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在薄片制备中研究大鼠背根神经节小神经元钙激活钾通道的特性和功能。

Properties and functions of calcium-activated K+ channels in small neurones of rat dorsal root ganglion studied in a thin slice preparation.

作者信息

Scholz A, Gruss M, Vogel W

机构信息

Physiologisches Institut, Justus-Liebig-Universitat Giessen, Aulweg 129, D-35392 Giessen, Germany.

出版信息

J Physiol. 1998 Nov 15;513 ( Pt 1)(Pt 1):55-69. doi: 10.1111/j.1469-7793.1998.055by.x.

Abstract
  1. Properties, kinetics and functions of large conductance calcium-activated K+ channels (BKCa) were investigated by the patch-clamp technique in small neurones (Adelta- and C-type) of a dorsal root ganglion (DRG) thin slice preparation without enzymatic treatment. 2. Unitary conductance of BKCa channels measured in symmetrical high K+ solutions (155 mM) was 200 pS for inward currents, and chord conductance in control solution was 72 pS. Potentials of half-maximum activation (V ) of the channels were linearly shifted by 43 mV per log10 [Ca2+]i unit (pCa) in the range of -28 mV (pCa 4) to +100 mV (pCa 7). Open probabilities increased e-times per 15-32 mV depolarization of potential. 3. In mean open probability, fast changes with time were mainly observed at pCa > 6 and at potentials > +20 mV, without obvious changes in the experimental conditions. 4. BKCa channels were half-maximally blocked by 0.4 mM TEA, measured by apparent amplitude reductions. They were completely blocked by 100 nM charybdotoxin and 50 nM iberiotoxin by reduction of open probability. 5. Two subtypes of small DRG neurones could be distinguished by the presence (type I) or absence (type II) of BKCa channels. In addition, less than 10 % of small neurones showed fast (approximately 135 V s-1) and short ( approximately 0.8 ms) action potentials (AP). 6. The main functions of BKCa channels were found to be shortening of AP duration, increasing of the speed of repolarization and contribution to the fast after-hyperpolarization. As a consequence, BKCa channels may reduce the amount of calcium entering a neurone during an AP. 7. BKCa channel currents suppressed a subsequent AP and prolonged the refractory period, which might lead to a reduced repetitive activity. We suggest that the BKCa current is a possible mechanism of the reported conduction failure during repetitive stimulation in DRG neurones.
摘要
  1. 采用膜片钳技术,在未经酶处理的背根神经节(DRG)薄片制备的小神经元(Aδ型和C型)中研究了大电导钙激活钾通道(BKCa)的特性、动力学和功能。2. 在对称高钾溶液(155 mM)中测得的BKCa通道的单位电导,内向电流为200 pS,对照溶液中的弦电导为72 pS。通道的半数最大激活电位(V)在-28 mV(pCa 4)至+100 mV(pCa 7)范围内,每log10 [Ca2+]i单位(pCa)线性偏移43 mV。开放概率每15 - 32 mV的电位去极化增加e倍。3. 在平均开放概率方面,主要在pCa > 6且电位 > +20 mV时观察到随时间的快速变化,实验条件无明显变化。4. 通过表观幅度降低测量,BKCa通道被0.4 mM TEA半数最大阻断。它们被100 nM 蝎毒素和50 nM iberiotoxin通过降低开放概率完全阻断。5. 小DRG神经元的两种亚型可通过BKCa通道的存在(I型)或不存在(II型)来区分。此外,不到10%的小神经元表现出快速(约135 V s-1)和短暂(约0.8 ms)的动作电位(AP)。6. 发现BKCa通道的主要功能是缩短动作电位持续时间、增加复极化速度以及对快速后超极化有贡献。因此,BKCa通道可能减少动作电位期间进入神经元的钙量。7. BKCa通道电流抑制后续动作电位并延长不应期,这可能导致重复活动减少。我们认为BKCa电流是DRG神经元重复刺激期间报道的传导失败的一种可能机制。

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