Wartenberg H C, Wang J, Rehberg B, Urban B W, Duch D S
Department of Anesthesiology and Physiology, Cornell University Medical School, New York, NY 10021.
Br J Anaesth. 1994 Jun;72(6):668-73. doi: 10.1093/bja/72.6.668.
The molecular mechanisms by which anaesthetics interfere with neuronal function are controversial. We have examined the effects of pentobarbitone on muscle-derived (eel electroplax) sodium channels incorporated into planar bilayers under exactly the same experimental conditions that we used previously to study the anaesthetic modification of human brain channels. This technique allows examination of protein-mediated similarities and differences. Sodium channels from the electroplax (muscle-derived) of the electric eel were purified and reconstituted into planar lipid bilayers containing 4:1 phosphatidylethanolamine:phosphatidylcholine in the presence of batrachotoxin, a sodium channel activator. Pentobarbitone had similar voltage-independent blocking effects on sodium channels from eel electroplax and human brain, as demonstrated by similar dose-response curves (IC50 = 613 mumol litre-1). However, activation of sodium channels from eel electroplax, in contrast with human brain, was relatively insensitive to the concentration of pentobarbitone. The only significant effect was a -5.8-mV shift in the activation midpoint with pentobarbitone 680 mumol litre-1. Therefore, differences in primary structures played no role in the observed voltage-independent block of channels by pentobarbitone, whereas subunits or other structural differences between sodium channels from eel electroplax and human brain must be responsible for the minimal effect of pentobarbitone on activation of muscle-derived sodium channels.
麻醉药干扰神经元功能的分子机制存在争议。我们在与之前研究麻醉药对人脑通道修饰时完全相同的实验条件下,研究了戊巴比妥对整合到平面双层中的肌肉来源(电鳗电板)钠通道的影响。这种技术能够检测蛋白质介导的异同。在钠通道激活剂蛙毒素存在的情况下,将电鳗电板(肌肉来源)的钠通道纯化并重组到含有4:1磷脂酰乙醇胺:磷脂酰胆碱的平面脂质双层中。戊巴比妥对电鳗电板和人脑中的钠通道具有相似的电压非依赖性阻断作用,相似的剂量反应曲线(IC50 = 613 μmol·L⁻¹)证明了这一点。然而,与人类大脑不同的是,电鳗电板钠通道的激活对戊巴比妥的浓度相对不敏感。唯一显著的影响是在680 μmol·L⁻¹戊巴比妥作用下,激活中点有-5.8 mV的偏移。因此,一级结构的差异在戊巴比妥对通道的电压非依赖性阻断中不起作用,而电鳗电板和人脑中钠通道之间的亚基或其他结构差异必定是戊巴比妥对肌肉来源钠通道激活影响极小的原因。