首页> 外文期刊>The Journal of Physiology >Subthreshold membrane potential oscillations in inferior olive neurons are dynamically regulated by P/Q- and T-type calcium channels: a study in mutant mice.
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Subthreshold membrane potential oscillations in inferior olive neurons are dynamically regulated by P/Q- and T-type calcium channels: a study in mutant mice.

机译:下橄榄神经元的亚阈值膜电位振荡受P / Q和T型钙通道动态调节:一项针对突变小鼠的研究。

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摘要

The role of P/Q- and T-type calcium channels in the rhythmic oscillatory behaviour of inferior olive (IO) neurons was investigated in mutant mice. Mice lacking either the CaV2.1 gene of the pore-forming alpha1A subunit for P/Q-type calcium channel, or the CaV3.1 gene of the pore-forming alpha1G subunit for T-type calcium channel were used. In vitro intracellular recording from IO neurons reveals that the amplitude and frequency of sinusoidal subthreshold oscillations (SSTOs) were reduced in the CaV2.1-/- mice. In the CaV3.1-/- mice, IO neurons also showed altered patterns of SSTOs and the probability of SSTO generation was significantly lower (15%, 5 of 34 neurons) than that of wild-type (78%, 31 of 40 neurons) or CaV2.1-/- mice (73%, 22 of 30 neurons). In addition, the low-threshold calcium spike and the sustained endogenous oscillation following rebound potentials were absent in IO neurons from CaV3.1-/- mice. Moreover, the phase-reset dynamics of oscillatory properties of single neurons and neuronal clusters in IO were remarkably altered in both CaV2.1-/- and CaV3.1-/- mice. These results suggest that both alpha1A P/Q- and alpha1G T-type calcium channels are required for the dynamic control of neuronal oscillations in the IO. These findings were supported by results from a mathematical IO neuronal model that incorporated T and P/Q channel kinetics.
机译:在突变小鼠中研究了P / Q和T型钙通道在下橄榄(IO)神经元的节律性振荡行为中的作用。使用缺乏P / Q型钙通道的成孔α1A亚基的CaV2.1基因或T型钙通道的成孔α1G亚基的CaV3.1基因的小鼠。 IO神经元的体外细胞内记录显示,CaV2.1-/-小鼠的正弦下阈值振荡(SSTO)的幅度和频率降低。在CaV3.1-/-小鼠中,IO神经元还表现出SSTO改变的模式,SSTO产生的概率(15%,34个神经元中的5个)明显低于野生型(78%,40个神经元中的31个) )或CaV2.1-/-小鼠(73%,30个神经元中的22个)。此外,CaV3.1-/-小鼠的IO神经元中没有低阈值钙尖峰和反弹电位后持续的内源性振荡。此外,在CaV2.1-/-和CaV3.1-/-小鼠中,IO中单个神经元和神经元簇的振荡特性的相位重置动态都发生了明显变化。这些结果表明,alpha1A P / Q和alpha1G T型钙通道都是动态控制IO中神经元振荡所必需的。这些发现得到了结合了T和P / Q通道动力学的数学IO神经元模型的结果的支持。

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