4.7 Article

Decreased cohesin in the brain leads to defective synapse development and anxiety-related behavior

Journal

JOURNAL OF EXPERIMENTAL MEDICINE
Volume 214, Issue 5, Pages 1431-1452

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1084/jem.20161517

Keywords

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Funding

  1. Japan Society for the Promotion of Science (JSPS)
  2. JSPS [25221309]
  3. Platform Project for Supporting in Drug Discovery and Life Science Research from the Japan Agency for Medical Research and Development (AMED)
  4. Ministry of Education, Culture, Sports, Science and Technology of Japan
  5. Grants-in-Aid for Scientific Research [17H06178, 26293020, 15H05976, 15H05970, 17H06051, 26670122, 15H01288, 16H01270, 15H02369, 16K18364, 16H06276, 16K01946, 15K21761] Funding Source: KAKEN

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Abnormal epigenetic regulation can cause the nervous system to develop abnormally. Here, we sought to understand the mechanism by which this occurs by investigating the protein complex cohesin, which is considered to regulate gene expression and, when defective, is associated with higher-level brain dysfunction and the developmental disorder Cornelia de Lange syndrome (CdLS). We generated conditional Smc3-knockout mice and observed greater dendritic complexity and larger numbers of immature synapses in the cerebral cortex of Smc3(+/-) mice. Smc3(+/-) mice also exhibited more anxiety-related behavior, which is a symptom of CdLS. Further, a gene ontology analysis after RNA-sequencing suggested the enrichment of immune processes, particularly the response to interferons, in the Smc3(+/-) mice. Indeed, fewer synapses formed in their cortical neurons, and this phenotype was rescued by STAT1 knockdown. Thus, low levels of cohesin expression in the developing brain lead to changes in gene expression that in turn lead to a specific and abnormal neuronal and behavioral phenotype.

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