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猪肾碱性磷酸酶的催化特性

Catalytic properties of alkaline phosphatase from pig kidney.

作者信息

Hiwada K, Wachsmuth E D

出版信息

Biochem J. 1974 Jul;141(1):283-91. doi: 10.1042/bj1410283.

Abstract

The enzymic properties of alkaline phosphatase (EC 3.1.3.1) from pig kidney brush-border membranes were studied. 1. It hydrolyses ortho- and pyro-phosphate esters, the rate limiting step (V(max.)) being independent of the substrate. It transphosphorylates to Tris at concentrations above 0.1m-Tris. 2. The pH optimum for hydrolysis was between 9.8 and 10. The pK of the enzyme-substrate complex is 8.7 for p-nitrophenyl phosphate and beta-glycerophosphate. Excess of substrate inhibits the enzymic activity with decreasing pH. The pK of the substrate-inhibited enzyme-substrate complex, 8.7, is very similar to that for the enzyme-substrate complex. The pK values of the free enzyme appear to be 8.7 and 7.9. 3. Inactivation studies suggest that there is an essential tyrosine residue at the active centre of the enzyme. 4. The energy of activation (E) and the heat of activation (DeltaH) at pH9.5 showed a transition at 24.8 degrees C that was unaffected by Mg(2+). 5. Kinetic and atomic-absorption analysis indicated the essential role of two Zn(2+) ions/tetrameric enzyme for an ordered association of the monomers. Zn(2+) in excess and other bivalent ions compete for a second site with Mg(2+). Mg(2+) enhances only the rate-limiting step of substrate hydrolysis. 6. Amino acid inhibition studies classified the pig kidney enzyme as an intermediate type of previously described alkaline phosphatases. It has more similarity with the enzyme from liver and bone than with that from placenta.

摘要

对猪肾刷状缘膜碱性磷酸酶(EC 3.1.3.1)的酶学性质进行了研究。1. 它能水解正磷酸酯和焦磷酸酯,限速步骤(V(max.))与底物无关。在浓度高于0.1m-Tris时,它能将磷酸基转移至Tris。2. 水解的最适pH在9.8至10之间。对于对硝基苯磷酸酯和β-甘油磷酸酯,酶-底物复合物的pK为8.7。底物过量时,随着pH降低会抑制酶活性。底物抑制的酶-底物复合物的pK为8.7,与酶-底物复合物的pK非常相似。游离酶的pK值似乎为8.7和7.9。3. 失活研究表明,该酶活性中心存在一个必需的酪氨酸残基。4. 在pH9.5时,活化能(E)和活化热(ΔH)在24.8℃出现转变,此转变不受Mg(2+)影响。5. 动力学和原子吸收分析表明,每个四聚体酶中的两个Zn(2+)离子对于单体的有序缔合起着关键作用。过量的Zn(2+)和其他二价离子与Mg(2+)竞争第二个位点。Mg(2+)仅增强底物水解的限速步骤。6. 氨基酸抑制研究将猪肾酶归类为先前描述的碱性磷酸酶的中间类型。它与肝脏和骨骼中的酶比与胎盘来源的酶更相似。

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