Yu L, Yu C A, King T E
J Biol Chem. 1978 Apr 25;253(8):2657-63.
The indispensability of phospholipid and ubiquinone (Q) in mitochondrial electron transfer was studied by depleting phospholipid and Q in succinate-cytochrome c reductase and then replenishing the depleted enzyme. More than 90% of phospholipid and Q was removed by repeated ammonium sulfate-cholate fractionation. The depleted succinate-cytochrome c reductase showed no enzymatic activity for succinate leads to c or QH2 leads to c and yet retained most of the succinate leads to Q activity. All enzymatic activity was restored upon the addition of Q and phospholipid. Restoration required the addition of Q prior to the addition of phospholipid. Reversing the addition sequence or addition of a mixture of phospholipid and Q resulted only in a small restoration of activities. The conditions for restoration are given in detail. Removal of phospholipid from succinate-cytochrome c reductase resulted in reduction of cytochrome c1 in the absence of exogenous electron donor. Replenishing the preparation with phospholipid brought about the reoxidation of cytochrome c1 in the absence of electron acceptor or oxygen.
通过在琥珀酸 - 细胞色素c还原酶中消耗磷脂和泛醌(Q),然后补充耗尽的酶,研究了磷脂和泛醌(Q)在线粒体电子传递中的不可或缺性。通过反复硫酸铵 - 胆酸盐分级分离去除了超过90%的磷脂和Q。耗尽的琥珀酸 - 细胞色素c还原酶对琥珀酸生成c或QH2生成c没有酶活性,但仍保留了大部分琥珀酸生成Q的活性。添加Q和磷脂后,所有酶活性均得以恢复。恢复需要在添加磷脂之前添加Q。颠倒添加顺序或添加磷脂和Q的混合物仅导致活性的小幅恢复。详细给出了恢复的条件。从琥珀酸 - 细胞色素c还原酶中去除磷脂导致在没有外源电子供体的情况下细胞色素c1还原。用磷脂补充制剂导致在没有电子受体或氧气的情况下细胞色素c1重新氧化。