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电压钳制的浦肯野纤维中通过内向整流钾通道的钾外流。

K efflux through inward rectifying K channels in voltage clamped Purkinje fibers.

作者信息

Vereecke J, Isenberg G, Carmeliet E

出版信息

Pflugers Arch. 1980 Apr;384(3):207-17. doi: 10.1007/BF00584555.

Abstract

The 42K efflux was measured in voltage clamped sheep Purkinje fibers. The voltage dependence of the K efflux can be described as N-shaped, showing a negative slope region. At potentials negative to -30mV, the K efflux is largely due to K flowing through a channel which rectifies in the inward direction and which is blocked by external application of 20mM Cs+. At potentials positive to -30mV an outward rectifier dominates the shape of the K efflux-voltage relationship. This component is insensitive to short external application of Cs+. Both components were also found when Na+ was replaced by tetramethylammonium. When the steady-state current-voltage relationship is compared with the K efflux one can conclude that the outward rectifying K flux largely determines the shape of this curve at positive membrane potentials, while the negative slope region of the K efflux correlates with the negative slope of the steady-state current-voltage relation. The K efflux is only slightly enhanced by stimulation of the preparation, corroborating the finding of inward-going rectification of the K channel. A clamp program repetitively activating the positive dynamic current e.g. by alternating the membrane potential between -70 and +10mV, increases the K efflux by about 50% as compared to the efflux measured in steady-state at this positive membrane potential. 4-Aminopyridine suppresses both this extra K efflux and the positive dynamic current. It is concluded that K ions contribute to the positive dynamic current.

摘要

在电压钳制的绵羊浦肯野纤维中测量了42K外流。钾外流的电压依赖性可描述为N形,呈现一个负斜率区域。在低于-30mV的电位下,钾外流主要是由于钾通过一个向内整流且被外部施加20mM Cs+阻断的通道流动。在高于-30mV的电位下,外向整流器主导了钾外流-电压关系的形状。该成分对短暂的外部Cs+施加不敏感。当用四甲基铵替代Na+时也发现了这两种成分。当将稳态电流-电压关系与钾外流进行比较时,可以得出结论,在正膜电位下,外向整流钾通量在很大程度上决定了该曲线的形状,而钾外流的负斜率区域与稳态电流-电压关系的负斜率相关。刺激标本只会使钾外流略有增加,这证实了钾通道内向整流的发现。例如通过在-70mV和+10mV之间交替膜电位来重复激活正向动态电流的钳制程序,与在该正膜电位下稳态测量的外流相比,钾外流增加了约50%。4-氨基吡啶抑制这种额外的钾外流和正向动态电流。得出的结论是钾离子对正向动态电流有贡献。

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