4.7 Article

Increased NR2A expression and prolonged decay of NMDA-induced calcium transient in cerebellum of TgDyrk1A mice, a mouse model of Down syndrome

Journal

NEUROBIOLOGY OF DISEASE
Volume 32, Issue 3, Pages 377-384

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.nbd.2008.07.024

Keywords

Down syndrome; DYRK1A; NMDA receptors; Cerebellum; Motor phenotype; Murine models; Microarrays

Categories

Funding

  1. Spanish Ministry of Health [FIS P1041559]
  2. Jerome Lejeune Foundation [EU FP6-2005-LIFESCIHEALTH-6, 037627]
  3. JCCM [G02-019SAN-03-23]
  4. Fundacio La Caixa
  5. Instituto de Salud Carlos III [CP07/00323]
  6. Fondo de Investigacion Sanitaria [FIS 02/3075]
  7. Fondo de Investigacion Sanitaria

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Transgenic mice overexpressing Dyrk1A (TgDyrk1A), a Down syndrome (DS) candidate gene, exhibit motor and cognitive alterations similar to those observed in DS individuals. To gain new insights into the molecular consequences of Dyrk1A overexpression underlying TgDyrk1A and possibly DS motor phenotypes, microarray studies were performed. Transcriptome analysis showed an upregulation of the NR2A subunit of the NMDA type of glutamate receptors in TgDyrk1A cerebellum. NR2A protein overexpression was also detected in TgDyrk1A cerebellar homogenates, in the synaptosome-enriched fraction and in TgDyrk1A primary cerebellar granular neuronal cultures (CGNs). In TgDyrk1A synaptosomes, calcium-imaging experiments showed a higher calcium uptake after NMDA stimulation. Similarly, NMDA administration promoted longer calcium transients in TgDyrk1A CGNs. Taken together, these results show that NMDA-induced calcium rise is altered in TgDyrk1A cerebellar neurons and indicate that calcium signaling is dysregulated in TgDyrk1A mice cerebella. These findings suggest that DYRK1A overexpression might contribute to the dysbalance in the excitatory transmission found in the cerebellum of DS individuals and DS mouse models. (C) 2008 Elsevier Inc. All rights reserved.

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