4.7 Article

BDNF Val66Met Impairs Fluoxetine-Induced Enhancement of Adult Hippocampus Plasticity

Journal

NEUROPSYCHOPHARMACOLOGY
Volume 37, Issue 5, Pages 1297-1304

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/npp.2011.318

Keywords

BDNF Val66Met SNP; hippocampus; neurogenesis; plasticity; fluoxetine; LTP

Funding

  1. Sackler Institute
  2. New York Community Trust
  3. Irma T. Hirschl/Monique Weill-Caulier Trust
  4. International Mental Health Research Organization
  5. Burroughs Wellcome Foundation
  6. Pritzker Consortiun
  7. Brain & Behavior Research Foundation-NARSAD
  8. National Institutes of Health [HD055177, NS21072, MH060478, NS052819, MH088814]

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Recently, a single-nucleotide polymorphism (SNP) in the brain-derived neurotrophic factor (BDNF) gene (BDNF Val66Met) has been linked to the development of multiple forms of neuropsychiatric illness. This SNP, when genetically introduced into mice, recapitulates core phenotypes identified in human BDNF Val66Met carriers. In mice, this SNP also leads to elevated expression of anxiety-like behaviors that are not rescued with the prototypic selective serotonin reuptake inhibitor (SSRI), fluoxetine. A prominent hypothesis is that SSRI-induced augmentation of BDNF protein expression and the beneficial trophic effects of BDNF on neural plasticity are critical components for drug response. Thus, these mice represent a potential model to study the biological mechanism underlying treatment-resistant forms of affective disorders. To test whether the BDNF Val66Met SNP alters SSRI-induced changes in neural plasticity, we used wild-type (BDNF Val/Val) mice, and mice homozygous for the BDNF Val66Met SNP (BDNFMet/Met). We assessed hippocampal BDNF protein levels, survival rates of adult born cells, and synaptic plasticity (long-term potentiation, LTP) in the dentate gyrus either with or without chronic (28-day) fluoxetine treatment. BDNFMet/Met mice had decreased basal BDNF protein levels in the hippocampus that did not significantly increase following fluoxetine treatment. BDNFMet/Met mice had impaired survival of newly born cells and LTP in the dentate gyrus; the LTP effects remained blunted following fluoxetine treatment. The observed effects of the BDNF Val66Met SNP on hippocampal BDNF expression and synaptic plasticity provide a possible mechanistic basis by which this common BDNF SNP may impair efficacy of SSRI drug treatment. Neuropsychopharmacology (2012) 37, 1297-1304; doi:10.1038/npp.2011.318; published online 4 January 2012

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