Department of Botany, Faculty of Science, University of Tokyo, Hongo, 113, Tokyo, Japan.
Planta. 1984 Sep;162(1):77-84. doi: 10.1007/BF00397424.
The relationship between adenine-nucleotide levels and metabolism-dependent membrane potential was studied in cells of Nitellopsis obtusa. Effects of ADP and AMP in the presence of ATP on electrogenic pump activity were measured in the dark, using the continuous perfusion method. Both ADP and AMP acte as competitive inhibitors for ATP, the Ki value for either compound being about 0.4 mM. The role of ADP and AMP as regulating factors for the electrogenic pump was investigated under various metabolic conditions. Application of N2 gas in the dark caused a significant membrane depolarization amounting to 90 mV, but cytoplasmic streaming and membrane excitability were not affected. Under anoxia, the ATP level decreased from 1.6 to 0.5 mM; ADP increased but only slightly, and AMP increased greatly. However, the time course of changes in the adenine nucleotides was not concurrent with that of the membrane-potential changes, thus, the adenine-nucleotide level changes cannot fully account for the N2-elicited depolarization. Under light, although the membrane hyperpolarized, no significant changes in the adenine-nucleotide levels were observed. Therefore, the light-induced membrane hyperpolarization cannot be explained solely by changes in adenine-nucleotide levels.
我们研究了桫椤藻细胞中腺嘌呤核苷酸水平与代谢依赖性膜电位之间的关系。在黑暗中使用连续灌注法,测量了存在 ATP 时 ADP 和 AMP 对生电泵活性的影响。ADP 和 AMP 均为 ATP 的竞争性抑制剂,其 Ki 值约为 0.4 mM。在各种代谢条件下,研究了 ADP 和 AMP 作为生电泵调节因子的作用。在黑暗中施加 N2 气体导致膜明显去极化,幅度达 90 mV,但细胞质流动和膜兴奋性不受影响。在缺氧条件下,ATP 水平从 1.6 降至 0.5 mM;ADP 增加但幅度较小,AMP 增加幅度较大。然而,腺嘌呤核苷酸变化的时间进程与膜电位变化不同步,因此,腺嘌呤核苷酸水平的变化不能完全解释 N2 诱导的去极化。在光照下,虽然膜超极化,但腺嘌呤核苷酸水平没有明显变化。因此,光照诱导的膜超极化不能仅用腺嘌呤核苷酸水平的变化来解释。