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Two Components of Voltage-Dependent Inactivation in Cav1.2 Channels Revealed by Its Gating Currents

机译:Cav1.2通道的门控电流揭示了电压依赖性失活的两个成分

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摘要

Voltage-dependent inactivation (VDI) was studied through its effects on the voltage sensor in Cav1.2 channels expressed in tsA 201 cells. Two kinetically distinct phases of VDI in onset and recovery suggest the presence of dual VDI processes. Upon increasing duration of conditioning depolarizations, the half-distribution potential (V1/2) of intramembranous mobile charge was negatively shifted as a sum of two exponential terms, with time constants 0.5 s and 4 s, and relative amplitudes near 50% each. This kinetics behavior was consistent with that of increment of maximal charge related to inactivation (Qn). Recovery from inactivation was also accompanied by a reduction of Qn that varied with recovery time as a sum of two exponentials. The amplitudes of corresponding exponential terms were strongly correlated in onset and recovery, indicating that channels recover rapidly from fast VDI and slowly from slow VDI. Similar to charge “immobilization,” the charge moved in the repolarization (OFF) transient became slower during onset of fast VDI. Slow VDI had, instead, hallmarks of interconversion of charge. Confirming the mechanistic duality, fast VDI virtually disappeared when Li+ carried the current. A nine-state model with parallel fast and slow inactivation pathways from the open state reproduces most of the observations.
机译:通过电压依赖性失活(VDI)对tsA 201细胞中表达的Cav1.2通道中电压传感器的影响,研究了电压依赖性失活。 VDI在发病和恢复过程中存在两个动力学上截然不同的阶段,表明存在双重VDI过程。随着调节去极化持续时间的增加,膜内移动电荷的半分布电势(V1 / 2)作为两个指数项的总和发生负移,时间常数为0.5 s和4 s,相对振幅分别接近50%。该动力学行为与与失活有关的最大电荷增量(Qn)一致。从失活中恢复还伴随着Qn的降低,Qn随恢复时间的变化而变化,是两个指数的总和。相应指数项的振幅在开始和恢复中密切相关,表明通道从快速VDI快速恢复而从慢速VDI缓慢恢复。类似于电荷“固定”,在快速VDI发生期间,在重新极化(OFF)瞬态中移动的电荷变慢。相反,缓慢的VDI具有电荷相互转换的特点。 Li + 载流时,快速的VDI几乎消失了,从而确认了机械对偶性。从开放状态开始具有平行的快速和慢速灭活路径的九状态模型重现了大多数观察结果。

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