首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Construction of a flash-activated cyclic electron transport system by using bacterial reaction centers and the ubiquinone-cytochrome b-c1/c segment of mitochondria.
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Construction of a flash-activated cyclic electron transport system by using bacterial reaction centers and the ubiquinone-cytochrome b-c1/c segment of mitochondria.

机译:利用细菌反应中心和线粒体的泛醌-细胞色素b-c1 / c片段构建闪光激活的循环电子传输系统。

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摘要

Single-turnover electron transfer within the mitochondrial complex III has been studied by combining, in solution, the isolated complex from bovine heart with detergent-solubilized reaction centers of Rhodopseudomonas sphaeroides. Initiation of electron transfer by short flash activation resulted in the prompt oxidation of cytochrome c and reduction of cytochrome b. The subsequent reduction of ferricytochrome c was observed to be concomitant with the oxidation of the ferrocytochrome b, both reactions being inhibited by the addition of actimycin A. The rate of electron transfer through complex III is dependent upon the ambient redox potential poise in a way that is consistent with the presence of a redox component, presumably analogous to the photosynthetic ubiquinone Qz, which is an obligatory intermediate in electron transfer between cytochromes b and c. These results demonstrate cyclic electron transfer in a constructed assembly of mitochondrial complex III, cytochrome c, and photochemical reaction centers.
机译:通过在溶液中将分离自牛心的复合物与去污剂溶解的球形红假单胞菌反应中心结合,研究了线粒体复合物III中的单周电子转移。通过短时间的闪光活化开始电子转移导致细胞色素c迅速氧化和细胞色素b减少。观察到随后的铁细胞色素c的还原与铁细胞色素b的氧化同时发生,两个反应均受到放线霉素A的抑制。电子通过络合物III的传输速率取决于周围氧化还原电势的平衡,即与氧化还原成分的存在相一致,该氧化还原成分大概类似于光合作用的泛醌Qz,后者是细胞色素b和c之间电子转移的强制性中间产物。这些结果证明了在线粒体复合物III,细胞色素c和光化学反应中心的组装体中循环电子转移。

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