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Publication : Engineering a mouse balancer chromosome.

First Author  Zheng B Year  1999
Journal  Nat Genet Volume  22
Issue  4 Pages  375-8
PubMed ID  10431243 Mgi Jnum  J:56548
Mgi Id  MGI:1341531 Doi  10.1038/11949
Citation  Zheng B, et al. (1999) Engineering a mouse balancer chromosome. Nat Genet 22(4):375-8
abstractText  Balancer chromosomes are genetic reagents that are used in Drosophila melanogaster for stock maintenance and mutagenesis screens. Despite their utility, balancer chromosomes are rarely used in mice because they are difficult to generate using conventional methods. Here we describe the engineering of a mouse balancer chromosome with the Cre-loxP recombination system. The chromosome features a 24-centiMorgan (cM) inversion between Trp53 (also known as p53) and Wnt3 on mouse chromosome 11 that is recessive lethal and dominantly marked with a K14-Agouti transgene. When allelic to a wild-type chromosome, the inversion suppresses crossing over in the inversion interval, accompanied by elevated recombination in the flanking regions. The inversion functions as a balancer chromosome because it can be used to maintain a lethal mutation in the inversion interval as a self-sustaining trans-heterozygous stock. This strategy can be used to generate similar genetic reagents throughout the mouse genome. Engineering of visibly marked inversions and deficiencies is an important step toward functional analyses of the mouse genome and will facilitate large-scale mutagenesis programs.
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