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人黑素细胞中电压依赖性和河豚毒素敏感性钠通道的证实。

Demonstration of voltage-dependent and TTX-sensitive Na(+)-channels in human melanocytes.

作者信息

Ekmehag B, Persson B, Rorsman P, Rorsman H

机构信息

Department of Dermatology, University of Lund, Sweden.

出版信息

Pigment Cell Res. 1994 Oct;7(5):333-8. doi: 10.1111/j.1600-0749.1994.tb00636.x.

Abstract

The electrophysiological properties of cultured human melanocytes were investigated using the whole-cell configuration of the patch-clamp technique. Depolarizations to membrane potentials more positive than -30 mV resulted in the rapid development ( < 1 ms to peak) of an inward current. The maximum peak current was observed at +10 mV and reached an average amplitude of about 270 pA. During the depolarizations, the current inactivated with a time constant of about 2 ms. The current was abolished by the addition of 0.3 microM tetrodotoxin, a blocker of voltage-gated Na(+)-channels, and disappeared when Na+ was omitted from the extracellular medium. In addition, the melanocytes contain at least two types of outward K(+)-current. The first type, observed in every cell, was highly sensitive (Ki 1 mM) to the K(+)-channel blocker TEA, required depolarizations beyond zero to be activated and did not inactivate. The second type was less regularly observed (10% of the cells). This current activated at more negative voltages (-20 mV), was resistant to TEA (20 mM) but was blocked by 2 mM 4-aminopyridine and inactivated rapidly during depolarizations. We conclude that human melanocytes are equipped with voltage-dependent Na(+)-channels, a delayed rectifying K(+)-current and a K(+)-current similar to the A-current in neurones.

摘要

利用膜片钳技术的全细胞模式研究了培养的人黑素细胞的电生理特性。当去极化至膜电位高于 -30 mV时,会迅速产生内向电流(<1 ms达到峰值)。在 +10 mV时观察到最大峰值电流,平均幅度约为270 pA。在去极化过程中,电流以约2 ms的时间常数失活。加入0.3 μM河豚毒素(一种电压门控Na(+)通道阻滞剂)后电流被消除,当细胞外培养基中去除Na+时电流消失。此外,黑素细胞至少含有两种外向K(+)电流。第一种在每个细胞中均能观察到,对K(+)通道阻滞剂TEA高度敏感(Ki 1 mM),需要超过零电位的去极化才能激活,且不会失活。第二种电流观察到的频率较低(10%的细胞)。这种电流在更负的电压(-20 mV)下激活,对TEA(20 mM)有抗性,但被2 mM 4-氨基吡啶阻断,在去极化过程中迅速失活。我们得出结论,人黑素细胞具备电压依赖性Na(+)通道、延迟整流K(+)电流以及一种类似于神经元A电流的K(+)电流。

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