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放射性标记的羧基苍术苷、苍术苷和膨痂孢菌素与马铃薯线粒体ADP转运体的结合。

Binding of radioactively labeled carboxyatractyloside, atractyloside and bongkrekic acid to the ADP translocator of potato mitochondria.

作者信息

Vignais P V, Douce R, Lauquin G J, Vignais P M

出版信息

Biochim Biophys Acta. 1976 Sep 13;440(3):688-96. doi: 10.1016/0005-2728(76)90051-7.

Abstract
  1. The inhibition of the ADP-stimulated respiration of potato mitochondria by carboxyatractyloside is relieved by high concentration of ADP or by the uncoupler carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP). Atractyloside is a much less potent inhibitor than carboxyatractyloside. The inhibition of the ADP-stimulated respiration required about 60-times more atractyloside than carboxyatractyloside. 2. [35S]carboxyatractyloside and [3H]bongkrekic acid bind to potato mitochondria with high affinity (Kd = 10 to 20 nM, n=0.6-0.7 nmol per mg protein). Added ADP competes with carboxyatractyloside for binding; on the contrary ADP increases the amount of bound bongkrekic acid. [3H]atractyloside binds to potato mitochondria with a much lower affinity (Kd=0.45 muM) than carboxyatractyloside or bongkrekic acid. 3. Bound [3H]atractyloside is displaced by ADP, carboxyatractyloside and bongkrekic acid. The displacement of bound [35S]carboxyatractyloside by bongkrekic acid and of bound [3H]bongkrekic acid by carboxyatractyloside is markedly increased by ADP. 4. Bongkrekic acid competes with [35S]carboxyatractyloside for binding. Addition of a small concentration of ADP considerably enhances the inhibitory effect of bongkrekic acid on [35S]carboxyatractyloside binding. 5. The adenine nucleotide content of potato mitochondria is of the order of 1 nmol per mg protein. ADP transport in potato mitochondria is inhibited by atractyloside 30- to 40-times less efficiently than by carboxyatractyloside.
摘要
  1. 高浓度的ADP或解偶联剂羰基氰对三氟甲氧基苯腙(FCCP)可解除羧基苍术苷对马铃薯线粒体ADP刺激呼吸的抑制作用。苍术苷的抑制效力远低于羧基苍术苷。抑制ADP刺激的呼吸所需的苍术苷量约为羧基苍术苷的60倍。2. [35S]羧基苍术苷和[3H]邦克酸以高亲和力(Kd = 10至20 nM,每毫克蛋白质n = 0.6 - 0.7 nmol)结合到马铃薯线粒体上。添加的ADP与羧基苍术苷竞争结合;相反,ADP会增加邦克酸的结合量。[3H]苍术苷与马铃薯线粒体的结合亲和力(Kd = 0.45 μM)远低于羧基苍术苷或邦克酸。3. 结合的[3H]苍术苷可被ADP、羧基苍术苷和邦克酸取代。ADP可显著增加邦克酸对结合的[35S]羧基苍术苷的取代作用以及羧基苍术苷对结合的[3H]邦克酸的取代作用。4. 邦克酸与[35S]羧基苍术苷竞争结合。添加低浓度的ADP可显著增强邦克酸对[35S]羧基苍术苷结合的抑制作用。5. 马铃薯线粒体中的腺嘌呤核苷酸含量约为每毫克蛋白质1 nmol。苍术苷对马铃薯线粒体中ADP转运的抑制效率比对羧基苍术苷低30至40倍。

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