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线粒体中ATP依赖的Mg2+通量动力学

Kinetics of ATP-dependent Mg2+ flux in mitochondria.

作者信息

Kun E

出版信息

Biochemistry. 1976 Jun 1;15(11):2328-36. doi: 10.1021/bi00656a013.

Abstract

ATP-dependent Mg2+ accumulation in isolated mitochondria occurs predominantly in the matrix and inner membrane compartments. In mitochondria contaminated with lysosomes, the time course and magnitude of ATP-dependent Mg2+ accumulation are influenced by various cytoplasmic substances, besides substrates of the citric acid cycle. Removal of lysosomes by treatment of the mitochondrial preparation with low concentrations of digitonin, which does not damage the mitoplast, eliminates the modifying influence of cytoplasmic components on Mg2+ flux. In lysosome-free mitochondria, the kinetics of Mg2+ flux is dependent only on the concentration of ATP, of Mg2+, and on the availability of site specific reducing substrates of the electron transport system. Oligomycin at concentrations sufficient to inhibit phosphorylation coupled electron transport and ATP synthesis does not modify Mg2+ flux, which is dependent on added ATP. Site specific inhibitors of the electron transport system inhibit the augmenting effect of oxidizable substrates on Mg2+ uptake, even when electron transfer is inhibited by oligomycin. Atractyloside, by inhibiting the action of externally added ATP, diminishes Mg2+ flux. Ruthenium red is a powerful inhibitor of ATP dependent Mg2+ flux. Uncouplers not only inhibit Mg2+ uptake, but induce Mg2+ efflux. From the time course of Mg2+ flux, a first-order rate constant of egress of Mg2+ and other kinetic constants were calculated and a kinetic model was derived which describes the bi-directional movement of Mg 2+ in mitoplasts.

摘要

在分离的线粒体中,ATP 依赖的 Mg2+积累主要发生在线粒体基质和内膜区室。在被溶酶体污染的线粒体中,除了柠檬酸循环的底物外,ATP 依赖的 Mg2+积累的时间进程和幅度还受各种细胞质物质的影响。用低浓度的洋地黄皂苷处理线粒体制剂以去除溶酶体(洋地黄皂苷不会损伤线粒体),可消除细胞质成分对 Mg2+通量的修饰作用。在无溶酶体的线粒体中,Mg2+通量的动力学仅取决于 ATP、Mg2+的浓度以及电子传递系统位点特异性还原底物的可用性。足以抑制磷酸化偶联电子传递和 ATP 合成的寡霉素浓度不会改变依赖添加 ATP 的 Mg2+通量。即使电子传递被寡霉素抑制,电子传递系统的位点特异性抑制剂也会抑制可氧化底物对 Mg2+摄取的增强作用。苍术苷通过抑制外部添加 ATP 的作用来减少 Mg2+通量。钌红是 ATP 依赖的 Mg2+通量的强效抑制剂。解偶联剂不仅抑制 Mg2+摄取,还诱导 Mg2+外流。根据 Mg2+通量的时间进程,计算了 Mg2+流出的一级速率常数和其他动力学常数,并推导了一个动力学模型,该模型描述了 Mg2+在线粒体中的双向运动。

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