首页> 美国卫生研究院文献>The Journal of Neuroscience >The ducky2J Mutation in Cacna2d2 Results in Reduced Spontaneous Purkinje Cell Activity and Altered Gene Expression
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The ducky2J Mutation in Cacna2d2 Results in Reduced Spontaneous Purkinje Cell Activity and Altered Gene Expression

机译:Cacna2d2中的ducky2J突变导致自发性Purkinje细胞活性降低和基因表达改变

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摘要

The mouse mutant ducky and its allele ducky2J represent a model for absence epilepsy characterized by spike-wave seizures and cerebellar ataxia. These mice have mutations in Cacna2d2, which encodes the α2δ-2 calcium channel subunit. Of relevance to the ataxic phenotype, α2δ-2 mRNA is strongly expressed in cerebellar Purkinje cells (PCs). The Cacna2d2du2J mutation results in a 2 bp deletion in the coding region and a complete loss of α2δ-2 protein. Here we show that du2J/du2J mice have a 30% reduction in somatic calcium current and a marked fall in the spontaneous PC firing rate at 22°C, accompanied by a decrease in firing regularity, which is not affected by blocking synaptic input to PCs. At 34°C, du2J/du2J PCs show no spontaneous intrinsic activity. Du2J/du2J mice also have alterations in the cerebellar expression of several genes related to PC function. At postnatal day 21, there is an elevation of tyrosine hydroxylase mRNA and a reduction in tenascin-C gene expression. Although du2J/+ mice have a marked reduction in α2δ-2 protein, they show no fall in PC somatic calcium currents or increase in cerebellar tryrosine hydroxylase gene expression. However, du2J/+ PCs do exhibit a significant reduction in firing rate, correlating with the reduction in α2δ-2. A hypothesis for future study is that effects on gene expression occur as a result of a reduction in somatic calcium currents, whereas effects on PC firing occur as a long-term result of loss of α2δ-2 and/or a reduction in calcium currents and calcium-dependent processes in regions other than the soma.
机译:小鼠突变小鸭及其等位基因小鸭 2J 代表了以癫痫发作为特征的穗波发作和​​小脑共济失调的模型。这些小鼠的Cacna2d2有突变,该突变编码α2δ-2钙通道亚基。与共生表型有关,α2δ-2mRNA在小脑浦肯野细胞(PCs)中强烈表达。 Cacna2d2 du2J 突变导致编码区缺失2 bp,α2δ-2蛋白完全丢失。在这里,我们显示du 2J / du 2J 小鼠的体细胞钙电流降低了30%,在22°C时自发PC放电速率显着下降,并伴有触发规律性降低,不受阻止PC的突触输入影响。在34°C时,du 2J / du 2J PC均未显示自发的内在活性。 Du 2J / du 2J 小鼠的小脑表达中也有一些与PC功能相关的基因发生改变。在出生后的第21天,酪氨酸羟化酶mRNA升高,而腱生蛋白C基因表达降低。尽管du 2J / +小鼠的α2δ-2蛋白含量明显降低,但它们的PC体钙电流没有下降,小脑Tryrosine羟化酶基因表达也没有增加。但是,du 2J / + PC的确发射速率显着降低,与α2δ-2的降低相关。未来研究的假设是,由于体细胞钙电流的减少,对基因表达的影响发生,而对PC放电的影响,是α2δ-2丧失和/或钙电流和钙减少的长期结果。除体细胞外,钙依赖性过程。

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