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内源性洋地黄化学性质的化学模型。

Chemical models for the chemical nature of endogenous digitalis.

作者信息

Repke K R, Weiland J, Menke K H

机构信息

Zentralinstitut für Molekularbiologie, Akademie der Wissenschaften der DDR, Berlin, Germany.

出版信息

J Enzyme Inhib. 1991;5(1):25-32. doi: 10.3109/14756369109069057.

Abstract

The inability or the capacity to promote the phosphorylation of Na+/K(+)-transporting ATPase (Na/K-ATPase) from [32P]Pi is shown to differentiate between mechanistically digitalis-unlike and digitalis-like inhibitors of this enzyme known to be the receptor for all digitalis actions. A negative or positive response in the phosphorylation promotion assay introduced here appears thus to be suitable to diagnose the chemical species in the isolates of animal origin related to the putative endogenous digitalis. Various digitalis-congeneric C/D-cis steroids, progesterone-congeneric C/D-trans steroids and the Erythrophleum alkaloid cassaine promote the enzyme phosphorylation and show a similar pattern of discrimination between three Na/K-ATPase variants. Thus, their cyclopentanoperhydrophenanthrene or perhydrophenanthrene nuclei appear to serve as the minimal pharmacophoric lead structures for bimolecular recognition and to represent chemical models for the chemical nature of endogenous digitalis. Specifically, the hormonal C/D-trans steroids could provide the basic skeleton in endogenous digitalis biosynthesis.

摘要

从[32P]Pi促进钠/钾转运ATP酶(Na/K-ATP酶)磷酸化的能力缺失或具备这种能力,被证明可区分该酶在机制上与洋地黄不同及与洋地黄类似的抑制剂,已知该酶是所有洋地黄作用的受体。因此,在此处引入的磷酸化促进试验中的阴性或阳性反应,似乎适合诊断与假定内源性洋地黄相关的动物源分离物中的化学物质。各种洋地黄同系的C/D-顺式甾体、孕酮同系的C/D-反式甾体以及刺桐生物碱卡塞因可促进该酶的磷酸化,并在三种Na/K-ATP酶变体之间表现出类似的区分模式。因此,它们的环戊烷并多氢菲或多氢菲核似乎可作为双分子识别的最小药效基团先导结构,并代表内源性洋地黄化学性质的化学模型。具体而言,激素性C/D-反式甾体可为内源性洋地黄生物合成提供基本骨架。

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