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Protein expression pattern in cerebellum of Cav2.1 mutant, tottering-6j mice

机译:Cav2.1突变型totter-6j小鼠小脑中的蛋白质表达模式

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Neuronal voltage-gated Cav2.1 channel controls a broad array of functions, including neurotransmitter release, neuronal excitability, activity-dependent gene expression, and neuronal survival. The Cav2.1 channel is molecular complexes consisting of several subunits: α1, α2/δ, β, and γ. The pore-forming subunit, α1, is encoded by the Cacna1a gene. Tottering-6j mice, generated by the Neuroscience Mutagenesis Facility at The Jackson Laboratory, are a recessive mutant strain in which the mutation has been chemically induced by ethylnitrosourea. In tottering-6j mice, mutation in the Cacna1a gene results in a base substitution (C-to-A) in the consensus splice acceptor sequence, which results in deletion of a part of the S4-S5 linker, S5, and a part of S5-S6 linker domain I in the α1 subunit of Cav2.1 channel. The mice display motor dysfunctions and absence-like seizures. However, protein expression in the cerebellum of tottering-6j mice has not been investigated. Real-time quantitative reverse transcription polymerase chain reaction and histological analyses of the cerebellum of tottering-6j mice revealed high expression levels of tyrosine hydroxylase, zebrin II, and ryanodine receptor 3 compared with those of wild-type mice. Conversely, a low level of calretinin expression was found compared with wild-type mice. These results indicate that Cacna1a mutation plays a significant role in protein expression patterns and that the tottering-6j mouse is a useful model for understanding protein expression mechanisms.
机译:神经元电压门控的Cav2.1通道控制着广泛的功能,包括神经递质释放,神经元兴奋性,活动依赖性基因表达和神经元存活。 Cav2.1通道是由几个亚基组成的分子复合物:α1,α 2 /δ,β和γ。孔形成亚基α1由Cacna1a基因编码。由Jackson实验室的Neuroscience诱变设施产生的Tottering-6j小鼠是隐性突变株,其中的突变已被乙基亚硝基脲化学诱导。在totter-6j小鼠中,Cacna1a基因的突变导致共有剪接受体序列发生碱基取代(C-to-A),从而导致部分S4-S5接头,S5和部分S4-S5缺失。 Cav2.1通道的α1亚基中的S5-S6接头结构域I。小鼠表现出运动功能障碍和缺乏症发作。但是,尚未研究过titter-6j小鼠小脑中的蛋白表达。实时定量逆转录聚合酶链反应和to变6j小鼠小脑的组织学分析显示,与野生型小鼠相比,酪氨酸羟化酶,zebrin II和ryanodine受体3的表达水平较高。相反,与野生型小鼠相比,发现钙调蛋白的表达水平较低。这些结果表明,Cacna1a突变在蛋白质表达模式中起重要作用,而totter-6j小鼠是了解蛋白质表达机制的有用模型。

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