Department of Botany, University of Washington, Seattle, Washington 98195.
Plant Physiol. 1985 Dec;79(4):1080-5. doi: 10.1104/pp.79.4.1080.
Pea root microsomal vesicles have been fractionated on a Dextran step gradient to give three fractions, each of which carries out ATP-dependent proton accumulation as measured by fluorescence quenching of quinacrine. The fraction at the 4/6% Dextran interface is enriched in plasma membrane, as determined by UDPG sterol glucosyltransferase and vanadate-inhibited ATPase. The vanadate-sensitive phosphohydrolase is not specific for ATP, has a K(m) of about 0.23 millimolar for MgATP, is only slightly affected by K(+) or Cl(-) and is insensitive to auxin. Proton transport, on the other hand, is more specific for ATP, enhanced by anions (NO(3) (-) > Cl(-)) and has a K(m) of about 0.7 millimolar. Auxins decrease the K(m) to about 0.35 millimolar, with no significant effect on the V(max), while antiauxins or weak acids have no such effect. It appears that auxin has the ability to alter the efficiency of the ATP-driven proton transport.
豌豆根微粒体囊泡在葡聚糖分步梯度上进行了分级分离,得到了三个部分,每个部分都可以通过荧光猝灭法测量的奎吖因来进行 ATP 依赖性质子积累。在 4/6%葡聚糖界面处的部分富含质膜,这是通过 UDPG 甾醇葡萄糖基转移酶和钒酸盐抑制的 ATP 酶来确定的。钒酸盐敏感的磷酸水解酶对 ATP 不是特异性的,对 MgATP 的 K(m)约为 0.23 毫摩尔,对 K(+)或 Cl(-)的影响很小,对生长素不敏感。另一方面,质子运输对 ATP 的特异性更高,被阴离子(NO(3) (-) > Cl(-))增强,K(m)约为 0.7 毫摩尔。生长素将 K(m)降低到约 0.35 毫摩尔,而对 V(max)没有显著影响,而抗生长素或弱酸则没有这种影响。生长素似乎具有改变 ATP 驱动质子运输效率的能力。