4.7 Article

Genomic regions controlling corticosterone levels in rats

Journal

BIOLOGICAL PSYCHIATRY
Volume 55, Issue 6, Pages 634-641

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.biopsych.2003.11.005

Keywords

stress; addiction; Fischer 344; Lewis; Dark Agouti (DA); genetics; quantitative trait loci; hypothalamic-pituitary-adrenal axis; congenic; drug dependence

Funding

  1. NIAAA NIH HHS [R01 AA11330] Funding Source: Medline
  2. NIDA NIH HHS [K12-DA00366, P01 DA08227, R01 DA12849, K12-DA00167] Funding Source: Medline

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Background: The identification of genetic,factors controlling stress-responsiveness should advance the understanding of susceptibility to psychiatric illness. Methods: Rat strains, F344/NHsd and LEW/NHsd, which differ in measures of stress-responsiveness and behaviors modeling psychiatric disorders, were bred to generate F, progeny that were used in a quantitative trait loci QTL) analysis to identify genomic regions influencing late-afternoon corticosterone levels. Results: Regions on chromosomes 4 and 10 previously identified as influencing autoimmune phenomena were the most significant QTL observed, reaching suggestive significance at the genome-wide level. Congenic animals targeting these regions with F344/NHsd deoxyribonucleic acid on a DA/Bkl genomic background demonstrated corticosterone levels approximating those of F344/NHsd rats and differing significantly from DA/Bkl rats. Conclusions: Specific genomic regions influence both corticosterone levels and stress-related disease susceptibility. These findings not only represent the first identification of QTL controlling corticosterone levels but also suggest a mechanism underlying genetic differences in stress-responsiveness.

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