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利用洋地黄衍生物作为分析探针区分人及豚鼠肌肉中钠钾转运ATP酶的同工型

Differentiation between isoforms of Na+/K+-transporting atpase from human and guinea-pig muscle through use of digitalis derivatives as analytical probes.

作者信息

Schön R, Weiland J, Megges R, Repke K R

机构信息

Max Delbrück Center for Molecular Medicine, Berlin-Buch, Germany.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1995 Mar;351(3):282-92. doi: 10.1007/BF00233248.

Abstract

The aims of the study included: to explore the protein structure basis for the differences in digitalis sensitivity between isoforms of Na/K-ATPase from human and guinea-pig cardiac muscle; to determine the relative significance of the constituents of tripartite digitalis compounds in their inhibitory action on these Na/K-ATPase isoforms; to evaluate the potential significance of the receptor kinetics for pharmacological characteristics. The analytical method has been the recording of the inhibitory interaction of various digitalis derivatives with the Na/K-ATPase isoforms. The protein structure basis for the isoform differences in digitalis susceptibility has been explored by analysing in free-energy plots the kinetics of their inhibitory interaction with 53 digitalis derivatives of grossly different structure. The slope of the regression line and the parameters of the regression equation proved to be similar for the two isoforms in spite of the great difference in their digitalis susceptibilities. This surprising uniformity indicates that a uniform "macroscopic" mechanism underlies the inhibitory effect of the various derivatives on the two isoforms. On the other hand, the differences in the positions of delta Gon and delta Goff values for particular inhibitors relative to the regression line reveal differences in the "microscopic" interaction energy surfaces of the two isoforms. In conclusion, the origin of the isoform distinctions in their susceptibility towards inhibition by various digitalis derivatives is essentially confined to differences in the chemotopology of the digitalis recognition matrix and binding cleft. Specific observations allowed to disentangle the impact of various steroid derivatizations at carbon atoms 3, 17, and diverse other positions on the kinetics of their interaction with the enzyme isoforms. The steroid nucleus of the cardiac glycosides, 5 beta, 14 beta-androstane, proves to be the basal structural element for discrimination of Na/K-ATPase isoforms. This discrimination becomes much enlarged by steroid glycosidation at C3 beta-OH and/or by steroid substitution of C17 beta-H by a lactone ring. The higher inhibitory sensitivity of the human isoform is based either on an increased association rate or a decreased dissociation rate, depending on the nature of derivatization.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

该研究的目的包括

探究人及豚鼠心肌中钠钾-ATP酶同工型之间洋地黄敏感性差异的蛋白质结构基础;确定三联体洋地黄化合物的成分在其对这些钠钾-ATP酶同工型的抑制作用中的相对重要性;评估受体动力学对药理学特性的潜在重要性。分析方法是记录各种洋地黄衍生物与钠钾-ATP酶同工型的抑制相互作用。通过在自由能图中分析它们与53种结构差异极大的洋地黄衍生物的抑制相互作用动力学,探究了洋地黄敏感性同工型差异的蛋白质结构基础。尽管两种同工型的洋地黄敏感性差异很大,但回归线的斜率和回归方程的参数证明是相似的。这种惊人的一致性表明,各种衍生物对两种同工型的抑制作用存在统一的“宏观”机制。另一方面,特定抑制剂的ΔGon和ΔGoff值相对于回归线位置的差异揭示了两种同工型“微观”相互作用能表面的差异。总之,各种洋地黄衍生物对同工型抑制敏感性差异的根源基本上局限于洋地黄识别矩阵和结合裂隙的化学拓扑差异。具体观察结果有助于理清碳原子3、17及其他不同位置的各种类固醇衍生化对其与酶同工型相互作用动力学的影响。强心苷的类固醇核5β,14β-雄甾烷被证明是区分钠钾-ATP酶同工型的基础结构元素。通过C3β-OH处的类固醇糖基化和/或通过内酯环对C17β-H的类固醇取代,这种区分会大大扩大。人同工型较高的抑制敏感性要么基于结合速率的增加,要么基于解离速率的降低,这取决于衍生化的性质。(摘要截断于400字)

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