Carmeli C, Tadmor O, Lifshitz Y, Ophir R, Carmeli S
Department of Biochemistry, Tel Aviv University, Israel.
FEBS Lett. 1992 Mar 16;299(3):227-30. doi: 10.1016/0014-5793(92)80120-6.
Inhibition of ATPase activity by vanadate, having K1/2 of 0.5 mM, was demonstrated in the CF1-ATPase. The Ca(2+)-dependent ATPase activity of the isolated enzyme was inhibited in an allosteric manner by vanadate with a Hill coefficient of 3.19 +/- 0.6. Vanadate also inhibited ATPase and Pi-ATP exchange activities of the chloroplast membrane-bound enzyme. Using 51V NMR it was demonstrated that ATP caused partial release of about 1.87 equivalents while ADP caused additional binding of approximately 1.46 equivalents of vanadate, when added to a solution containing CF1 equilibrated with vanadate. The relevance of these results to a possible involvement of a pentacovalent phosphate as transition state intermediate in the hydrolysis of ATP by CF1-ATPase is discussed.
钒酸盐对CF1 - ATP酶的ATP酶活性具有抑制作用,其半数抑制浓度(K1/2)为0.5 mM。钒酸盐以别构方式抑制分离出的酶的Ca(2+)依赖性ATP酶活性,希尔系数为3.19±0.6。钒酸盐还抑制叶绿体膜结合酶的ATP酶和Pi - ATP交换活性。使用51V核磁共振表明,当向含有与钒酸盐平衡的CF1的溶液中添加ATP时,会导致约1.87当量的钒酸盐部分释放,而添加ADP时会导致约1.46当量的钒酸盐额外结合。本文讨论了这些结果与五价磷酸盐作为CF1 - ATP酶水解ATP的过渡态中间体可能参与作用的相关性。