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Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride.

Publication ,  Journal Article
Yeo, M; Berglund, K; Augustine, G; Liedtke, W
Published in: J Neurosci
November 18, 2009

Transcriptional upregulation of Kcc2b, the gene variant encoding the major isoform of the KCC2 chloride transporter, underlies a rapid perinatal decrease in intraneuronal chloride concentration (chloride shift), which is necessary for GABA to act inhibitory. Here we identify a novel repressor element-1 (RE-1) site in the 5' regulatory region of Kcc2b. In primary cortical neurons, which recapitulate the chloride shift in culture, the novel upstream RE-1 together with a known intronic RE-1 site function in concerted interaction to suppress Kcc2b transcription. With critical relevance for the chloride shift, only in the presence of the dual RE-1 site could inhibition of REST upregulate Kcc2b transcription. For this, we confirmed increased KCC2 protein expression and decreased intraneuronal chloride. Kcc2b developmental upregulation was potentiated by BDNF application, which was fully dependent on the presence of dual RE-1. In addition, the developmental chloride shift and GABA switch, from excitatory to inhibitory action, was accelerated by REST inhibition and slowed by REST overexpression. These results identify the REST-dual RE-1 interaction as a novel mechanism of transcriptional Kcc2b upregulation that significantly contributes to the ontogenetic shift in chloride concentration and GABA action in cortical neurons, which is fundamental for brain function in health and disease. Thus, we present here a new logic for the perinatal chloride shift, which is critical for establishment of GABAergic cortical inhibitory neurotransmission.

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Published In

J Neurosci

DOI

EISSN

1529-2401

Publication Date

November 18, 2009

Volume

29

Issue

46

Start / End Page

14652 / 14662

Location

United States

Related Subject Headings

  • Tetraodontiformes
  • Takifugu
  • Symporters
  • Suppression, Genetic
  • Repressor Proteins
  • Rats, Sprague-Dawley
  • Rats
  • Protein Binding
  • Promoter Regions, Genetic
  • Pan troglodytes
 

Citation

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Yeo, M., Berglund, K., Augustine, G., & Liedtke, W. (2009). Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride. J Neurosci, 29(46), 14652–14662. https://doi.org/10.1523/JNEUROSCI.2934-09.2009
Yeo, Michele, Ken Berglund, George Augustine, and Wolfgang Liedtke. “Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride.J Neurosci 29, no. 46 (November 18, 2009): 14652–62. https://doi.org/10.1523/JNEUROSCI.2934-09.2009.
Yeo M, Berglund K, Augustine G, Liedtke W. Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride. J Neurosci. 2009 Nov 18;29(46):14652–62.
Yeo, Michele, et al. “Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride.J Neurosci, vol. 29, no. 46, Nov. 2009, pp. 14652–62. Pubmed, doi:10.1523/JNEUROSCI.2934-09.2009.
Yeo M, Berglund K, Augustine G, Liedtke W. Novel repression of Kcc2 transcription by REST-RE-1 controls developmental switch in neuronal chloride. J Neurosci. 2009 Nov 18;29(46):14652–14662.

Published In

J Neurosci

DOI

EISSN

1529-2401

Publication Date

November 18, 2009

Volume

29

Issue

46

Start / End Page

14652 / 14662

Location

United States

Related Subject Headings

  • Tetraodontiformes
  • Takifugu
  • Symporters
  • Suppression, Genetic
  • Repressor Proteins
  • Rats, Sprague-Dawley
  • Rats
  • Protein Binding
  • Promoter Regions, Genetic
  • Pan troglodytes