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Construction of cosmid contigs and high-resolution restriction mapping of the Huntington disease region of human chromosome 4
Authors:Zuo, Jlan   Robblns, Carolyn   Bahariloo, Slamak   Cox, David R.   Myers, Richard M.
Affiliation:1Departments of Physology and Psychiatry, The University of California at San Francisco 513 Pamassus Avenue, San Francisco, CA 94143-0444, USA
Abstract:The gene responsible for Huntington disease (HD) has been localizedto a 2.2 million base pair (Mbp) region between the loci D4S10and D4S98 on the short arm of human chromosome 4. As part ofa strategy originally designed to clone the gene based on itschromosomal location, we and others previously identified overlappingyeast artificial chromosome (YAC) clones covering most of thisregion. While these YAC clones were useful for initially obtaininglong-range clone continuity, a number of features of the YACsindicated that smaller clones are generally more useful in thesubsequent steps of the positional cloning strategy. In thispaper, we use these YAC clones to generate sets of overlappingcosmid clones covering most of the HD region. We Isolated alarge number of cosmids by screening a chromosome 4-specificcosmld library with labeled DNA from a minimal overlapping setof YAC clones. These cosmid clones were further analyzed byrestriction mapping and hybridization experiments, leading tothe assembly of 185 cosmids Into eleven contigs covering morethan 1.65 Mbp and to a fine-structure restriction map of theregion. Nine of these contigs cover 90 percent of the 1.7 Mbpsubregion between loci D4S125 and D4S98 where the HD gene isnow known to lie. The detailed restriction map and the cosmidclones should facilitate the identification and localizationof cDNAs and polymorphic markers, and they provide reagentsfor large scale DNA sequencing of this region of the human genome.Our results suggest that this strategy should be generally usefulfor converting YAC clones into cosmid contigs and generatinghigh-resolution restriction maps of genomioc regions of interest.
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