Nedeljkovic N, Banjac A, Horvat A, Stojiljkovic M, Nikezic G
Department of General Physiology and Biophysics, Faculty of Biology, University of Belgrade, Studentski trg 3, 11001 Belgrade, Yugoslavia.
Physiol Res. 2003;52(6):797-804.
Enzymes that hydrolyze extracellular ATP, i.e. ecto-ATPase and ecto-ATP diphosphohydrolase (ATPDase), can be differentiated by ability of the latter to hydrolyze ADP and by slightly different kinetic properties of the two enzymes. Synaptic plasma membrane fractions isolated from rat hippocampus and caudate nucleus exhibit ADP-hydrolyzing activity, as revealed by the enzyme assay, and the presence of ecto-ATPase protein, as revealed by immunological identification on Western blot. These findings indicate that both enzymes are co-expressed in the synaptic membrane compartment of hippocampal and caudate nucleus neurons. Kinetic analysis was performed to determine the relative contribution of each enzyme to the total ATP-hydrolyzing activity, while an inhibition study was carried out in order to exclude the interference of other nonspecific ATPase and phosphatase activities. Based on the kinetic properties, sensitivity to inhibitors and V(ATP)/V(ADP) ratio of about 2, we concluded that a substantial portion of ATP-hydrolyzing activity in both synaptic membrane preparations can be ascribed to the catalytic action of ATPDase. On the other hand, the highest catalytic efficacy when ATP is the substrate and the greater abundance of ecto-ATPase protein in caudate nucleus preparation suggest that the relative contribution of ecto-ATPase to the total ATP-hydrolyzing activity in the caudate nucleus is higher than in the hippocampus.
能够水解细胞外ATP的酶,即胞外ATP酶和胞外ATP二磷酸水解酶(ATPDase),可以通过后者水解ADP的能力以及这两种酶略有不同的动力学特性来区分。从大鼠海马体和尾状核分离出的突触质膜组分表现出ADP水解活性,这通过酶测定得以揭示,并且存在胞外ATP酶蛋白,这通过蛋白质印迹法的免疫鉴定得以揭示。这些发现表明这两种酶在海马体和尾状核神经元的突触膜区室中共同表达。进行动力学分析以确定每种酶对总ATP水解活性的相对贡献,同时进行抑制研究以排除其他非特异性ATP酶和磷酸酶活性的干扰。基于动力学特性、对抑制剂的敏感性以及约为2的V(ATP)/V(ADP)比值,我们得出结论,两种突触膜制剂中很大一部分ATP水解活性可归因于ATPDase的催化作用。另一方面,当ATP作为底物时具有最高的催化效率以及尾状核制剂中胞外ATP酶蛋白含量更高,这表明胞外ATP酶对尾状核中总ATP水解活性的相对贡献高于海马体。