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人胎盘来源的高Km可溶性5'-核苷酸酶。IMP和ATP对其性质及别构调节作用

High Km soluble 5'-nucleotidase from human placenta. Properties and allosteric regulation by IMP and ATP.

作者信息

Spychała J, Madrid-Marina V, Fox I H

机构信息

Department of Internal Medicine, University Hospital, Ann Arbor, Michigan 48109-0108.

出版信息

J Biol Chem. 1988 Dec 15;263(35):18759-65.

PMID:2848805
Abstract

A human placental soluble "high Km" 5'-nucleotidase has been separated from "low Km" 5'-nucleotidase and nonspecific phosphatase by AMP-Sepharose affinity chromatography. The enzyme was purified 8000-fold to a specific activity of 25.6 mumol/min/mg. The subunit molecular mass is 53 kDa, and the native molecular mass is 210 kDa, suggesting a tetrameric structure. Soluble high Km 5'-nucleotidase is most active with IMP and GMP and their deoxy derivatives. IMP is hydrolyzed 15 times faster than AMP. The enzyme has a virtually absolute requirement for magnesium ions and is regulated by them. Purine nucleoside 5'-triphosphates strongly activate the enzyme with the potency order dATP greater than ATP greater than GTP. 2,3-Diphosphoglycerate activates the enzyme as potently as ATP. Three millimolar ATP decreased the Km for IMP from 0.33 to 0.09 mM and increased the Vmax 12-fold. ATP activation was modified by the IMP concentration. At 20 microM IMP the ATP-dependent activation curve was sigmoidal, while at 2 mM IMP it was hyperbolic. The A0.5 values for ATP were 2.26 and 0.70 mM, and the relative maximal velocities were 32.9 and 126.0 nmol/min, respectively. Inorganic phosphate shifts the hyperbolic substrate velocity relationship for IMP to a sigmoidal one. With physiological concentrations of cofactors (3 mM ATP, 1-4 mM Pi, 150 mM KCl) at pH 7.4, the enzyme is 25-35 times more active toward 100 microM IMP than 100 microM AMP. These data show that: (a) soluble human placental high Km 5'-nucleotidase coexists in human placenta with the low Km enzyme; (b) under physiological conditions the enzyme favors the hydrolysis of IMP and is critically regulated by IMP, ATP, and Pi levels; and (c) kinetic properties of ATP and IMP are each modified by the other compound suggesting complex interaction of the associated binding sites.

摘要

通过AMP - Sepharose亲和层析,已从“低Km”5'-核苷酸酶和非特异性磷酸酶中分离出一种人胎盘可溶性“高Km”5'-核苷酸酶。该酶被纯化了8000倍,比活性达到25.6 μmol/分钟/毫克。亚基分子量为53 kDa,天然分子量为210 kDa,表明其为四聚体结构。可溶性高Km 5'-核苷酸酶对IMP和GMP及其脱氧衍生物的活性最高。IMP的水解速度比AMP快15倍。该酶对镁离子几乎有绝对需求,并受其调节。嘌呤核苷5'-三磷酸强烈激活该酶,其效力顺序为dATP大于ATP大于GTP。2,3 -二磷酸甘油酸激活该酶的效力与ATP相当。3 mM的ATP使IMP的Km从0.33 mM降至0.09 mM,并使Vmax增加了12倍。ATP的激活作用受IMP浓度的影响。在20 μM IMP时,ATP依赖性激活曲线呈S形,而在2 mM IMP时则呈双曲线形。ATP的A0.5值分别为2.26和0.70 mM,相对最大速度分别为32.9和126.0 nmol/分钟。无机磷酸盐将IMP的双曲线底物速度关系转变为S形。在pH 7.4的生理辅因子浓度(3 mM ATP、1 - 4 mM Pi、150 mM KCl)下,该酶对100 μM IMP的活性比对100 μM AMP的活性高25 - 35倍。这些数据表明:(a) 可溶性人胎盘高Km 5'-核苷酸酶与人胎盘低Km酶共存;(b) 在生理条件下,该酶有利于IMP的水解,并受IMP、ATP和Pi水平的严格调节;(c) ATP和IMP的动力学性质均受到另一种化合物的影响,表明相关结合位点之间存在复杂的相互作用。

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