De Michelis M I, Spanswick R M
Section of Plant Biology, Division of Biological Sciences, Plant Science Building, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1986 Jun;81(2):542-7. doi: 10.1104/pp.81.2.542.
The initial rate of quenching of quinacrine fluorescence was used to monitor Mg:ATP-dependent H(+)-pumping in membrane vesicles from corn (Zea mays L. cv WF9 x MO17) roots and obtain a preparation in which vanadate-sensitive H(+)-pumping could be observed. Separation of membranes on a linear sucrose density gradient resulted in two distinct peaks of H(+)-pumping activity: a major one, at density 1.11 grams per cubic centimeter, was sensitive to NO(3) (-) and resistant to vanadate, while a minor one, at density 1.17 grams per cubic centimeter, was substantially resistant to NO(3) (-) and sensitive to vanadate. A membrane fraction enriched in the vanadate-sensitive H(+)-pump could be obtained by washing microsomes prepared in the presence of 10% glycerol with 0.25 molar KI. The kinetics of inhibition of H(+)-pumping by vanadate in this membrane preparation indicated that most of the H(+)-pumping activity in this fraction is sensitive to inhibition by vanadate, 50% inhibition being reached at about 60 micromolar vanadate. This value is fairly close to that observed for inhibition by vanadate of the ATPase activity in similar experimental conditions (40 micromolar). The inhibitor sensitivity, divalent cation dependence, pH optimum (6.5), and K(m) for ATP (0.7 millimolar) of the H(+)-pumping activity match quite closely those reported for the plasma membrane ATPase of corn roots and other plant materials.
用喹吖因荧光淬灭的初始速率来监测玉米(Zea mays L. cv WF9 x MO17)根膜囊泡中Mg:ATP依赖的H⁺泵浦,并获得一种能观察到钒酸盐敏感的H⁺泵浦的制剂。在线性蔗糖密度梯度上分离膜,得到两个不同的H⁺泵浦活性峰:一个主要峰,密度为1.11克每立方厘米,对NO₃⁻敏感且对钒酸盐有抗性,而一个次要峰,密度为1.17克每立方厘米,对NO₃⁻基本有抗性且对钒酸盐敏感。通过用0.25摩尔碘化钾洗涤在10%甘油存在下制备的微粒体,可以获得富含钒酸盐敏感的H⁺泵的膜组分。在这种膜制剂中,钒酸盐对H⁺泵浦的抑制动力学表明,该组分中大部分H⁺泵浦活性对钒酸盐抑制敏感,在约60微摩尔钒酸盐时达到50%抑制。该值与在类似实验条件下钒酸盐对ATP酶活性抑制所观察到的值(40微摩尔)相当接近。H⁺泵浦活性的抑制剂敏感性、二价阳离子依赖性、最适pH(6.5)和对ATP的米氏常数(0.7毫摩尔)与玉米根和其他植物材料的质膜ATP酶所报道的非常接近。