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MicroRNA-206 in rat medial prefrontal cortex regulates BDNF expression and alcohol drinking

  • Jenica D. Tapocik
  • , Estelle Barbier
  • , Meghan Flanigan
  • , Matthew Solomon
  • , Alexandra Pincus
  • , Andrew Pilling
  • , Hui Sun
  • , Jesse R. Schank
  • , Courtney King
  • , Markus Heilig

Research output: Contribution to journalArticlepeer-review

126 Scopus citations

Abstract

Escalation of voluntary alcohol consumption is a hallmark of alcoholism, but its neural substrates remain unknown. In rats, escalation occurs following prolonged exposure to cycles of alcohol intoxication, and is associated with persistent, wide-ranging changes in gene expression within the medial prefrontal cortex (mPFC). Here, we examined whether induction of microRNA (miR) 206 in mPFC contributes to escalated alcohol consumption. Following up on a microarray screen, quantitative real-time reverse transcription PCR (qPCR) confirmed that a history of dependence results in persistent (>3weeks) up-regulation of miR-206 expression in the mPFC, but not in the ventral tegmental area, amygdala, or nucleus accumbens. Viral-mediated overexpression of miR-206 in the mPFC of nondependent rats reproduced the escalation of alcohol self-administration seen following a history of dependence and significantly inhibited BDNF expression. Bioinformatic analysis identified three conserved target sites for miR-206 in the 3′-UTR of the rat BDNF transcript. Accordingly, BDNF was downregulated in post-dependent rats on microarray analysis, and this was confirmed by qPCR. In vitro, BDNF expression was repressed by miR-206 but not miR-9 in a 3′-UTR reporter assay, confirming BDNF as a functional target of miR-206. Mutation analysis showed that repression was dependent on the presence of all three miR-206 target sites in the BDNF 3′-UTR. Inhibition of miR-206 expression in differentiated rat cortical primary neurons significantly increased secreted levels of BDNF. In conclusion, recruitment of miR-206 in the mPFC contributes to escalated alcohol consumption following a history of dependence, with BDNF as a possible mediator of its action.

Original languageEnglish
Pages (from-to)4581-4588
Number of pages8
JournalJournal of Neuroscience
Volume34
Issue number13
DOIs
StatePublished - 2014
Externally publishedYes

Keywords

  • Addiction
  • Alcohol dependence
  • BDNF
  • Medial prefrontal cortex
  • Self-administration
  • microRNA

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