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单个心脏钠通道三种不同门控模式的电压依赖性特性。

Voltage-dependent properties of three different gating modes in single cardiac Na+ channels.

作者信息

Böhle T, Benndorf K

机构信息

Department of Physiology, University of Cologne, Germany.

出版信息

Biophys J. 1995 Sep;69(3):873-82. doi: 10.1016/S0006-3495(95)79961-1.

Abstract

Three different modes of Na+ channel action, the F mode (fast inactivating), the S mode (slowly inactivating), and the P mode (persistent), were studied at different potentials in exceptionally small cell-attached patches containing one and only one channel. Switching between the modes was independent of voltage. In the F mode, the mean open time (tau o) at -30 and -40 mV was 0.14 and 0.16 ms, respectively, which was significantly larger than at -60 and 0 mV, where the values were 0.07 and 0.08 ms, respectively. The time before which half of the first channel openings occurred (t 0.5), decreased from 0.58 ms at -60 mV to 0.14 ms at 0 mV. The fit of steady-state activation with a Boltzmann function yielded a half-maximum value (V 0.5) at -48.1 mV and a slope (k) of 5.6 mV. The mean open time in the S mode increased steadily from 0.12 ms at -80 mV to 1.09 ms at -30 mV, but was not prolonged further at -20 mV (1.07 ms). Concomitantly, t 0.5 decreased from 1.61 ms at -80 mV to 0.22 ms at -20mV. Here the midpoint of steady-state activation was found at -61.2 mV, and the slope was 8.7 mV. The mean open time in the P mode increased from 0.07 ms at -60 mV to 0.45 ms at 0 mV and t 0.5 declined from 2.14 ms at -60 mV to 0.19 ms at +20 mV. Steady-state activation had its midpoint at -14.7 mV, and the slope was 10.9 mV. It is concluded that a single Na+ channel may switch among the F, S, and P mode and that the three modes differ by a characteristic pattern of voltage dependence of tau 0, t 0.5, and steady-state activation.

摘要

在含有且仅含有一个通道的极小的细胞贴附膜片上,于不同电位研究了三种不同的钠离子通道作用模式,即F模式(快速失活)、S模式(缓慢失活)和P模式(持续开放)。模式之间的切换与电压无关。在F模式下,-30mV和-40mV时的平均开放时间(τo)分别为0.14ms和0.16ms,显著长于-60mV和0mV时的值,后者分别为0.07ms和0.08ms。首次通道开放一半发生之前的时间(t0.5),从-60mV时的0.58ms降至0mV时的0.14ms。用玻尔兹曼函数拟合稳态激活,得到半最大值(V0.5)为-48.1mV,斜率(k)为5.6mV。S模式下的平均开放时间从-80mV时的0.12ms稳步增加到-30mV时的1.09ms,但在-20mV时未进一步延长(1.07ms)。同时,t0.5从-80mV时的1.61ms降至-20mV时的0.22ms。此处稳态激活的中点为-61.2mV,斜率为8.7mV。P模式下的平均开放时间从-60mV时的0.07ms增加到0mV时的0.45ms,t0.5从-60mV时的2.14ms降至+20mV时的0.19ms。稳态激活的中点为-14.7mV,斜率为10.9mV。结论是单个钠离子通道可能在F、S和P模式之间切换,并且这三种模式在τ0、t0.5和稳态激活的电压依赖性特征模式上有所不同。

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