de Vries S
J Bioenerg Biomembr. 1986 Jun;18(3):195-224. doi: 10.1007/BF00743464.
The experimental data currently available suggest that QH2:cytochrome c oxidoreductase functions according to a Q-cycle type of mechanism. The molecular weight of the enzyme in a natural or artificial phospholipid bilayer or in solution corresponds to that of a dimer. The pre-steady state kinetics of reduction of the prosthetic groups indicate that the enzyme is functionally dimeric. A double Q cycle is proposed, describing the pathway of electron transfer in the dimeric QH2:cytochrome c oxidoreductase. According to this scheme, the two monomeric halves of the enzyme act in a cooperative fashion to complete the catalytic cycle. It is proposed that high-potential cytochrome b-562 and low-potential cytochrome b-562 act cooperatively, viz. as a functional pair, in the antimycin-sensitive reduction of ubiquinone to ubiquinol.
目前可得的实验数据表明,QH2:细胞色素c氧化还原酶按照Q循环类型的机制发挥作用。该酶在天然或人工磷脂双层中或溶液中的分子量与二聚体的分子量相对应。辅基还原的预稳态动力学表明该酶在功能上是二聚体。提出了一个双Q循环,描述了二聚体QH2:细胞色素c氧化还原酶中的电子传递途径。根据该方案,酶的两个单体部分以协同方式作用以完成催化循环。有人提出,高电位细胞色素b-562和低电位细胞色素b-562协同作用,即在抗霉素敏感的泛醌还原为泛醇的过程中作为一个功能对发挥作用。