首页> 美国卫生研究院文献>The Journal of Neuroscience >Reduced Voltage Sensitivity of Activation of P/Q-Type Ca2+ Channels is Associated with the Ataxic Mouse MutationRolling Nagoya (tgrol)
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Reduced Voltage Sensitivity of Activation of P/Q-Type Ca2+ Channels is Associated with the Ataxic Mouse MutationRolling Nagoya (tgrol)

机译:降低的P / Q型Ca2 +通道激活的电压敏感性与共济失调的小鼠突变相关联名古屋(tgrol)

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摘要

Recent genetic analyses have revealed an important association of the gene encoding the P/Q-type voltage-dependent Ca2+ channel α1A subunit with hereditary neurological disorders. We have identified the ataxic mouse mutation, rolling Nagoya(tgrol), in the α1Agene that leads to a charge-neutralizing arginine-to-glycine substitution at position 1262 in the voltage sensor-forming segment S4 in repeat III. Ca2+ channel currents in acutely dissociated Purkinje cells, where P-type is the dominant type, showed a marked decrease in slope and a depolarizing shift by 8 mV of the conductance–voltage curve and reduction in current density intgrol mouse cerebella, compared with those in wild-type. Compatible functional change was induced by thetgrol mutation in the recombinant α1A channel, indicating that a defect in voltage sensor of P/Q-type Ca2+ channels is the direct consequence of the tgrol mutation. Furthermore, somatic whole-cell recording of mutant Purkinje cells displayed only abortive Na+ burst activity and hardly exhibited Ca2+ spike activity in cerebellar slices. Thus, in tgrol mice, reduced voltage sensitivity, which may derive from a gating charge defect, and diminished activity of the P-type α1ACa2+ channel significantly impair integrative properties of Purkinje neurons, presumably resulting in locomotor deficits.
机译:最近的遗传学分析表明,编码P / Q型电压依赖性Ca 2 + 通道α1A亚基的基因与遗传性神经疾病有着重要的联系。我们已经确定了α1A基因中的小鼠共济失调突变名古屋(tg rol )滚动,该突变导致在电压传感器形成区段S4中位置1262处电荷中和的精氨酸变为甘氨酸取代。重复三。急性解离的浦肯野细胞中的Ca 2 + 通道电流(P型为主要类型)显示出电导率-电压曲线的斜率显着降低和去极化移位8 mV,电流减小与野生型小鼠相比小密度intg rol 小鼠小脑。重组α1A通道中的tg rol 突变引起了兼容的功能改变,表明P / Q型Ca 2 + 通道的电压传感器缺陷是直接的结果tg rol 突变的特征。此外,突变型浦肯野细胞的体细胞全细胞记录仅显示流产的Na + 爆发活性,而在小脑切片中几乎不显示Ca 2 + 尖峰活性。因此,在tg rol 小鼠中,电压敏感性降低(可能是门控电荷缺陷引起的)以及P型α1ACa 2 + 通道活性的降低显着损害了整合特性。的浦肯野神经元,可能导致运动功能障碍。

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