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烷基侧链变化对泛醌衍生物电子转移活性的影响。

Effect of alkyl side chain variation on the electron-transfer activity of ubiquinone derivatives.

作者信息

Yu C A, Gu L Q, Lin Y Z, Yu L

出版信息

Biochemistry. 1985 Jul 16;24(15):3897-902. doi: 10.1021/bi00336a013.

Abstract

The effect of the alkyl side chain of the ubiquinone molecule on the electron-transfer activity of ubiquinone in mitochondrial succinate-cytochrome c reductase is studied by using synthetic ubiquinone derivatives that possess the basic ubiquinone structure of 2,3-dimethoxy-5-methyl-1,4-benzoquinone with different alkyl side chains at the 6-position. The alkyl side chains vary in chain length, degree of saturation, and location of double bonds. When a ubiquinone derivative is used as an electron acceptor for succinate-ubiquinone reductase, an alkyl side chain of six carbons is needed to obtain the maximum activity. However, when it serves as an electron donor for ubiquinol-cytochrome c reductase or as a mediator in succinate-cytochrome c reductase, an alkyl side chain of 10 carbons gives maximal efficiency. Introduction of one or two isolated double bonds into the alkyl side chain of the ubiquinone molecule has little effect on electron-transfer activity. However, a conjugated double bond system in the alkyl side chain drastically reduces electron-transfer efficiency. The effect of the conjugated double bond system on the electron-transferring efficiency of ubiquinone depends on its location in the alkyl side chain. When location is far from the benzoquinone ring, the effect is minimal. These observations together with the results obtained from photoaffinity-labeling studies lead us to conclude that flexibility in the portion of the alkyl side chain immediately adjacent to the benzoquinone ring is required for the electron-transfer activity of ubiquinone.

摘要

通过使用具有2,3 - 二甲氧基 - 5 - 甲基 - 1,4 - 苯醌基本泛醌结构且在6位带有不同烷基侧链的合成泛醌衍生物,研究了泛醌分子的烷基侧链对线粒体琥珀酸 - 细胞色素c还原酶中泛醌电子转移活性的影响。烷基侧链在链长、饱和度和双键位置上有所不同。当泛醌衍生物用作琥珀酸 - 泛醌还原酶的电子受体时,需要六个碳的烷基侧链才能获得最大活性。然而,当它作为泛醇 - 细胞色素c还原酶的电子供体或作为琥珀酸 - 细胞色素c还原酶中的介质时,十个碳的烷基侧链效率最高。在泛醌分子的烷基侧链中引入一个或两个孤立双键对电子转移活性影响很小。然而,烷基侧链中的共轭双键系统会大幅降低电子转移效率。共轭双键系统对泛醌电子转移效率的影响取决于其在烷基侧链中的位置。当位置远离苯醌环时,影响最小。这些观察结果以及光亲和标记研究获得的结果使我们得出结论,泛醌的电子转移活性需要紧邻苯醌环的烷基侧链部分具有灵活性。

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