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将高度纯化的对石房蛤毒素敏感的钠离子通道重组到平面脂双层中。

Reconstitution of highly purified saxitoxin-sensitive Na+-channels into planar lipid bilayers.

作者信息

Hanke W, Boheim G, Barhanin J, Pauron D, Lazdunski M

出版信息

EMBO J. 1984 Mar;3(3):509-15. doi: 10.1002/j.1460-2075.1984.tb01839.x.

Abstract

Highly purified Na+-channels isolated from rat brain have been reconstituted into virtually solvent-free planar lipid bilayer membranes. Two different types of electrically excitable channels were detected in the absence of any neurotoxins. The activity of both channels was blocked by saxitoxin. The first channel type is highly selective for Na+ over K+ (approximately 10:1), it shows a bursting behavior, a conductance of 25 pS in Na+-Ringer and undergoes continuous opening and closing events for periods of minutes within a defined range of negative membranes voltages. The second channel type has a conductance of 150 pS and a lower selectivity for Na+ and K+ (2.2:1); only a few opening and closing events are observed with this channel after one voltage jump. The latter type of channel is also found with highly purified Na+-channel from Electrophorus electricus electroplax. A qualitative analysis of the physicochemical and pharmacological properties of the high conductance channel has been carried out. Channel properties are affected not only by saxitoxin but also by a scorpion (Centruroides suffusus suffusus) toxin and a sea anemone (Anemonia sulcata) toxin both known to be selective for the Na+-channel. The spontaneous transformation of the large conductance channel type into the small one has been considered; the two channel types may represent the expression of activity of different conformational states of the same protein.

摘要

从大鼠脑中分离出的高度纯化的钠离子通道已被重构到几乎无溶剂的平面脂质双分子层膜中。在没有任何神经毒素的情况下检测到两种不同类型的电兴奋性通道。两种通道的活性均被石房蛤毒素阻断。第一种通道类型对钠离子的选择性远高于钾离子(约为10:1),呈现爆发性行为,在钠离子林格氏液中的电导为25皮安,在限定的负膜电压范围内,会在数分钟内持续发生开放和关闭事件。第二种通道类型的电导为150皮安,对钠离子和钾离子的选择性较低(2.2:1);在一次电压跃变后,该通道仅观察到少数几次开放和关闭事件。后一种通道类型在从电鳗电板分离出的高度纯化的钠离子通道中也能找到。已经对高电导通道的物理化学和药理学特性进行了定性分析。通道特性不仅受到石房蛤毒素的影响,还受到蝎子(墨西哥毒蝎)毒素和海葵(沟迎风海葵)毒素的影响,这两种毒素都已知对钠离子通道具有选择性。已经考虑了大电导通道类型自发转变为小电导通道类型的情况;这两种通道类型可能代表了同一蛋白质不同构象状态活性的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e7c/557379/37601ba33b4f/emboj00307-0030-a.jpg

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