Dupont F M, Burke L L, Spanswick R M
Section of Plant Biology, Division of Biological Sciences, Plant Science Building, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1981 Jan;67(1):59-63. doi: 10.1104/pp.67.1.59.
The (K(+),Mg(2+))-ATPase was partially purified from a plasma membrane fraction from corn roots (WF9 x Mol7) and stored in liquid N(2) without loss of activity. Specific activity was increased 4-fold over that of the plasma membrane fraction. ATPase activity resembled that of the plasma membrane fraction with certain alterations in cation sensitivity. The enzyme required a divalent cation for activity (Co(2+) > Mg(2+) > Mn(2+) > Zn(2+) > Ca(2+)) when assayed at 3 millimolar ATP and 3 millimolar divalent cation at pH 6.3. When assayed in the presence of 3 millimolar Mg(2+), the enzyme was further activated by monovalent cations (K(+), NH(4) (+), Rb(+) >> Na(+), Cs(+), Li(+)). The pH optima were 6.5 and 6.3 in the absence and presence of 50 millimolar KCl, respectively. The enzyme showed simple Michaelis-Menten kinetics for the substrate ATP-Mg, with a K(m) of 1.3 millimolar in the absence and 0.7 millimolar in the presence of 50 millimolar KCl. Stimulation by K(+) approached simple Michaelis-Menten kinetics, with a K(m) of approximately 4 millimolar KCl. ATPase activity was inhibited by sodium orthovanadate. Half-maximal inhibition was at 150 and 35 micromolar in the absence and presence of 50 millimolar KCl. The enzyme required the substrate ATP. The rate of hydrolysis of other substrates, except UDP, IDP, and GDP, was less than 20% of ATP hydrolysis. Nucleoside diphosphatase activity was less than 30% of ATPase activity, was not inhibited by vanadate, was not stimulated by K(+), and preferred Mn(2+) to Mg(2+). The results demonstrate that the (K(+),Mg(2+))-ATPase can be clearly distinguished from nonspecific phosphohydrolase and nucleoside diphosphatase activities of plasma membrane fractions prepared from corn roots.
从玉米根(WF9×Mol7)的质膜组分中部分纯化出(K⁺,Mg²⁺)-ATP酶,并保存在液氮中,活性未损失。比活性比质膜组分提高了4倍。ATP酶活性与质膜组分的活性相似,但阳离子敏感性有某些改变。当在pH 6.3、3毫摩尔ATP和3毫摩尔二价阳离子存在下测定时,该酶活性需要二价阳离子(Co²⁺>Mg²⁺>Mn²⁺>Zn²⁺>Ca²⁺)。当在3毫摩尔Mg²⁺存在下测定时,该酶被一价阳离子(K⁺、NH₄⁺、Rb⁺>>Na⁺、Cs⁺、Li⁺)进一步激活。在不存在和存在50毫摩尔KCl时,pH最适值分别为6.5和6.3。该酶对底物ATP-Mg表现出简单的米氏动力学,在不存在50毫摩尔KCl时Kₘ为1.3毫摩尔,在存在50毫摩尔KCl时为0.7毫摩尔。K⁺的刺激接近简单的米氏动力学,Kₘ约为4毫摩尔KCl。ATP酶活性被正钒酸钠抑制。在不存在和存在50毫摩尔KCl时,半最大抑制浓度分别为150和35微摩尔。该酶需要底物ATP。除UDP、IDP和GDP外,其他底物的水解速率小于ATP水解速率的20%。核苷二磷酸酶活性小于ATP酶活性的30%,不受钒酸盐抑制,不受K⁺刺激,且相对于Mg²⁺更偏好Mn²⁺。结果表明,(K⁺,Mg²⁺)-ATP酶可与从玉米根制备的质膜组分的非特异性磷酸水解酶和核苷二磷酸酶活性明显区分开来。