Tu S I, Nagahashi G, Brouillette J N
Arch Biochem Biophys. 1987 Aug 1;256(2):625-37. doi: 10.1016/0003-9861(87)90620-5.
A tonoplast-type vesicle preparation, substantially free from other subcellular membranes, was obtained from corn roots by equilibrium sucrose density gradient centrifugation. At pH 6.5 and in the presence of chloride ions, the tonoplast-type ATPase activity as measured by Pi release, was inhibited by nitrate ions. The ATPase activity was insensitive to molybdate and vanadate, indicating a minimum nonspecific phosphatase and plasma membrane contamination. The vesicles exhibited an ATP hydrolysis-supported proton uptake which was measured by the absorption change of acridine orange. The ATP hydrolysis supported uptake and the subsequent perturbant-induced release of protons (decay) was described by a kinetic model which was previously developed to evaluate the coupling between proton pumping and the primary energy yielding process for other biomembranes. The proton pumping activity was more sensitive to nitrate ions then was ATP hydrolysis. The differential effect and the kinetic analysis of nitrate inhibition led us to suggest that (i) the coupling between Pi release and proton pumping was indirect in nature and (ii) the primary inhibitory effect of nitrate ion was originated from an interaction with a protogenic protein domain which is functionally linked to the ATPase in the tonoplast-type membrane.
通过平衡蔗糖密度梯度离心从玉米根中获得了一种基本上不含其他亚细胞膜的液泡膜型囊泡制剂。在pH 6.5且存在氯离子的情况下,通过无机磷酸释放测定的液泡膜型ATP酶活性受到硝酸根离子的抑制。该ATP酶活性对钼酸盐和钒酸盐不敏感,表明非特异性磷酸酶和质膜污染程度最低。这些囊泡表现出由ATP水解支持的质子摄取,通过吖啶橙的吸收变化来测量。ATP水解支持的摄取以及随后由扰动剂诱导的质子释放(衰减)由一个动力学模型描述,该模型先前已被开发用于评估其他生物膜的质子泵浦与主要能量产生过程之间的偶联。质子泵浦活性比ATP水解对硝酸根离子更敏感。硝酸根抑制的差异效应和动力学分析使我们提出:(i)无机磷酸释放与质子泵浦之间的偶联本质上是间接的;(ii)硝酸根离子的主要抑制作用源自与液泡膜型膜中与ATP酶功能相连的质子生成蛋白结构域的相互作用。