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吩噻嗪类抗精神病药通过三元络合作用逆转双香豆素-α1-酸性糖蛋白系统诱导的棉效应的体征。

Reversal of signs of induced cotton effects of dicumarol-alpha 1-acid glycoprotein systems by phenothiazine neuroleptics through ternary complexation.

作者信息

Miyoshi T, Yamamichi R, Maruyama T, Otagiri M

机构信息

Faculty of Pharmaceutical Sciences, Kumamoto University, Japan.

出版信息

Pharm Res. 1992 Jul;9(7):845-9. doi: 10.1023/a:1015880327911.

Abstract

The interaction of dicumarol and phenothiazine neuroleptics binding to alpha 1-acid glycoprotein (AGP) was investigated by circular dichroism (CD) and equilibrium dialysis. The induced CD spectra of the dicumarol-AGP complex were affected differently by the different substituents of the phenothiazine molecule. The sign of the induced Cotton effect of dicumarol bound to AGP was reversibly changed with the introduction of the propyldimethylamine substituent at position 10 or chloride group at position 2 of the phenothiazine molecule. Chlorpromazine, which contains both of these substituents reversed the sign of the induced Cotton effect with the highest intensity. The addition of trifluoperazine, fluphenazine, and promethazine containing neither of the two substituents generated a new negative CD band. However, the addition of opromazine, which contains sulfoxide at position 5, decreased the CD intensity of the dicumarol-AGP complex without changing the shape of the CD spectra. Equilibrium dialysis studies revealed that the interaction of dicumarol-AGP with phenothiazine derivatives occurred simultaneously, and the interaction followed a cooperative and anticooperative binding model. Further, among the six phenothiazine derivatives that reversed the signs of the induced Cotton effects of the dicumarol-AGP complex, a linear relationship was observed between coupling constants and the difference in the induced optical ellipticity. The opromazine and dicumarol interaction was competitive for a common binding site on the AGP molecule. Removal of sialic acid did not have any effect on this interaction. These data support the hypothesis that the acidic and the basic drug binding sites overlap each other.

摘要

通过圆二色性(CD)和平衡透析法研究了双香豆素与吩噻嗪类抗精神病药物与α1-酸性糖蛋白(AGP)的相互作用。双香豆素-AGP复合物的诱导CD光谱受吩噻嗪分子不同取代基的影响不同。与AGP结合的双香豆素诱导的科顿效应的符号随着在吩噻嗪分子的10位引入丙基二甲胺取代基或在2位引入氯基团而可逆地改变。同时含有这两种取代基的氯丙嗪以最高强度反转了诱导的科顿效应的符号。添加既不含有这两种取代基的三氟拉嗪、氟奋乃静和异丙嗪产生了一个新的负CD带。然而,添加在5位含有亚砜的奥丙嗪降低了双香豆素-AGP复合物的CD强度,而不改变CD光谱的形状。平衡透析研究表明,双香豆素-AGP与吩噻嗪衍生物的相互作用同时发生,并且这种相互作用遵循协同和反协同结合模型。此外,在六种反转双香豆素-AGP复合物诱导的科顿效应符号的吩噻嗪衍生物中,观察到耦合常数与诱导的旋光椭圆率差异之间存在线性关系。奥丙嗪与双香豆素的相互作用在AGP分子上的一个共同结合位点上具有竞争性。去除唾液酸对这种相互作用没有任何影响。这些数据支持酸性和碱性药物结合位点相互重叠的假设。

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