Picher M, Côté Y P, Béliveau R, Potier M, Beaudoin A R
Département de Biologie, Faculté des Sciences, Université de Sherbrooke, Québec, Canada.
J Biol Chem. 1993 Mar 5;268(7):4699-703.
A novel type of ATP-diphosphohydrolase (ATPDase) is demonstrated in bovine lung. The enzyme has an optimum pH of 7.5 and catalyzes the hydrolysis of the beta- and gamma-phosphate residues from diphospho- and triphosphonucleosides. It requires Ca2+ or Mg2+ and is insensitive to ouabain, an inhibitor of Na+/K(+)-ATPase, P1,P5-di(adenosine 5')-pentaphosphate, an inhibitor of adenylate kinase, and tetramisole, an inhibitor of alkaline phosphatase. In contrast, sodium azide (10 mM), a known inhibitor of ATPDases and mitochondrial ATPases, as well as mercuric chloride (10 microM) and gossypol (2,2'-bis[8-formyl-1,6,7-trihydroxy-5-isopropyl-3-methylnaphthalene]) (35 microM) are powerful inhibitors of this enzyme. The same inhibition profile is obtained with ATP or ADP as substrate, thereby supporting the concept of a common catalytic site for these substrates. This is further confirmed by enzyme localization after polyacrylamide gel electrophoresis under nondenaturing conditions and by kinetic properties, namely pH dependence profiles, heat inactivation, and 60Co irradiation-inactivation curves. The native molecular mass of the enzyme calculated from 60Co gamma-irradiation-inactivation curves is estimated at 70 +/- 3 kDa, whereas Km,app and Vmax,app of the ATPDase are evaluated at 7 +/- 2 microM and 1.1 +/- 0.3 mumol of Pi/min/mg protein, respectively. A comparison of the kinetic properties of this ATPDase with those of pig pancreas (Type I) and bovine aorta (Type II) lead us to believe that this enzyme is an hitherto undescribed type of ATPDase. By reference to the previously described ATPDase, we propose to identify this enzyme as ATPDase Type III (EC 3.6.1.5).
在牛肺中发现了一种新型的ATP二磷酸水解酶(ATPDase)。该酶的最适pH值为7.5,可催化二磷酸和三磷酸核苷的β和γ磷酸残基水解。它需要Ca2+或Mg2+,对哇巴因(一种Na+/K(+)-ATP酶抑制剂)、P1,P5-二(腺苷5')-五磷酸(一种腺苷酸激酶抑制剂)和四咪唑(一种碱性磷酸酶抑制剂)不敏感。相比之下,叠氮化钠(10 mM)(一种已知的ATPDase和线粒体ATP酶抑制剂)以及氯化汞(10 microM)和棉酚(2,2'-双[8-甲酰基-1,6,7-三羟基-5-异丙基-3-甲基萘])(35 microM)是该酶的强力抑制剂。以ATP或ADP为底物时可得到相同的抑制谱,从而支持了这些底物具有共同催化位点的概念。在非变性条件下进行聚丙烯酰胺凝胶电泳后的酶定位以及动力学性质,即pH依赖性谱、热失活和60Co辐射失活曲线,进一步证实了这一点。根据60Coγ辐射失活曲线计算出该酶的天然分子量估计为70±3 kDa,而ATPDase的Km,app和Vmax,app分别评估为7±2 microM和1.1±0.3 μmol Pi/min/mg蛋白。将这种ATPDase的动力学性质与猪胰腺(I型)和牛主动脉(II型)的进行比较,使我们相信这种酶是一种迄今未描述的ATPDase类型。参照先前描述的ATPDase,我们建议将这种酶鉴定为ATPDase III型(EC 3.6.1.5)。