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胚胎期鸡心室细胞对中缝隙连接通道的电压依赖性门控

Voltage-dependent gating of gap junction channels in embryonic chick ventricular cell pairs.

作者信息

Veenstra R D

机构信息

Department of Pharmacology, State University of New York, Syracuse 13210.

出版信息

Am J Physiol. 1990 Apr;258(4 Pt 1):C662-72. doi: 10.1152/ajpcell.1990.258.4.C662.

Abstract

The dependence of macroscopic gap junctional conductance (Gj) on transjunctional voltage (Vj) was studied in paired myocytes after enzymatic dissociation of 7-day-old embryonic chick ventricles. The membrane voltage of both cells was independently controlled by separate patch-clamp circuits in the whole cell configuration. Two distinctive unitary junctional conductances were identified in recordings from seven different cell pairs. The larger channel had a mean conductance of 166 +/- 37 pS (n = 6 pairs), whereas a second channel averaged 58 +/- 10 pS (n = 3). Instantaneous Gj remained linear over a Vj range of -100 to +100 mV, whereas the steady-state Gj declined when voltages exceeded +/- 30 mV. Both decay and recovery phases of Gj follow exponential time courses, with the recovery time constant being four times slower than inactivation, requiring 1.1 s at 80 mV. The normalized steady-state Gj-Vj curve could be defined by a two-state Boltzmann distribution, assuming an effective gating charge of 1.72, a half-inactivation voltage of 45 mV, and a residual voltage-insensitive Gj of 27% of maximum. Single-channel recordings revealed closure of 160-pS channels on a Vj step to 80 mV, and the ensemble average of five such records produced an exponentially decaying junctional current with a time constant of 184 ms. The single-channel current-voltage relationship remains linear with a slope of 145 pS over the entire Vj range. The results support the hypothesis that a population of 160-pS gap junction channels is gated by transjunctional potentials.

摘要

在对7日龄鸡胚心室进行酶解后获得的成对心肌细胞中,研究了宏观缝隙连接电导(Gj)对跨连接电压(Vj)的依赖性。在全细胞模式下,两个细胞的膜电压由独立的膜片钳电路分别控制。在来自七个不同细胞对的记录中,鉴定出两种不同的单位连接电导。较大的通道平均电导为166±37 pS(n = 6对),而第二个通道平均为58±10 pS(n = 3)。在-100至+100 mV的Vj范围内,瞬时Gj保持线性,而当电压超过±30 mV时,稳态Gj下降。Gj的衰减和恢复阶段均遵循指数时间进程,恢复时间常数比失活慢四倍,在80 mV时需要1.1 s。假设有效门控电荷为1.72、半失活电压为45 mV、残余电压不敏感Gj为最大值的27%,则归一化稳态Gj-Vj曲线可由双态玻尔兹曼分布定义。单通道记录显示,在Vj阶跃至80 mV时,160-pS通道关闭,五个此类记录的总体平均值产生了一个时间常数为184 ms的指数衰减连接电流。在整个Vj范围内,单通道电流-电压关系保持线性,斜率为145 pS。这些结果支持了以下假设:一群160-pS的缝隙连接通道由跨连接电位门控。

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