2008

Meganuclease variants cleaving a dna target sequence from the beta-2-microglobulin gene and uses thereof

Sylvain Arnould; André Choulika

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Emmanuel Lacroix

European Bioinformatics Institute

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Bernard Dujon

Centre national de la recherche scientifique

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