Integrated YAC Contig Map of the Prader–Willi/Angelman Region on Chromosome 15q11–q13 with Average STS Spacing of 35 kb

  1. Susan L. Christian1,
  2. Nehal K. Bhatt1,
  3. Scott A. Martin1,
  4. James S. Sutcliffe2,
  5. Takeo Kubota3,
  6. Bing Huang4,
  7. Apiwat Mutirangura5,
  8. A. Craig Chinault6,
  9. Arthur L. Beaudet6,7, and
  10. David H. Ledbetter1,8
  1. 1Department of Human Genetics, The University of Chicago, Chicago, Illinois 60637 USA; 2Department of Molecular Physiology and Biophysics, Vanderbilt University School of Medicine, Nashville, Tennessee 37232 USA; 3Department of Hygiene and Medical Genetics, Shinshu University, Nagano, Japan; 4Genzyme Genetics, Long Beach, California 90806 USA; 5Genetics Unit, Department of Anatomy, Chulalongkorn University, Bangkok, Thailand; 6Department of Molecular and Human Genetics and 7Howard Hughes Medical Institute, Baylor College of Medicine, Houston, Texas 77030 USA

Abstract

Prader–Willi syndrome and Angelman syndrome are associated with parent-of-origin-specific abnormalities of chromosome 15q11–q13, most frequently a deletion of an ∼4-Mb region. Because of genomic imprinting, paternal deficiency of this region leads to PWS and maternal deficiency to AS. Additionally, this region is frequently involved in other chromosomal rearrangements including duplications, triplications, or supernumerary marker formation. A detailed physical map of this region is important for elucidating the genes and mechanisms involved in genomic imprinting, as well as for understanding the mechanism of recurrent chromosomal rearrangments. An initial YAC contig extended from D15S18 to D15S12 and was comprised of 23 YACs and 21 STSs providing an average resolution of about one STS per 200 kb. To close two gaps in this contig, YAC screening was performed using two STSs that flank the gap between D15S18 and 254B5R and three STSs located distal to the GABRA5–149A9L gap. Additionally, we developed 11 new STSs, including seven polymorphic markers. Although several groups have developed whole-genome genetic and radiation hybrid maps, the depth of coverage for 15q11–q13 has been somewhat limited and discrepancies in marker order exist between the maps. To resolve the inconsistencies and to provide a more detailed map order of STSs in this region, we have constructed an integrated YAC STS-based physical map of chromosome 15q11–q13 containing 118 YACs and 118 STSs, including 38 STRs and 49 genes/ESTs. Using an estimate of 4 Mb for the size of this region, the map provides an average STS spacing of 35 kb. This map provides a valuable resource for identification of disease genes localized to this region as well as a framework for complete DNA sequencing.

Footnotes

  • 8 Corresponding author.

  • E-MAIL dhl{at}genetics.uchicago.edu; FAX (773) 834-0505.

    • Received October 16, 1997.
    • Accepted January 5, 1998.
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