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cAMP response element-binding protein-mediated gene expression increases the intrinsic excitability of CA1 pyramidal neurons

  • Mikel Lopez De Armentia
  • , Dragana Jancic
  • , Roman Olivares
  • , Juan M. Alarcon
  • , Eric R. Kandel
  • , Angel Barco

Research output: Contribution to journalArticlepeer-review

158 Scopus citations

Abstract

To investigate the role of CREB-mediated gene expression on the excitability of CA1 pyramidal neurons, we obtained intracellular recordings from pyramidal neurons of transgenic mice expressing a constitutively active form of CREB, VP16-CREB, in a regulated and restricted manner. We found that transgene expression increased the neuronal excitability and inhibited the slow and medium afterhyperpolarization currents. These changes may contribute to the reduced threshold for LTP observed in these mice. When strong transgene expression was turned on for prolonged period of time, these mice also showed a significant loss of hippocampal neurons and sporadic epileptic seizures. These deleterious effects were dose dependent and could be halted, but not reversed by turning off transgene expression. Our experiments reveal a new role for hippocampal CREB-mediated gene expression, identify the slow afterhyperpolarization as a primary target of CREB action, provide a new mouse model to investigate temporal lobe epilepsy and associated neurodegeneration, and illustrate the risks of cell death associated to a sustained manipulation of this pathway. As a result, our study has important implications for both the understanding of the cellular bases of learning and memory and the consideration of therapies targeted to the CREB pathway.

Original languageEnglish
Pages (from-to)13909-13918
Number of pages10
JournalJournal of Neuroscience
Volume27
Issue number50
DOIs
StatePublished - Dec 12 2007

Keywords

  • AHP
  • CREB
  • Excitability
  • Excitotoxicity
  • Learning and memory
  • Synaptic plasticity

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