4.8 Article

A microRNA negative feedback loop downregulates vesicle transport and inhibits fear memory

Journal

ELIFE
Volume 5, Issue -, Pages -

Publisher

ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.22467

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Funding

  1. Damon Runyon Cancer Research Foundation [DRG-2042-10]
  2. European Molecular Biology Organization [197-2009]
  3. Brain and Behavior Research Foundation
  4. Howard Hughes Medical Institute
  5. National Institutes of Health [AG047661, MH091429, NS0925578, DA033123]
  6. JPB Foundation
  7. Biogen Idec

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The SNARE-mediated vesicular transport pathway plays major roles in synaptic remodeling associated with formation of long-term memories, but the mechanisms that regulate this pathway during memory acquisition are not fully understood. Here we identify miRNAs that are up-regulated in the rodent hippocampus upon contextual fear-conditioning and identify the vesicular transport and synaptogenesis pathways as the major targets of the fear-induced miRNAs. We demonstrate that miR-153, a member of this group, inhibits the expression of key components of the vesicular transport machinery, and down-regulates Glutamate receptor A1 trafficking and neurotransmitter release. MiR-153 expression is specifically induced during LTP induction in hippocampal slices and its knockdown in the hippocampus of adult mice results in enhanced fear memory. Our results suggest that miR-153, and possibly other fear-induced miRNAs, act as components of a negative feedback loop that blocks neuronal hyperactivity at least partly through the inhibition of the vesicular transport pathway.

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