4.5 Article

The MicroRNA Contribution to Learning and Memory

期刊

NEUROSCIENTIST
卷 17, 期 5, 页码 468-474

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/1073858411411721

关键词

microRNA; learning and memory; neurons; synaptic plasticity; BDNF; MMP-9

资金

  1. EU
  2. Deutsche Forschungsgemeinschaft through Collaborative Research Centres [SFB 488, SFB 636]
  3. European Union [LSHM-CT-2005-018652]
  4. Bundesministerium fur Bildung und Forschung (BMBF) [FZK 01GS08153, 01GS08142, 0313074C]
  5. Helmholtz Gemeinschaft Deutscher Forschungszentren (HGF) through Initiative CoReNe (Network II) [E2]
  6. Alliance HelMA [HA-215]
  7. Deutsche Krebshilfe [108567]

向作者/读者索取更多资源

Learning and memory refer to an animal's ability to respond adequately to environmental signals that may be negative (aversive learning) or positive (appetitive learning) in nature. The extremely elaborate connectivity network of neurons in the brain is capable of governing animals' reactions (e.g., by enhancing or weakening single or multiple synapses). Such circuit plasticity is largely believed to be the very essence of memory formation. It has been suggested that long-term memory, in contrast to short-term memory, requires de novo protein synthesis and can be prevented by protein synthesis inhibitors. The local protein translation in dendrites allows neurons to selectively rebuild only those synapses that have been activated. However, substrates of protein synthesis (i.e., mRNA) have to be kept suppressed until they are needed. MicroRNAs-short, non-protein-coding RNA regulatory sequences that guide an RNA-induced silencing complex to target mRNAs-seem to be perfect candidates in fulfilling this function in neurons. In this article, the authors discuss the recently recognized role of microRNAs as regulators of memory formation and endurance.

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