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  Vol. 65 No. 8, August 2008 TABLE OF CONTENTS
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CRH Haplotype as a Factor Influencing Cerebrospinal Fluid Levels of Corticotropin-Releasing Hormone, Hypothalamic-Pituitary-Adrenal Axis Activity, Temperament, and Alcohol Consumption in Rhesus Macaques

Christina S. Barr, VMD, PhD; Rachel L. Dvoskin, PhD; Qiaoping Yuan, PhD; Robert H. Lipsky, PhD; Manisha Gupte, BS; Xian Hu, MD; Zhifeng Zhou, PhD; Melanie L. Schwandt, PhD; Stephen G. Lindell, MS; Megan McKee, BS; Michelle L. Becker, PhD; Mitchel A. Kling, MD; Phillip W. Gold, MD; Dee Higley, PhD; Markus Heilig, MD, PhD; Stephen J. Suomi, PhD; David Goldman, MD

Arch Gen Psychiatry. 2008;65(8):934-944.

Context  Both highly stress-reactive and novelty-seeking individuals are susceptible to alcohol use disorders. Variation in stress reactivity, exploration, and response to novelty have been attributed to differences in corticotropin-releasing hormone (CRH) system function. As such, CRH gene variation may influence risk for alcohol use and dependence.

Objective  To determine whether CRH variation influences relevant intermediate phenotypes, behavior, and alcohol consumption in rhesus macaques.

Design  We sequenced the rhesus macaque CRH locus (rhCRH) and performed cladistic clustering of haplotypes. In silico analysis, gel shift, and in vitro reporter assays were performed to identify functional variants. Cerebrospinal fluid (CSF) and blood samples were obtained, and levels of CRH and corticotropin (ACTH) were measured by radioimmunoassay. Behavioral data were collected from macaques during infancy. Among adolescent/adult animals, we recorded responses to an unfamiliar conspecific and measured levels of ethanol consumption.

Setting  National Institutes of Health Animal Center.

Participants  Rhesus macaques.

Main Outcome Measures  Animals were genotyped for a single-nucleotide polymorphism disrupting a glucocorticoid response element, rhCRH –2232 C>G, and the effects of this allele on CSF levels of CRH, plasma levels of ACTH, behavior, and ethanol consumption were assessed by analysis of variance.

Results  We show that –2232C>G alters DNAxprotein interactions and confers decreased sensitivity of the CRH promoter to glucocorticoids in vitro. Consistent with the known effects of glucocorticoids on CRH expression in the brain, carriers of the G allele had lower CSF levels of CRH but higher levels of ACTH. Infants carrying the G allele were more exploratory and bold, and among adolescent and adult male macaques, the G allele was associated with exploratory/bold responding to an unfamiliar male. Adults with the C/G genotype also exhibited increased alcohol consumption in the social group, a model for high-risk alcohol-seeking behavior.

Conclusion  Haplotypes that differ in terms of corticosteroid sensitivity have been identified in humans. Our data may suggest that functionally similar CRH variants could influence risk for externalizing disorders in human subjects.


Author Affiliations: Laboratories of Clinical and Translational Studies (Drs Barr, Dvoskin, Schwandt, Becker, and Heilig and Mss Gupte and McKee and Mr Lindell) and Neurogenetics (Drs Yuan, Lipsky, Hu, Zhou and Goldman), National Institute on Alcohol Abuse, and National Institute of Mental Health (Drs Kling and Gold), National Institutes of Health, Bethesda, and Laboratory of Comparative Ethology, National Institute of Child Health and Human Development, National Institutes of Health, Poolesville (Dr Suomi), Maryland; and Department of Psychology, Brigham Young University, Provo, Utah (Dr Higley). Dr Kling is now with Wyeth Research, Collegeville, Pennsylvania.



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Functional CRH variation increases stress-induced alcohol consumption in primates
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Proc. Natl. Acad. Sci. USA 2009;106:14593-14598.
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