4.2 Article

Molecular responses of the Ts65Dn and Ts1Cje mouse models of Down syndrome to MK-801

期刊

GENES BRAIN AND BEHAVIOR
卷 7, 期 7, 页码 810-820

出版社

WILEY
DOI: 10.1111/j.1601-183X.2008.00428.x

关键词

calcineurin; chromosome 21; cognitive deficits; Elk; hippocampus; NMDA receptor; protein phosphorylation; trisomy 21

资金

  1. Foundation Jerome Lejeune
  2. National Institutes of Health [HD047671, HD049460, HD056235]
  3. Anna and John J. Sie Foundation
  4. Coleman Institute for Cognitive Disabilities

向作者/读者索取更多资源

Down syndrome (DS), caused by trisomy of human chromosome 21 (chr21), is the most common genetic cause of intellectual disability. The Ts65Dn mouse model of DS is trisomic for orthologs of 94 chr21-encoded, confirmed protein-coding genes and displays a number of behavioral deficits. Recently, Ts65Dn mice were shown to be hypersensitive to the locomotor stimulatory effects of the high-affinity N-methyl-D-aspartate (NMDA) receptor (NMDAR) channel blocker, MK-801. This is consistent with the functions of several chr21 proteins that are predicted directly or indirectly to impact NMDAR function or NMDAR-mediated signaling. In this study, we show that a second mouse model of DS, the Ts1Cje, which is trisomic for 70 protein-coding genes, is also hypersensitive to MK-801. To investigate the molecular basis for the responses to MK-801, we have measured levels of a subset of chr21 and phosphorylated non-chr21 proteins, in the cortex and hippocampus of Ts65Dn and Ts1Cje mice and euploid controls, with and without treatment with MK-801. We show that in euploid mice, the chr21-encoded proteins, TIAM1 and DYRK1A, and phosphorylation of AKT, ERK1/2 and the transcription factor ELK are involved in the MK-801 response. However, in both Ts65Dn and Ts1Cje mice, levels of phosphorylation are constitutively elevated in naive, unstimulated mice, and the MK-801-induced changes in TIAM1 and DYRK1A and in phosphorylation are either absent or abnormal, with both genotype and brain-region-specific patterns. These results emphasize the complexities of the pathway perturbations that arise with segmental trisomy.

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