首页> 外文OA文献 >The Respiratory Chain of Plant Mitochondria: XVI. Interaction of Cytochrome b562 with the Respiratory Chain of Coupled and Uncoupled Mung Bean Mitochondria: Evidence for Its Exclusion from the Main Sequence of the Chain 1
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The Respiratory Chain of Plant Mitochondria: XVI. Interaction of Cytochrome b562 with the Respiratory Chain of Coupled and Uncoupled Mung Bean Mitochondria: Evidence for Its Exclusion from the Main Sequence of the Chain 1

机译:植物线粒体的呼吸链:XVI。细胞色素b562与耦合和非耦合绿豆线粒体呼吸链的相互作用:从链的主要序列中排除的证据1

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摘要

Cytochromes b553, b557, and b562 of mung bean (Phaseolus aureus) mitochondria become partially reduced with endogenous substrate on addition of antimycin A to the aerobic mitochondrial suspension. Addition of ATP causes partial reoxidation of the three cytochromes. This partial oxidation by ATP is inhibited by oligomycin and reversed by uncoupler. Ubiquinone does not appear to act as electron acceptor for the oxidation reaction, but a nonfluorescent flavoprotein, or possibly ironsulfur protein, component does appear to act as acceptor. This is consistent with reverse electron transport driven by ATP across the first site of energy conservation of the respiratory chain. Endogenous pyridine nucleotide and the fluorescent flavoprotein with Em7.2 = −155mv (midpoint potential at pH 7.2, referred to normal hydrogen electrode) in uncoupled mitochondria become reduced in anaerobiosis attained by oxidation of succinate in the absence of respiratory inhibitors of the cytochrome chain, provided that Pi and ATP are present. Under these same conditions, cytochrome b557 is completely reduced but cytochrome b562 remains nearly completely oxidized. There is no equilibration across the first site of energy conservation between the carriers on the low potential side and cytochrome b562 with Em7.2 = −77mv on the high potential side. It is concluded that cytochrome b562 is not a part of the main sequence of electron transport carriers of the mitochondrial respiratory chain of plants; it can participate in redox reactions with the respiratory chain in coupled mitochondria but not in uncoupled mitochondria unless antimycin A is present.
机译:在有氧线粒体悬浮液中添加抗霉素A后,内源性底物会降低绿豆(金黄色葡萄球菌)线粒体的细胞色素b553,b557和b562。 ATP的添加导致三种细胞色素的部分再氧化。 ATP的这种部分氧化被寡霉素抑制,并被解偶联剂逆转。泛醌似乎没有充当氧化反应的电子受体,但非荧光黄素蛋白或可能的铁硫蛋白组分似乎确实充当了受体。这与由ATP驱动的跨呼吸链能量守恒的第一个位点的反向电子传输相一致。在不存在细胞色素链的呼吸抑制剂的情况下,琥珀酸的氧化导致厌氧菌病,内源性吡啶核苷酸和Em7.2 = -155mv(pH 7.2的中点电势,在正常氢电极上的中点电势)在厌氧菌中被降低,前提是存在Pi和ATP。在这些相同条件下,细胞色素b557被完全还原,但细胞色素b562仍几乎被完全氧化。低电势侧的载流子与细胞色素b562的高能侧的Em7.2 = -77mv之间,在能量守恒的第一个位点之间没有平衡。结论是,细胞色素b562不是植物线粒体呼吸链电子传递载体的主要序列的一部分。除非存在抗霉素A,否则它可以参与偶联线粒体中呼吸链的氧化还原反应,但不参与未偶联线粒体中的呼吸链。

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    Storey, Bayard T.;

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  • 年度 1974
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