Department of Botany, University of Illinois, Urbana, Illinois 61801.
Plant Physiol. 1979 Aug;64(2):281-4. doi: 10.1104/pp.64.2.281.
The requirement for phosphate and Mg(2+) in energy-linked [(3)H] ADP accumulation by corn mitochondria has been studied. Arsenate will fully substitute for phosphate; sulfate partially substitutes; acetate, bicarbonate, and pyrophosphate are ineffective. Phosphate is also taken up by the mitochondria, but the ADP/Pi ratio varies widely with experimental treatments. ADP does not exchange with endogenous labeled phosphate, although Pi/(32)Pi exchange occurs.Mg(2+) is also accumulated during ADP uptake. Mg(2+) can be substituted with varying efficiency by other divalent cations, but not monovalent cations. Effective cations typically increase phosphate uptake, particularly Ca(2+) . Ca(2+) -activated ADP accumulation is insensitive to carboxyatractyloside over a wide range of Ca(2+) concentrations. When Ca(2+) is substituted for Mg(2+) it is not necessary to block ATP formation to secure high levels of ADP accumulation, since Ca(2+) will divert energy from ATP formation into ion uptake.It is suggested that the transport mechanism may carry out a concerted transport of ADP and phosphate with bound divalent cation. The phosphate transporter may be involved, or alternatively a special mechanism for trivalent anion transport may exist which acts cooperatively with the phosphate transporter.
已研究了玉米线粒体中依赖能量的 [(3)H]ADP 积累对磷酸盐和 Mg(2+)的需求。砷酸盐可完全替代磷酸盐;硫酸盐部分替代;乙酸盐、碳酸氢盐和焦磷酸盐无效。磷酸盐也被线粒体摄取,但 ADP/Pi 比随实验处理而广泛变化。ADP 不会与内源性标记的磷酸盐交换,尽管 Pi/(32)Pi 交换发生。Mg(2+)也在 ADP 摄取期间积累。Mg(2+)可以被其他二价阳离子以不同的效率替代,但不能被单价阳离子替代。有效阳离子通常会增加磷酸盐的摄取,特别是 Ca(2+)。在广泛的 Ca(2+)浓度范围内,Ca(2+) 激活的 ADP 积累对羧基丙氨酰基肉碱不敏感。当 Ca(2+)替代 Mg(2+)时,不必阻止 ATP 形成以确保高水平的 ADP 积累,因为 Ca(2+)会将能量从 ATP 形成转移到离子摄取中。因此,建议该转运机制可能与结合的二价阳离子一起进行 ADP 和磷酸盐的协同转运。可能涉及磷酸盐转运体,或者可能存在一种与磷酸盐转运体协同作用的特殊三价阴离子转运机制。