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Slow inactivation of the Ca(V)3.1 isotype of T-type calcium channels.

机译:T型钙通道的Ca(V)3.1同种型的慢速灭活。

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摘要

T-type calcium channels (the Ca(V)3 channel family) are involved in defining the resting membrane potential and in neuronal activities such as oscillations and rebound depolarization. Their physiological roles depend upon the channel activation and inactivation kinetics. A fast inactivation that stops the ionic flux of calcium in tens of milliseconds has already been described in both native and heterologously expressed channels. Here, using HEK 293 cells expressing the rat Ca(V)3.1 channel and whole-cell voltage clamp, we investigate an additional inactivation process, which can be distinguished from the previously described fast inactivation by its slow time course of recovery from inactivation (tau= 1 s) and by its sensitivity to external calcium. Steady-state slow inactivation is voltage dependent around the resting membrane potential (the potential of half-inactivation (V(0.5)) =-70 mV, slope factor = 7.4 mV) and can reduce the calcium current by up to 50%. Near resting potential, the slow inactivation displays a half-time of induction of tens of seconds. The slow inactivation therefore modulates the availability of T-type calcium channels depending upon recent cell history, providing a mechanism to store information in a time scale of seconds.
机译:T型钙通道(Ca(V)3通道家族)参与定义静息膜电位和神经元活动,例如振荡和反弹去极化。它们的生理作用取决于通道的活化和失活动力学。在天然和异源表达的通道中都已经描述了在数十毫秒内停止钙离子流的快速失活。在这里,使用表达大鼠Ca(V)3.1通道和全细胞电压钳的HEK 293细胞,我们研究了另一种失活过程,该过程可以从之前描述的快速失活中区别出来,其缓慢的失活过程是恢复过程(tau = 1 s)并因其对外部钙的敏感性。稳态慢速灭活取决于静止膜电位附近的电压(半灭活电位(V(0.5))= -70 mV,斜率= 7.4 mV),可使钙电流降低多达50%。接近静止电位时,缓慢的失活显示了数十秒的感应时间的一半。因此,缓慢的失活取决于最近的细胞历史来调节T型钙通道的可用性,从而提供了一种以秒为单位存储信息的机制。

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