4.3 Article

Astrocyte Transcriptome from the Mecp2308-Truncated Mouse Model of Rett Syndrome

期刊

NEUROMOLECULAR MEDICINE
卷 17, 期 4, 页码 353-363

出版社

HUMANA PRESS INC
DOI: 10.1007/s12017-015-8363-9

关键词

Transcriptome; Astrocyte; Mecp2; Rett; syndrome; NF-kappa B pathway; Nr2f2

资金

  1. Institut National de la Sante et de Recherche Medicale
  2. Association Francaise du Syndrome de Rett (AFSR)
  3. Fondation Jerome Lejeune [FJL R12212KK]
  4. LabEX Who Am I? (PRES Sorbonne Paris Cite, Paris Diderot, Paris Descartes, CNRS, INSERM)

向作者/读者索取更多资源

Mutations in the gene encoding the transcriptional modulator methyl-CpG binding protein 2 (MeCP2) are responsible for the neurodevelopmental disorder Rett syndrome which is one of the most frequent sources of intellectual disability in women. Recent studies showed that loss of Mecp2 in astrocytes contributes to Rett-like symptoms and restoration of Mecp2 can rescue some of these defects. The goal of this work is to compare gene expression profiles of wild-type and mutant astrocytes from Mecp2(308/y) mice (B6.129S-MeCP2 < tm1Heto >/J) by using Affymetrix mouse 2.0 microarrays. Results were confirmed by quantitative real-time RT-PCR and by Western blot analysis. Gene set enrichment analysis utilizing Ingenuity Pathways was employed to identify pathways disrupted by Mecp2 deficiency. A total of 2152 genes were statistically differentially expressed between wild-type and mutated samples, including 1784 coding transcripts. However, only 257 showed fold changes > 1.2. We confirmed our data by replicative studies in independent primary cultures of cortical astrocytes from Mecp2-deficient mice. Interestingly, two genes known to encode secreted proteins, chromogranin B and lipocalin-2, showed significant dysregulation. These proteins secreted from Mecp2-deficient glia may exert negative non-cell autonomous effects on neuronal properties, including dendritic morphology. Moreover, transcriptional profiling revealed altered Nr2f2 expression which may explain down- and upregulation of several target genes in astrocytes such as Ccl2, Lcn2 and Chgb. Unraveling Nr2f2 involvement in Mecp2-deficient astrocytes could pave the way for a better understanding of Rett syndrome pathophysiology and offers new therapeutic perspectives.

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