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玉米线粒体的能量偶联腺苷二磷酸积累:I. 一般特征和抑制剂的影响。

Energy-linked Adenosine Diphosphate Accumulation by Corn Mitochondria: I. General Characteristics and Effect of Inhibitors.

机构信息

Department of Botany, University of Illinois, Urbana, Illinois 61801.

出版信息

Plant Physiol. 1979 Aug;64(2):276-80. doi: 10.1104/pp.64.2.276.

Abstract

Corn mitochondria show respiration-linked net accumulation of [(3)H]ADP in the presence of phosphate and magnesium, especially if the formation of ATP is blocked with oligomycin. Inhibition of ADP-ATP exchange by carboxyatractyloside also activates ADP accumulation, and addition of carboxyatractyloside or palmitoyl-coenzyme A to oligomycin-blocked mitochondria produces additional ADP uptake. With carboxyatractyloside the accumulated ADP is phosphorylated to ATP. With oligomycin, only a little ATP is formed. Millimolar concentrations of ADP are required for maximum uptake, and the K(m) (3.77 millimolar) for ADP translocation is independent of whether oligomycin or carboxyatractyloside is used. This is not true for ADP concentrations in the 0.05 to 0.25 millimolar range. Accumulated [(3)H]ADP rapidly exchanges with unlabeled AMP, ADP, or ATP, but not with other diphosphate nucleotides or 2 millimolar substrate anions. [(3)H]AMP is not accumulated, but [(3)H]ATP is accumulated to about one-half the extent of [(3)H]ADP. Tricarboxylate substrates inhibit ADP net uptake, and inhibition by citrate is competitive with K(i) = 10 millimolar. The evidence suggests the presence of a pathway, carboxyatractyloside-insensitive and different from the translocase, which operates to maintain adenine nucleotides in the matrix.

摘要

在磷酸盐和镁存在的情况下,玉米线粒体表现出与呼吸相关的 [(3)H]ADP 净积累,特别是如果用寡霉素阻断 ATP 的形成。羧基三叶草苷对 ADP-ATP 交换的抑制也会激活 ADP 积累,并且向寡霉素阻断的线粒体中添加羧基三叶草苷或棕榈酰辅酶 A 会产生额外的 ADP 摄取。在羧基三叶草苷存在的情况下,积累的 ADP 被磷酸化为 ATP。在用寡霉素时,只形成少量的 ATP。最大摄取需要毫摩尔浓度的 ADP,并且 ADP 转运的 K(m)(3.77 毫摩尔)与是否使用寡霉素或羧基三叶草苷无关。对于 0.05 至 0.25 毫摩尔范围内的 ADP 浓度,情况并非如此。积累的 [(3)H]ADP 可与未标记的 AMP、ADP 或 ATP 迅速交换,但不能与其他二磷酸核苷酸或 2 毫摩尔底物阴离子交换。[(3)H]AMP 不会积累,但 [(3)H]ATP 会积累到 [(3)H]ADP 的一半左右。三羧酸底物抑制 ADP 净摄取,并且柠檬酸的抑制作用与 K(i) = 10 毫摩尔具有竞争性。证据表明存在一种途径,即羧基三叶草苷不敏感且与转运蛋白不同,该途径用于维持基质中的腺嘌呤核苷酸。

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