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磷酸乙醇酸磷酸酶。阳离子和pH对活性的影响。

Phosphoglycolate phosphatase. Effect of cation and pH on activity.

作者信息

Christeller J T, Tolbert N E

出版信息

J Biol Chem. 1978 Mar 25;253(6):1786-90.

PMID:24629
Abstract

P-glycolate phosphatase requires divalent cations for activity. Activity-pH curves identified 2 active site residues with pK values at pH 5.7 and pH 9.1 in the presence of magnesium and at pH 5.7 and pH 7.5 in the presence of manganese or cobalt. Saturation velocity kinetics enabled the identification of two distinct divalent cation binding sites. The first, nonspecific site has a K0.5 of 2 to 7 x 10(-5) M, depending on the cation and the pH. The second site, which is specific for magnesium, binds this cation in a negatively cooperative fashion. The affinity at pH 8.1 varies approximately 100-fold from the first magnesium bound to the fourth. The negative cooperativity is greatest at high pH. Because the pH range of activity is very broad, both the phosphate monoanion and dianion of P-glycolate must be bound as the substrate. The concentration of these two species at the apparent Km is independent of magnesium concentration. The P-glycolate.magnesium complex is kinetically inactive.

摘要

磷酸乙醇酸磷酸酶的活性需要二价阳离子。活性-pH曲线表明,在镁存在的情况下,有两个活性位点残基的pK值分别为pH 5.7和pH 9.1;在锰或钴存在的情况下,pK值分别为pH 5.7和pH 7.5。饱和速度动力学能够鉴定出两个不同的二价阳离子结合位点。第一个是非特异性位点,其K0.5为2至7×10⁻⁵ M,具体取决于阳离子和pH值。第二个位点对镁具有特异性,以负协同方式结合该阳离子。在pH 8.1时,从第一个结合的镁到第四个结合的镁,亲和力大约相差100倍。负协同效应在高pH时最为明显。由于活性的pH范围非常宽,磷酸乙醇酸的磷酸单阴离子和二阴离子都必须作为底物结合。在表观Km处,这两种物质的浓度与镁浓度无关。磷酸乙醇酸-镁复合物在动力学上无活性。

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