El-Fakahany E E, Eldefrawi A T, Murphy D L, Aguayo L G, Triggle D J, Albuquerque E X, Eldefrawi M E
Mol Pharmacol. 1984 May;25(3):369-78.
[3H]Phencyclidine ( [3H]PCP) bound to crayfish abdominal muscle membranes at pH 7.4 with two affinities (Kd of 0.96 nM for 0.38 pmole/mg of protein, and 18.9 nM for 7.6 pmoles/mg of protein). Binding affinities increased at higher pH, suggesting that binding may be due mostly to the un-ionized form of [3H]PCP. This high-affinity [3H]PCP binding was sensitive to the actions of trypsin, protease, and dicyclohexylcarbodiimide, but insensitive to phospholipase A, concanavalin A,N-ethylmaleimide, and dithiothreitol. Calcium channel antagonists were most potent in inhibiting the high-affinity [3H]PCP binding with the following descending order of potencies: bepridil greater than nicardipine = diltiazem = verapamil greater than cinnarizine greater than (+)-D-600 greater than (-)-D-600 greater than 4-NO2-nifedipine greater than 2-NO2-nifedipine. The binding was also highly sensitive to several PCP analogues, antipsychotics, piperocaine , and tilorone, and moderately sensitive to d-tubocurarine, atropine, imipramine, nortryptyline , and tetracaine. Although verapamil and nifedipine inhibited the action potential of crayfish muscle, PCP did not and actually prolonged slightly the falling phase of the action potential. Although it is unlikely that the [3H]PCP binding protein in crayfish muscles is a Ca2+ channel, it is possible that it may be a K+ channel.
[3H]苯环己哌啶([3H]PCP)在pH 7.4条件下与小龙虾腹部肌肉膜结合,存在两种亲和力(蛋白质含量为0.38皮摩尔/毫克时,解离常数Kd为0.96纳摩尔;蛋白质含量为7.6皮摩尔/毫克时,解离常数Kd为18.9纳摩尔)。在较高pH值下,结合亲和力增加,这表明结合可能主要归因于[3H]PCP的非离子化形式。这种高亲和力的[3H]PCP结合对胰蛋白酶、蛋白酶和二环己基碳二亚胺的作用敏感,但对磷脂酶A、伴刀豆球蛋白A、N-乙基马来酰亚胺和二硫苏糖醇不敏感。钙通道拮抗剂在抑制高亲和力[3H]PCP结合方面最为有效,其效力顺序如下:苄普地尔>尼卡地平 = 地尔硫卓 = 维拉帕米>桂利嗪>(+)-D-600>(-)-D-600>4-硝基硝苯地平>2-硝基硝苯地平。该结合对几种PCP类似物、抗精神病药物、匹哌卡因和替洛隆也高度敏感,对d-筒箭毒碱、阿托品、丙咪嗪、去甲替林和丁卡因中度敏感。尽管维拉帕米和硝苯地平抑制小龙虾肌肉的动作电位,但PCP却没有,实际上还略微延长了动作电位的下降期。虽然小龙虾肌肉中的[3H]PCP结合蛋白不太可能是Ca2+通道,但有可能是K+通道。