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腺苷的大分子荧光衍生物与低亲和力E2ATP位点紧密结合会导致钠钾ATP酶受到抑制。用两个相互作用的ATP位点的科什兰德-内梅蒂-菲尔默模型分析荧光ATP衍生物的结构要求

Tight binding of bulky fluorescent derivatives of adenosine to the low affinity E2ATP site leads to inhibition of Na+/K+-ATPase. Analysis of structural requirements of fluorescent ATP derivatives with a Koshland-Némethy-Filmer model of two interacting ATP sites.

作者信息

Thoenges D, Amler E, Eckert T, Schoner W

机构信息

Institute of Biochemistry and Endocrinology, Justus-Liebig-University Giessen, D-35392 Giessen, Germany.

出版信息

J Biol Chem. 1999 Jan 22;274(4):1971-8. doi: 10.1074/jbc.274.4.1971.

Abstract

A Koshland-Némethy-Filmer model of two cooperating ATP sites has previously been shown to explain the kinetics of inhibition of Na+/K+-ATPase (EC 3.6.1.37) by dansylated ATP (Thoenges, D., and Schoner, W. (1997) J. Biol. Chem. 272, 16315-16321). The present work demonstrates that this model adequately describes all types of interactions and kinetics of a number of ATP analogs that differ in their cooperativity of the high and low affinity ATP binding sites of the enzyme. 2',3'-O(2,4,6-trinitrophenyl)ATP binds in a negative cooperative way to the E1ATP site (Kd = 0.7 microM) and to the E2ATP site (Kd = 210 microM), but 3'(2')-O-methylanthraniloyl-ATP in a positive cooperative way with a lower affinity to the E1ATP binding site (Kd = 200 microM) than to the E2ATP binding site (Kd = 80 microM). 3'(2')-O(5-Fluor-2,4-dinitrophenyl)-ATP, however, binds in a noncooperative way, with equal affinities to both ATP binding sites (Kd = 10 microM). In a research for the structural parameters determining ATP site specificity and cooperativity, we became aware that structural flexibility of ribose is necessary for catalysis. Moreover, puckering of the ring atoms in the ribose is essential for the interaction between ATP sites in Na+/K+-ATPase. A number of derivatives of 2'(3')-O-adenosine with bulky fluorescent substitutes bind with high affinity to the E2ATP site and inhibit Na+/K+-ATPase activity. Evidently, an increased number of interactions of such a bulky adenosine with the enzyme protein tightens binding to the E2ATP site.

摘要

先前已证明,两个协同ATP位点的科什兰德-内梅蒂-菲尔默模型可以解释丹磺酰化ATP对钠钾ATP酶(EC 3.6.1.37)的抑制动力学(托恩格斯,D.,和舍纳,W.(1997年)《生物化学杂志》272,16315 - 16321)。目前的研究表明,该模型能够充分描述多种ATP类似物的所有类型相互作用和动力学,这些类似物在酶的高亲和力和低亲和力ATP结合位点的协同性方面存在差异。2',3'-O(2,4,6-三硝基苯基)ATP以负协同方式结合到E1ATP位点(Kd = 0.7微摩尔)和E2ATP位点(Kd = 210微摩尔),但3'(2')-O-甲基邻氨基苯甲酰基-ATP以正协同方式结合,对E1ATP结合位点(Kd = 200微摩尔)的亲和力低于对E2ATP结合位点(Kd = 80微摩尔)的亲和力。然而,3'(2')-O(5-氟-2,4-二硝基苯基)-ATP以非协同方式结合,对两个ATP结合位点的亲和力相等(Kd = 10微摩尔)。在研究决定ATP位点特异性和协同性的结构参数时,我们意识到核糖的结构灵活性对于催化是必要的。此外,核糖中环原子的褶皱对于钠钾ATP酶中ATP位点之间的相互作用至关重要。许多带有庞大荧光取代基的2'(3')-O-腺苷衍生物以高亲和力结合到E2ATP位点并抑制钠钾ATP酶活性。显然,这种庞大腺苷与酶蛋白的相互作用数量增加会加强与E2ATP位点的结合。

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