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来自电鳗电板的纯化钠通道α-多肽的藜芦定修饰。

Veratridine modification of the purified sodium channel alpha-polypeptide from eel electroplax.

作者信息

Duch D S, Recio-Pinto E, Frenkel C, Levinson S R, Urban B W

机构信息

Department of Anesthesiology, Cornell University Medical College, New York, New York 10021.

出版信息

J Gen Physiol. 1989 Nov;94(5):813-31. doi: 10.1085/jgp.94.5.813.

Abstract

In the interest of continuing structure-function studies, highly purified sodium channel preparations from the eel electroplax were incorporated into planar lipid bilayers in the presence of veratridine. This lipoglycoprotein originates from muscle-derived tissue and consists of a single polypeptide. In this study it is shown to have properties analogous to sodium channels from another muscle tissue (Garber, S. S., and C. Miller. 1987. Journal of General Physiology. 89:459-480), which have an additional protein subunit. However, significant qualitative and quantitative differences were noted. Comparison of veratridine-modified with batrachotoxin-modified eel sodium channels revealed common properties. Tetrodotoxin blocked the channels in a voltage-dependent manner indistinguishable from that found for batrachotoxin-modified channels. Veratridine-modified channels exhibited a range of single-channel conductance and subconductance states. The selectivity of the veratridine-modified sodium channels for sodium vs. potassium ranged from 6-8 in reversal potential measurements, while conductance ratios ranged from 12-15. This is similar to BTX-modified eel channels, though the latter show a predominant single-channel conductance twice as large. In contrast to batrachotoxin-modified channels, the fractional open times of these channels had a shallow voltage dependence which, however, was similar to that of the slow interaction between veratridine and sodium channels in voltage-clamped biological membranes. Implications for sodium channel structure are discussed.

摘要

为了继续进行结构-功能研究,在藜芦碱存在的情况下,将从电鳗电板制备的高度纯化的钠通道整合到平面脂质双分子层中。这种脂蛋白糖蛋白起源于肌肉衍生组织,由一条单一多肽组成。在本研究中,它被证明具有与另一种肌肉组织的钠通道类似的特性(Garber, S. S., 和C. Miller. 1987. 《普通生理学杂志》. 89:459 - 480),后者有一个额外的蛋白质亚基。然而,也注意到了显著的定性和定量差异。比较藜芦碱修饰的和蟾毒素修饰的电鳗钠通道发现了共同特性。河豚毒素以一种与蟾毒素修饰的通道无法区分的电压依赖性方式阻断通道。藜芦碱修饰的通道表现出一系列单通道电导和亚电导状态。在反转电位测量中,藜芦碱修饰的钠通道对钠与钾的选择性范围为6 - 8,而电导比范围为12 - 15。这与蟾毒素修饰的电鳗通道相似,尽管后者显示出占主导的单通道电导是前者的两倍。与蟾毒素修饰的通道不同,这些通道的开放时间分数具有较弱的电压依赖性,不过这与藜芦碱和电压钳制生物膜中的钠通道之间的缓慢相互作用相似。本文讨论了对钠通道结构的影响。

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