Levin R M, Weiss B
Biochim Biophys Acta. 1978 May 3;540(2):197-204. doi: 10.1016/0304-4165(78)90132-0.
Trifluoperazine inhibits the activation of phosphodiesterase by binding to the calcium-dependent activator. To determine further the specificity by which trifluoperazine binds to activator, we compared the binding of trifluoperazine to activator prepared from several species and tissues and to a number of other calcium-binding proteins devoid of activator activity. Trifluoperazine binds to activator prepared from human, bovine, rat and rabbit brain and from chick embryo fibroblasts. In each case, the binding of trifluoperazine to activator was qualitatively similar and related quantitatively to the ability of the preparation to activate phosphodiesterase. Of the other calcium-binding proteins examined, namely, troponin-C, S-100 protein, phospholipase A, phospholipase B and myosin light chain, only troponin-C displayed any significant calcium-specific binding of trifluoperazine. The binding to troponin-C, however, appeared to be different from the binding to activator; whereas the binding of trifluoperazine to actovator showed no cooperativity, the binding to troponin-C showed positive cooperatively. These results and earlier data showing that trifluoperazine fails to bind to a variety of other proteins, indicate that the binding of trifluoperazine to the calcium-dependent activator of phosphodiesterase is selective and suggest that this binding may explain some of the biochemical and pharmacological actions of this antipsychotic agent.
三氟拉嗪通过与钙依赖性激活剂结合来抑制磷酸二酯酶的激活。为了进一步确定三氟拉嗪与激活剂结合的特异性,我们比较了三氟拉嗪与从几种物种和组织制备的激活剂以及与许多其他缺乏激活剂活性的钙结合蛋白的结合情况。三氟拉嗪能与从人、牛、大鼠和兔脑以及鸡胚成纤维细胞制备的激活剂结合。在每种情况下,三氟拉嗪与激活剂的结合在性质上相似,并且在数量上与该制剂激活磷酸二酯酶的能力相关。在所检测的其他钙结合蛋白中,即肌钙蛋白-C、S-100蛋白、磷脂酶A、磷脂酶B和肌球蛋白轻链,只有肌钙蛋白-C显示出三氟拉嗪有任何显著的钙特异性结合。然而,与肌钙蛋白-C的结合似乎与与激活剂的结合不同;三氟拉嗪与激活剂的结合没有协同性,而与肌钙蛋白-C的结合显示出正协同性。这些结果以及早期数据表明三氟拉嗪不能与多种其他蛋白质结合,这表明三氟拉嗪与磷酸二酯酶的钙依赖性激活剂的结合是选择性的,并表明这种结合可能解释了这种抗精神病药物的一些生化和药理作用。