首页> 外文OA文献 >The effects of diphenyleneiodonium and of 2,4-dichlorodiphenyleneiodonium on mitochondrial reactions. Mechanism of the inhibition of oxygen uptake as a consequence of the catalysis of the chloride/hydroxyl-ion exchange.
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The effects of diphenyleneiodonium and of 2,4-dichlorodiphenyleneiodonium on mitochondrial reactions. Mechanism of the inhibition of oxygen uptake as a consequence of the catalysis of the chloride/hydroxyl-ion exchange.

机译:二苯ene和2,4-二氯二苯io对线粒体反应的影响。由于氯离子/羟基离子交换的催化作用而抑制氧吸收的机理。

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摘要

1. Increasing the substrate concentration only decreased the inhibition of mitochondrial oxidations by diphenyleneiodonium or by 2,4-dichlorophenyleneiodonium by a small amount. 2. Diphenyleneiodonium and 2,4-dichlorodiphenyleneiodonium lowered the amounts of succinate, citrate and glutamate accumulated in the matrix of mitochondria in the presence of Cl-, but not in its absences. 2,4-Dichlorodiphenyleneiodonium decreased the accumulation of substrates by mitochondria oxidizing glycerol 3-phosphate. 3. Diphenyleneiodonium caused an alkalinization of the medium with an anaerobic suspension of mitochondria, which was only partly reversed by Triton X-100. 4. The rate of proton extrusion by mitochondria oxidizing succinate was not altered by diphenyleneiodonium or by 2,4-dichlorodiphenyleneiodium, although the rate of decay of proton pulses was increased. 5. 2,4-Dichlorodiphenyleneiodonium shifted the pH optimum for succinate oxidation by intact mitochondria from pH 7.2 to 8.0, whereas there was no effect on that of freeze-thawed mitochondria, which was pH 8.0. 6. The concentration of 2,4-dichlorophenyleneiodonium required to inhibit respiration by 50% is less the higher the absolute rate of oxygen uptake. 7. EDTA, but not EGTA [ethanedioxybis(ethylamine)-tetra-acetic acid] increased the inhibition of respiration by diphenyleneiodonium, 2,4-dichlorodiphenyleneiodonium and by tri-n-propyltin. 8. It is concluded that diphenyleneiodonium and 2,4-dichlorodiphenyleneiodonium limit respiration in Cl--containing medium by causing an acidification of the matrix, and that there are pH-sensitive sites in the respiratory chain between NADH and succinate, and between succinate and cytochrome c.
机译:1.增加底物浓度仅少量减少了对二苯撑碘鎓或2,4-二氯苯撑碘鎓对线粒体氧化的抑制。 2.在Cl-存在下,线粒体基质中积累的琥珀酸酯,柠檬酸盐和谷氨酸盐的含量降低了二苯并碘鎓和2,4-二氯二苯并碘鎓的含量,但在Cl-不存在的情况下则没有。 2,4-二氯二苯撑碘鎓通过线粒体氧化甘油3-磷酸减少了底物的积累。 3.联苯碘鎓通过线粒体的厌氧悬浮液使培养基碱化,Triton X-100只能部分逆转。 4.尽管质子脉冲的衰减速率增加了,但二苯撑碘鎓或2,4-二氯二苯撑碘鎓不会改变线粒体氧化琥珀酸酯的质子挤出速率。 5. 2,4-二氯二苯撑碘鎓将完整线粒体琥珀酸氧化的最佳pH值从7.2移至8.0,而对冻融线粒体的pH值8.0没有影响。 6.抑制呼吸50%所需的2,4-二氯亚苯基碘鎓浓度越低,绝对的氧气吸收率就越高。 7.EDTA而不是EGTA [乙二氧基双(乙胺)-四乙酸]增加了对二苯撑碘鎓,2,4-二氯二苯撑碘鎓和三正丙基锡的呼吸抑制作用。 8.结论是,二苯并碘鎓和2,4-二氯二苯并碘鎓通过引起基质酸化而限制了含Cl介质中的呼吸作用,并且NADH和琥珀酸酯之间,琥珀酸酯和琥珀酸酯之间的呼吸链中存在pH敏感位点。细胞色素c。

著录项

  • 作者

    Gatley, S J; Sherratt, H S;

  • 作者单位
  • 年度 1976
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  • 原文格式 PDF
  • 正文语种 en
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  • 入库时间 2022-08-20 20:40:15

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