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用一种植物毒素中毒的有髓神经纤维中钠电流阻断和膜内电荷移动

Block of Na current and intramembrane charge movment in myelinated nerve fibres poisoned with a vegetable toxin.

作者信息

Dubois J M, Schneider M F

出版信息

Nature. 1981 Feb 19;289(5799):685-8. doi: 10.1038/289685a0.

Abstract

In nerve membrane, the non-linear capacity current (displacement current) is assumed to reflect the movement of intrinsic membrane charges which control the opening of specific pathways for sodium ions (Na channels). However, various discrepancies have been reported between the effects of pharmacological agents on sodium and displacment currents (for a review see ref. 1). It is generally supposed that the opening and closing of Na channels constitutes one step of multi-step system in which each configuration change may or not give rise to a measurable charge movement. New drugs affecting either sodium or displacement currents may elucidate the relationship between charge movement and the control of sodium conductance. We therefore now report a comparison of the effects of a vegetable toxin (oenanthotoxin or OETX) on both sodium current (INa) and intra-membrane charge movement (Q) in Ranvier nodes. We show that OETX reversibly blocks both sodium and displacement current. Studies of INa and Q during partial supression by the toxin reveal differences in the effects of OETX on the remaining INa and Q. The findings are discussed in relation to recent models for the Na-channel gating process and for Na-channel block by local anaesthetics.

摘要

在神经膜中,非线性电容电流(位移电流)被认为反映了内在膜电荷的移动,这些电荷控制着钠离子(Na通道)特定通路的开放。然而,已有报道称,药理剂对钠电流和位移电流的影响存在各种差异(综述见参考文献1)。一般认为,Na通道的开放和关闭构成了多步骤系统中的一个步骤,其中每种构型变化可能会或不会引起可测量的电荷移动。影响钠电流或位移电流的新药可能会阐明电荷移动与钠电导控制之间的关系。因此,我们现在报告一种植物毒素(庚酸毒素或OETX)对郎飞结处钠电流(INa)和膜内电荷移动(Q)影响的比较。我们表明,OETX可逆地阻断钠电流和位移电流。在毒素部分抑制期间对INa和Q的研究揭示了OETX对剩余INa和Q影响的差异。结合最近关于Na通道门控过程和局部麻醉药对Na通道阻滞的模型对这些发现进行了讨论。

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