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首页> 外文期刊>The Journal of Physiology >The involvement of Cav3.2/alpha1H T-type calcium channels in excitability of mouse embryonic primary vestibular neurones.
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The involvement of Cav3.2/alpha1H T-type calcium channels in excitability of mouse embryonic primary vestibular neurones.

机译:Cav3.2 / alpha1H T型钙通道参与小鼠胚胎原代前庭神经元的兴奋性。

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Ca2+ influx through voltage-gated calcium channels probably influences neuronal ontogenesis. Many developing neurones transiently express T-type/Cav3 calcium channels that contribute to their electrical activity and potentially to their morphological differentiation. Here we have characterized the electrophysiological properties and the functional role of a large T-type calcium current that is present in mouse developing primary vestibular neurones at embryonic day E17. This T-type current showed fast activation and inactivation, as well as slow deactivation kinetics. The overlap of activation and inactivation parameters produced a window current between -65 and -45 mV. Recovery from short-term inactivation was slow suggesting the presence of the Cav3.2 subunit. This T-type current was blocked by micromolar concentrations of Ni2+ and was inhibited by fast perfusion velocities in a similar fashion to recombinant Cav3.2 T-type channels expressed in HEK-293 cells. More importantly, current clamp experiments have revealed that the T-current could elicit afterdepolarization potentials during the repolarization phase of action potentials, and occasionally generate calcium spikes. Taken together, we demonstrate that the Cav3.2 subunit is likely to be the main T-type calcium channel subunit expressed in embryonic vestibular neurones and should play a key role in the excitability of these neurones during the ontogenesis of vestibular afferentation.
机译:通过电压门控钙通道的Ca2 +内流可能影响神经元的发生。许多发育中的神经元瞬时表达T型/ Cav3钙通道,这有助于其电活动并可能有助于其形态分化。在这里,我们已经表征了在胚胎天E17发育中的前庭神经元小鼠的大T型钙电流的电生理特性和功能作用。这种T型电流显示出快速的活化和失活,以及缓慢的失活动力学。激活和失活参数的重叠产生了-65至-45 mV的窗口电流。从短期失活中恢复很慢,表明存在Cav3.2亚基。这种T型电流被微摩尔浓度的Ni2 +阻断,并以与HEK-293细胞中表达的重组Cav3.2 T型通道类似的方式被快速灌注速度抑制。更重要的是,电流钳实验表明,T电流可以在动作电位的复极阶段引起复极后的电位,并偶尔会产生钙尖峰。综上所述,我们证明Cav3.2亚基很可能是胚胎前庭神经元中表达的主要T型钙通道亚基,并且在前庭传入的本体形成过程中应在这些神经元的兴奋性中起关键作用。

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