Altafaj X, Ortiz-Abalia J, Fernández M, Potier M C, Laffaire J, Andreu N, Dierssen M, González-García C, Ceña V, Martí E, Fillat C
Programa Gens i Malatia, Centre de Regulació Genòmica-CRG, UPF, Parc de Recerca Biomèdica de Barcelona-PRBB, Barcelona, Spain.
Neurobiol Dis. 2008 Dec;32(3):377-84. doi: 10.1016/j.nbd.2008.07.024. Epub 2008 Aug 16.
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.
过度表达Dyrk1A(TgDyrk1A)的转基因小鼠,Dyrk1A是一种唐氏综合征(DS)候选基因,表现出与DS个体中观察到的类似的运动和认知改变。为了深入了解TgDyrk1A以及可能的DS运动表型背后Dyrk1A过度表达的分子后果,进行了微阵列研究。转录组分析显示,TgDyrk1A小鼠小脑的N-甲基-D-天冬氨酸(NMDA)型谷氨酸受体的NR2A亚基上调。在TgDyrk1A小鼠小脑匀浆、富含突触体的部分以及TgDyrk1A原代小脑颗粒神经元培养物(CGNs)中也检测到NR2A蛋白过度表达。在TgDyrk1A突触体中,钙成像实验显示NMDA刺激后钙摄取增加。同样,NMDA给药促进了TgDyrk1A CGNs中更长时间的钙瞬变。综上所述,这些结果表明,TgDyrk1A小鼠小脑中NMDA诱导的钙升高发生改变,表明钙信号在TgDyrk1A小鼠小脑中失调。这些发现表明,DYRK1A过度表达可能导致DS个体和DS小鼠模型小脑中兴奋性传递失衡。