Corbett A M, Krueger B K
Department of Physiology, University of Maryland School of Medicine, Baltimore 21201.
J Membr Biol. 1990 Aug;117(2):163-76. doi: 10.1007/BF01868683.
Two different 3H-saxitoxin-binding proteins, with distinct biochemical and functional properties, were isolated from rat brain using a combination of anion exchange and lectin affinity chromatography as well as high resolution size exclusion and anion exchange HPLC. The alpha subunits of the binding proteins had different apparent molecular weights on SDS-PAGE (Type A: 235,000; Type B: 260,000). When reconstituted into planar lipid bilayers, the two saxitoxin-binding proteins formed sodium channels with different apparent single-channel conductances in the presence of batrachotoxin (Type A: 22 pS; Type B: 12 pS) and veratridine (Type A: 9 pS; Type B: 5 pS). The subtypes were further distinguished by scorpion (Leiurus quinquestriatus) venom which had different effects on single-channel conductance and gating of veratridine-activated Type A and Type B channels. Scorpion venom caused a 19% increase in single-channel conductance of Type A channels and a 35-mV hyperpolarizing shift in activation. Scorpion venom doubled the single-channel conductance of Type B channels and shifted activation by at least 85 mV.
利用阴离子交换和凝集素亲和层析以及高分辨率尺寸排阻和阴离子交换高效液相色谱相结合的方法,从大鼠脑中分离出两种具有不同生化和功能特性的3H-石房蛤毒素结合蛋白。结合蛋白的α亚基在SDS-PAGE上具有不同的表观分子量(A型:235,000;B型:260,000)。当重构到平面脂质双分子层中时,两种石房蛤毒素结合蛋白在存在蟾毒素(A型:22 pS;B型:12 pS)和藜芦碱(A型:9 pS;B型:5 pS)的情况下形成具有不同表观单通道电导的钠通道。这两种亚型还可以通过蝎毒(Leiurus quinquestriatus)进一步区分,蝎毒对藜芦碱激活的A型和B型通道的单通道电导和门控有不同影响。蝎毒使A型通道的单通道电导增加19%,并使激活电位发生35 mV的超极化偏移。蝎毒使B型通道的单通道电导加倍,并使激活电位至少偏移85 mV。