Literature DB >> 16257172

A genome-wide, end-sequenced 129Sv BAC library resource for targeting vector construction.

David J Adams1, Michael A Quail, Tony Cox, Louise van der Weyden, Barbara D Gorick, Qin Su, Wei-in Chan, Rob Davies, James K Bonfield, Frances Law, Sean Humphray, Bob Plumb, Pentao Liu, Jane Rogers, Allan Bradley.   

Abstract

The majority of gene-targeting experiments in mice are performed in 129Sv-derived embryonic stem (ES) cell lines, which are generally considered to be more reliable at colonizing the germ line than ES cells derived from other strains. Gene targeting is reliant on homologous recombination of a targeting vector with the host ES cell genome. The efficiency of recombination is affected by many factors, including the isogenicity (H. te Riele et al., 1992, Proc. Natl. Acad. Sci. USA 89, 5128-5132) and the length of homologous sequence of the targeting vector and the location of the target locus. Here we describe the double-end sequencing and mapping of 84,507 bacterial artificial chromosomes (BACs) generated from AB2.2 ES cell DNA (129S7/SvEvBrd-Hprtb-m2). We have aligned these BACs against the mouse genome and displayed them on the Ensembl genome browser, DAS: 129S7/AB2.2. This library has an average insert size of 110.68 kb and average depth of genome coverage of 3.63- and 1.24-fold across the autosomes and sex chromosomes, respectively. Over 97% of the mouse genome and 99.1% of Ensembl genes are covered by clones from this library. This publicly available BAC resource can be used for the rapid construction of targeting vectors via recombineering. Furthermore, we show that targeting vectors containing DNA recombineered from this BAC library can be used to target genes efficiently in several 129-derived ES cell lines.

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Year:  2005        PMID: 16257172     DOI: 10.1016/j.ygeno.2005.08.003

Source DB:  PubMed          Journal:  Genomics        ISSN: 0888-7543            Impact factor:   5.736


  67 in total

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9.  Genome-wide end-sequenced BAC resources for the NOD/MrkTac() and NOD/ShiLtJ() mouse genomes.

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Journal:  Genomics       Date:  2009-11-10       Impact factor: 5.736

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Journal:  J Cell Biol       Date:  2009-10-19       Impact factor: 10.539

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