Examination of Candidate Chromosomal Regions for Type 2 Diabetes Reveals a Susceptibility Locus on Human Chromosome 8p23.1

  1. Marcus G. Pezzolesi1,
  2. Moonsuk Nam124,
  3. Terumasa Nagase12,
  4. Tomasz Klupa12,
  5. Jonathon S. Dunn1,
  6. Wojciech M. Mlynarski12,
  7. Stephen S. Rich3,
  8. James H. Warram1 and
  9. Andrzej S. Krolewski12
  1. 1Section on Genetics and Epidemiology, Joslin Diabetes Center, Boston, Massachusetts
  2. 2Department of Medicine, Harvard Medical School, Boston, Massachusetts
  3. 3Department of Public Health Sciences, Wake Forest University School of Medicine, Winston-Salem, North Carolina
  4. 4Department of Internal Medicine, College of Medicine, Inha University, Incheon, Republic of Korea
  1. Address correspondence and reprint requests to Andrzej S. Krolewski, MD, PhD, Section on Genetics and Epidemiology, Joslin Diabetes Center, One Joslin Place, Boston, MA 02215. E-mail: andrzej.krolewski{at}joslin.harvard.edu

Abstract

In a panel of large Caucasian pedigrees, we genotyped markers in eight chromosomal regions previously reported as supporting linkage with type 2 diabetes. We previously reported significant linkage on chromosome 20q (maximum logarithm of odds score [MLS] = 2.79) in this panel. In the present analysis, candidate regions on 1q, 2q, 3q, 5q, 9q, and 10q yielded little evidence for linkage; a region on 2p (MLS = 1.64, P = 0.01 at position 9.0 cM) gave suggestive evidence of linkage; and a region on 8p (MLS = 3.67, P = 2.8 × 10−5, at position 7.6 cM) gave significant evidence of linkage. Conditional analyses were performed for both 2p and 8p regions and the region reported on 20q. The MLS for 2p increased from 1.64 to 1.79 (empirical P = 0.142) when conditioned for heterogeneity on 20q. The case was similar for 8p, where the MLS increased from 3.67 to 4.51 (empirical P = 0.023) when conditioned on families without evidence of linkage at 20q. In conclusion, our data support a type 2 diabetes susceptibility locus on chromosome 8p that appears to be independent from other susceptibility loci. Although we were able to replicate linkage in our pedigrees on chromosome 2p, we did not find evidence of linkage for regions on 1q, 2q, 3q, 5q, 9q, or 10q.

Footnotes

  • M.G.P. and M.N. contributed equally to this work.

  • Additional information for this article can be found in online appendixes available at http://diabetes.diabetesjournals.org.

    • Accepted October 29, 2003.
    • Received March 24, 2003.
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