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一种对茶不敏感的闪烁钾通道,在有髓神经的静息电位附近活跃。

A TEA-insensitive flickering potassium channel active around the resting potential in myelinated nerve.

作者信息

Koh D S, Jonas P, Bräu M E, Vogel W

机构信息

Physiologisches Institut, Justus-Liebig-Universität, Giessen, Germany.

出版信息

J Membr Biol. 1992 Nov;130(2):149-62. doi: 10.1007/BF00231893.

Abstract

A novel potassium-selective channel which is active at membrane potentials between -100 mV and +40 mV has been identified in peripheral myelinated axons of Xenopus laevis using the patch-clamp technique. At negative potentials with 105 mM-K on both sides of the membrane, the channel at 1 kHz resolution showed a series of brief openings and closings interrupted by longer closings, resulting in a flickery bursting activity. Measurements with resolution up to 10 kHz revealed a single-channel conductance of 49 pS with 105 mM-K and 17 pS with 2.5 mM-K on the outer side of the membrane. The channel was selective for K ions over Na ions (PNa/PK = 0.033). The probability of being within a burst in outside-out patches varied from patch to patch (> 0.2, but often > 0.9), and was independent of membrane potential. Open-time histograms were satisfactorily described with a single exponential (tau o = 0.09 msec), closed times with the sum of three exponentials (tau c = 0.13, 5.9, and 36.6 msec). Sensitivity to external tetraethylammonium was comparatively low (IC50 = 19.0 mM). External Cs ions reduced the apparent unitary conductance for inward currents at Em = -90 mV (IC50 = 1.1 mM). Ba and, more potently, Zn ions lowered not only the apparent single-channel conductance but also open probability. The local anesthetic bupivacaine with high potency reduced probability of being within a burst (IC50 = 165 nM). The flickering K channel is clearly different from the other five types of K channels identified so far in the same preparation. We suggest that this channel may form the molecular basis of the resting potential in vertebrate myelinated axons.

摘要

利用膜片钳技术,在非洲爪蟾的外周有髓轴突中发现了一种新型钾离子选择性通道,该通道在膜电位为-100 mV至+40 mV之间时具有活性。在膜两侧均为105 mM - K的负电位条件下,该通道在1 kHz分辨率下显示出一系列短暂的开放和关闭,中间穿插着较长时间的关闭,从而产生闪烁式爆发活动。高达10 kHz分辨率的测量结果显示,膜外侧为105 mM - K时单通道电导为49 pS,膜外侧为2.5 mM - K时单通道电导为17 pS。该通道对K离子的选择性高于Na离子(PNa/PK = 0.033)。在外翻膜片中外翻膜片中处于爆发状态的概率因膜片而异(> 0.2,但通常> 0.9),且与膜电位无关。开放时间直方图可用单个指数函数(tau o = 0.09毫秒)进行满意描述,关闭时间可用三个指数函数之和(tau c = 0.13、5.9和36.6毫秒)进行描述。对外部四乙铵的敏感性相对较低(IC50 = 19.0 mM)。外部Cs离子在Em = -90 mV时降低了内向电流的表观单位电导(IC50 = 1.1 mM)。Ba离子以及更有效的Zn离子不仅降低了表观单通道电导,还降低了开放概率。高效的局部麻醉药布比卡因降低了处于爆发状态的概率(IC50 = 165 nM)。这种闪烁的K通道明显不同于目前在同一制剂中鉴定出的其他五种类型的K通道。我们认为,该通道可能构成脊椎动物有髓轴突静息电位的分子基础。

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