热带利什曼原虫中镁依赖的胞外ATP酶活性
Mg-dependent ecto-ATPase activity in Leishmania tropica.
作者信息
Meyer-Fernandes J R, Dutra P M, Rodrigues C O, Saad-Nehme J, Lopes A H
机构信息
Departamento de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Brasil.
出版信息
Arch Biochem Biophys. 1997 May 1;341(1):40-6. doi: 10.1006/abbi.1997.9933.
ATPase activity has been located on the external surface of Leishmania tropica. Since Leishmania is known to have an ecto-acid phosphatase, in order to discard the possibility that the ATP hydrolysis observed was due to the acid phosphatase activity, the effect of pH in both activities was examined. In the pH range from 6.8 to 8.4, in which the cells were viable, the phosphatase activity decreased, while the ecto-ATPase activity increased. To confirm that the observed ATP hydrolysis was promoted by neither phosphatase nor 5'-nucleotidase activities, a few inhibitors for these enzymes were tested. Vanadate and NaF strongly inhibited the phosphatase activity; however, no effect was observed on ATPase activity. Neither levamizole nor tetramizole, two specific inhibitors of alkaline phosphatases, inhibited this activity. The lack of response to ammonium molybdate indicated that 5'-nucleotidase did not contribute to the ATP hydrolysis. Also, the lack of inhibition of the ATP hydrolysis by high concentrations of ADP at nonsaturating concentrations of ATP discarded the possibility of any ATP diphosphohydrolase activity. The ATPase here described was stimulated by MgCl2 but not by CaCl2. In the absence of divalent metal, a low level of ATP hydrolysis was observed, and CaCl2 varying from 0.1 to 10 mM did not increase the ATPase activity. At 5 mM ATP, half-maximal stimulation of ATP hydrolysis was obtained with 0.29 +/- 0.02 mM MgCl2. The apparent K(m) for Mg-ATP2- was 0.13 +/- 0.01 mM and free Mg2+ did not increase the ATPase activity. ATP was the best substrate for this enzyme. Other nucleotides such as ITP, CTP, GTP, UTP, and ADP produced lower reaction rates. To confirm that this Mg-dependent ATPase was an ecto-ATPase, an impermeant inhibitor, 4,4'-diisothiocyanostylbene-2,2'-disulfonic acid was used. This amino/sulfhydryl-reactive reagent did inhibit the Mg-ecto-ATPase activity in a dose-dependent manner (I0.5 = 27.5 +/- 1.8 microM).
已确定热带利什曼原虫的ATP酶活性位于其外表面。由于已知利什曼原虫具有胞外酸性磷酸酶,为了排除所观察到的ATP水解是由酸性磷酸酶活性所致的可能性,研究了pH对这两种活性的影响。在细胞存活的pH范围6.8至8.4内,磷酸酶活性降低,而胞外ATP酶活性增加。为了证实所观察到的ATP水解既不是由磷酸酶也不是由5'-核苷酸酶活性所促进,测试了几种针对这些酶的抑制剂。钒酸盐和氟化钠强烈抑制磷酸酶活性;然而,对ATP酶活性未观察到影响。左旋咪唑和四咪唑这两种碱性磷酸酶的特异性抑制剂均未抑制该活性。对钼酸铵无反应表明5'-核苷酸酶对ATP水解无作用。此外,在ATP非饱和浓度下高浓度ADP对ATP水解无抑制作用,排除了任何ATP二磷酸水解酶活性的可能性。此处所述的ATP酶受MgCl2刺激,但不受CaCl2刺激。在没有二价金属的情况下,观察到较低水平的ATP水解,且0.1至10 mM的CaCl2均未增加ATP酶活性。在5 mM ATP时,0.29±0.02 mM MgCl2可使ATP水解达到最大刺激的一半。Mg-ATP2-的表观K(m)为0.13±0.01 mM,游离Mg2+不会增加ATP酶活性。ATP是该酶的最佳底物。其他核苷酸如ITP、CTP、GTP、UTP和ADP产生的反应速率较低。为了证实这种Mg依赖性ATP酶是一种胞外ATP酶,使用了一种非渗透性抑制剂4,4'-二异硫氰酸芪-2,2'-二磺酸。这种氨基/巯基反应性试剂确实以剂量依赖性方式抑制Mg-胞外ATP酶活性(I0.5 = 27.5±1.8 microM)。