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布美他尼衍生物与肝细胞胆汁酸摄取的相互作用。

Interaction of bumetanide derivatives with hepatocellular bile acid uptake.

作者信息

Petzinger E, Föllmann W, Blumrich M, Schermuly R, Schulz S, Hahnen J, Feit P W

机构信息

Institute of Pharmacology and Toxicology, University of Giessen, Germany.

出版信息

Am J Physiol. 1993 Nov;265(5 Pt 1):G942-54. doi: 10.1152/ajpgi.1993.265.5.G942.

Abstract

The loop diuretic bumetanide is an organic monocarboxylic organic anion assumed to be transported into hepatocytes by a transport system for bile acids. The structural requirements of 22 bumetanide analogues were analyzed for an interaction with bile acid uptake into isolated rat hepatocytes. Whereas bumetanide inhibited the hepatocellular uptake of [14C]cholate to the same degree as its own uptake, derivatization altered affinity and specificity and yielded compounds that selectively inhibited either cholate or taurocholate uptake or uptake of both. No correlation was found between the diuretic potency of bumetanide derivatives, reflecting the affinity to the Na(+)-K(+)-Cl- cotransporter, and their affinity to hepatic bile salt transport. Computer-aided model building combined with the calculation of potential energy maps showed a strictly amphipathic charge separation in bumetanide analogues as in bile acids. Ranking bumetanide compounds by their mean inhibitory concentration values, inhibition constants, and their type of competition, we conclude that at least three binding domains in the proteins are essential for recognition by bile acid transporters, namely two hydrophobic and an anionic side, and that for the anionic binding region a carbonyl atom in the ligands as an electron donor group is sufficient for ligand interaction.

摘要

髓袢利尿剂布美他尼是一种有机单羧酸有机阴离子,被认为是通过胆汁酸转运系统转运到肝细胞内的。分析了22种布美他尼类似物与分离的大鼠肝细胞摄取胆汁酸之间相互作用的结构要求。布美他尼抑制[14C]胆酸盐的肝细胞摄取程度与其自身摄取程度相同,而衍生化改变了亲和力和特异性,产生了选择性抑制胆酸盐或牛磺胆酸盐摄取或两者摄取的化合物。布美他尼衍生物的利尿效力反映了其对Na(+)-K(+)-Cl-共转运体的亲和力,与其对肝脏胆汁盐转运的亲和力之间未发现相关性。计算机辅助模型构建结合势能图计算表明,布美他尼类似物与胆汁酸一样存在严格的两亲性电荷分离。根据布美他尼化合物的平均抑制浓度值、抑制常数及其竞争类型进行排序,我们得出结论,蛋白质中至少有三个结合结构域对于胆汁酸转运体的识别至关重要,即两个疏水结构域和一个阴离子侧链,并且对于阴离子结合区域,配体中的羰基原子作为电子供体基团足以实现配体相互作用。

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