Suppr超能文献

来自大鼠大脑的单个钠通道被整合到平面脂质双分子层膜中。

Single sodium channels from rat brain incorporated into planar lipid bilayer membranes.

作者信息

Krueger B K, Worley J F, French R J

出版信息

Nature. 1983;303(5913):172-5. doi: 10.1038/303172a0.

Abstract

A voltage- and time-dependent conductance for sodium ions is responsible for the generation of impulses in most nerve and muscle cells. Changes in the sodium conductance are produced by the opening and closing of many discrete transmembrane channels. We present here the first report of electrical recordings from voltage-dependent sodium channels incorporated into planar lipid bilayers. In bilayers with many channels, batrachotoxin (BTX) induced a steady-state sodium current that was blocked by saxitoxin (STX) at nanomolar concentrations. All channels appeared in the bilayer with their STX blocking sites facing the side of vesicle addition, allowing us to define that as the extracellular side. Current fluctuations due to the opening and closing of single BTX-activated sodium channels were voltage-dependent (unit conductance, 30 pS in 0.5 M NaCl): the channels closed at large hyperpolarizing potentials. Slower fluctuations of the same amplitude, due to the blocking and unblocking of individual channels, were seen after addition of STX. Block of the sodium channels by STX was voltage-dependent, with hyperpolarizing potentials favouring block. The voltage-dependent gating, ionic selectivity and neurotoxin sensitivity suggest that these are the channels that normally underlie the sodium conductance change during the nerve impulse.

摘要

钠离子的电压和时间依赖性电导负责大多数神经和肌肉细胞中冲动的产生。钠电导的变化是由许多离散的跨膜通道的开放和关闭引起的。我们在此展示了首次从整合到平面脂质双分子层中的电压依赖性钠通道进行电记录的报告。在具有许多通道的双分子层中,蛙毒素(BTX)诱导出一种稳态钠电流,该电流在纳摩尔浓度下被石房蛤毒素(STX)阻断。所有通道在双分子层中出现时,其STX阻断位点都面向囊泡添加侧,这使我们将该侧定义为细胞外侧。单个BTX激活的钠通道开放和关闭引起的电流波动是电压依赖性的(在0.5 M NaCl中单位电导为30 pS):通道在大的超极化电位下关闭。添加STX后,可以看到由于单个通道的阻断和解除阻断而产生的相同幅度的较慢波动。STX对钠通道的阻断是电压依赖性的,超极化电位有利于阻断。电压依赖性门控、离子选择性和神经毒素敏感性表明,这些通道通常是神经冲动期间钠电导变化的基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验