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骨骺软骨膜碱性磷酸酶在生理pH值下的活性及其抑制剂的作用

Activity of epiphyseal cartilage membrane alkaline phosphatase and the effects of its inhibitors at physiological pH.

作者信息

Cyboron G W, Vejins M S, Wuthier R E

出版信息

J Biol Chem. 1982 Apr 25;257(8):4141-6.

PMID:6917850
Abstract

The kinetics of epiphyseal cartilage membrane-bound alkaline phosphatase activity was studied at physiological pH using p-nitrophenylphosphate and pyrophosphate (PPi) as substrates. The effect of three general types of alkaline phosphatase inhibitors was studied on both purified and membrane-bound forms of the enzyme: 1) uncompetitive inhibitors (L-tetramisole and theophylline), 2) competitive inhibitors (phosphate, arsenate, and vanadate), and 3) metal ions (Mg2+, Ca2+, and Zn2+). These studies were aimed at elucidating the physiological role of epiphyseal cartilage membrane alkaline phosphatase. Hydrolytic activity of enzyme at pH 7.5 toward both PPi and p-nitrophenylphosphate was only one-tenth and one-hundredth, respectively, of that observed at optimal pH. Arsenate (Ki - 1.0-2.7 microM) and vanadate (Ki = 0.7-1.3 microM) were powerful inhibitors of alkaline phosphatase; phosphate (Ki = 20-50 microM) was inhibitory at levels two orders of magnitude below the concentration in cartilage extracellular fluid. Neither Zn2+, Ca2+, or Mg2+ was inhibitory toward p-nitrophenylphosphate hydrolysis, whereas all three competitively inhibited PPi hydrolysis. The data suggest that formation of poorly hydrolyzable Ca.PPi, Mg2.PPi, and Zn2.PPi complexes was responsible. Inhibition of PPi hydrolysis by Ca2+ occurred at levels within the physiological range. The close similarity in inhibition of both the purified and membrane-bound forms of alkaline phosphatase at pH 7.5 indicates that interaction with the membrane does not significantly alter conformation at the active site. The data obtained suggest that under physiological conditions, cartilage membrane alkaline phosphatase would be essentially inactive as a phosphohydrolase due to its intrinsically weak activity at pH 7.5 and the strong inhibitory effect of physiological levels of phosphate and Ca2+.

摘要

在生理pH值条件下,以对硝基苯磷酸酯和焦磷酸(PPi)为底物,研究了骨骺软骨膜结合碱性磷酸酶活性的动力学。研究了三种常见类型的碱性磷酸酶抑制剂对纯化形式和膜结合形式酶的影响:1)非竞争性抑制剂(L-四咪唑和茶碱),2)竞争性抑制剂(磷酸盐、砷酸盐和钒酸盐),3)金属离子(Mg2+、Ca2+和Zn2+)。这些研究旨在阐明骨骺软骨膜碱性磷酸酶的生理作用。在pH 7.5时,酶对PPi和对硝基苯磷酸酯的水解活性分别仅为在最佳pH值下观察到的活性的十分之一和百分之一。砷酸盐(Ki - 1.0 - 2.7 microM)和钒酸盐(Ki = 0.7 - 1.3 microM)是碱性磷酸酶的强效抑制剂;磷酸盐(Ki = 20 - 50 microM)在低于软骨细胞外液浓度两个数量级的水平上具有抑制作用。Zn2+、Ca2+或Mg2+对硝基苯磷酸酯水解均无抑制作用,而这三种离子均竞争性抑制PPi水解。数据表明,形成难水解的Ca.PPi、Mg2.PPi和Zn2.PPi复合物是其原因。Ca2+对PPi水解的抑制作用发生在生理范围内。在pH 7.5时,纯化形式和膜结合形式碱性磷酸酶的抑制作用非常相似,这表明与膜的相互作用不会显著改变活性位点的构象。所获得的数据表明,在生理条件下,软骨膜碱性磷酸酶作为磷酸水解酶基本上是无活性的,这是由于其在pH 7.5时固有活性较弱以及生理水平的磷酸盐和Ca2+具有强烈的抑制作用。

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