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MEF2C, a transcription factor that facilitates learning and memory by negative regulation of synapse numbers and function.


ABSTRACT: Learning and memory depend on the activity-dependent structural plasticity of synapses and changes in neuronal gene expression. We show that deletion of the MEF2C transcription factor in the CNS of mice impairs hippocampal-dependent learning and memory. Unexpectedly, these behavioral changes were accompanied by a marked increase in the number of excitatory synapses and potentiation of basal and evoked synaptic transmission. Conversely, neuronal expression of a superactivating form of MEF2C results in a reduction of excitatory postsynaptic sites without affecting learning and memory performance. We conclude that MEF2C limits excessive synapse formation during activity-dependent refinement of synaptic connectivity and thus facilitates hippocampal-dependent learning and memory.

SUBMITTER: Barbosa AC 

PROVIDER: S-EPMC2453723 | biostudies-other | 2008 Jul

REPOSITORIES: biostudies-other

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MEF2C, a transcription factor that facilitates learning and memory by negative regulation of synapse numbers and function.

Barbosa Ana C AC   Kim Mi-Sung MS   Ertunc Mert M   Adachi Megumi M   Nelson Erika D ED   McAnally John J   Richardson James A JA   Kavalali Ege T ET   Monteggia Lisa M LM   Bassel-Duby Rhonda R   Olson Eric N EN  

Proceedings of the National Academy of Sciences of the United States of America 20080701 27


Learning and memory depend on the activity-dependent structural plasticity of synapses and changes in neuronal gene expression. We show that deletion of the MEF2C transcription factor in the CNS of mice impairs hippocampal-dependent learning and memory. Unexpectedly, these behavioral changes were accompanied by a marked increase in the number of excitatory synapses and potentiation of basal and evoked synaptic transmission. Conversely, neuronal expression of a superactivating form of MEF2C resul  ...[more]

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