Characterization and localization of an ATP diphosphohydrolase activity (EC 3.6.1.5) in sarcolemmal membrane from rat heart

被引:10
作者
deOliveira, EM
Battastini, AMO
Meirelles, MNL
Moreira, CM
Dias, RD
Sarkis, JJF
机构
[1] UNIV FED RIO GRANDE SUL, INST BIOCIENCIAS, DEPT BIOQUIM, BR-90046900 PORTO ALEGRE, RS, BRAZIL
[2] FED UNIV SANTA MARIA, HLTH SCI CTR, UNIV HOSP SANTA MARIA, SANTA MARIA, RS, BRAZIL
[3] FIOCRUZ MS, INST OSWALDO CRUZ, DEPT ULTRASTRUCT & CELLULAR BIOL, RIO DE JANEIRO, RJ, BRAZIL
关键词
ATP diphosphohydrolase; apyrase; sarcolemmal membrane; rat heart;
D O I
10.1023/A:1006848701467
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
In the present report we describe an ATP diphosphohydrolase (apyrase EC 3.6.1.5) in rat cardiac sarcolemma. It is Ca2+ dependent and is insensitive to ouabain, orthovanadate, N-ethylmaleimide (NEM), lanthanum, and oligomycin that are classical ATPase inhibitors. Sodium azide that is a mitochondrial inhibitor at low concentrations, did not affect the enzyme activity at 5.0 mM or below. In contrast, at high concentrations (> 10 mM) sodium azide inhibited the enzyme. Levamisole, a specific inhibitor of alkaline phosphatase and P-1, P-5-di(adenosine 5'-)pentaphosphate (Ap5A), a specific inhibitor of adenylate kinase did not inhibit the enzyme. Mercury chloride showed a parallel inhibition of the hydrolysis of both substrates of apyrase. Similar inhibition profiles are powerful evidence for a common catalytic site for the hydrolysis of both substrates. The enzyme has an optimum pH range of 7.5-8.0 and catalyzes the hydrolysis of triphospho- and diphosphonucleosides other than ATP or ADP. The apparent K-m (Michaelis constant) and V-max (maximal velocity) are 62.1 +/- 5.2 mu M and 1255.7 +/- 178 mu mol inorganic phosphate liberated/min/mg with ATP and 59.4 +/- 4.3 mu M and 269.2 +/- 39 mu mol inorganic phosphate liberated/min/mg with ADP. Enzyme markers indicated that this apyrase is associated with the plasma membrane. A deposition of lead phosphate granules on the outer surface of the sarcolemmal vesicles was observed by electron microscopy in the presence of either ATP or ADP as substrate. It is suggested that the ATP diphosphohydrolase could regulate the concentration of extracellular adenosine, and thus is important in the control of vascular tone and coronary flow.
引用
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页码:115 / 123
页数:9
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