Brasseur Gaël, Lemesle-Meunier Danielle, Reinaud Floriane, Meunier Brigitte
Laboratoire de Bioénergétique et Ingénierie des Protéines, CNRS, 31 Chemin Joseph Aiguier, 13402 Marseille Cedex 20, France.
J Biol Chem. 2004 Jun 4;279(23):24203-11. doi: 10.1074/jbc.M311576200. Epub 2004 Mar 23.
The mitochondrial bc(1) complex catalyzes the oxidation of ubiquinol and the reduction of cytochrome (cyt) c. The cyt b mutation A144F has been introduced in yeast by the biolistic method. This residue is located in the cyt b cd(1) amphipathic helix in the quinol-oxidizing (Q(O)) site. The resulting mutant was respiration-deficient and was affected in the quinol binding and electron transfer rates at the Q(O) site. An intragenic suppressor mutation was selected (A144F+F179L) that partially alleviated the defect of quinol oxidation of the original mutant A144F. The suppressor mutation F179L, located at less than 4 A from A144F, is likely to compensate directly the steric hindrance caused by phenylalanine at position 144. A second set of suppressor mutations was obtained, which also partially restored the quinol oxidation activity of the bc(1) complex. They were located about 20 A from A144F in the hinge region of the iron-sulfur protein (ISP) between residues 85 and 92. This flexible region is crucial for the movement of the ISP between cyt b and cyt c(1) during enzyme turnover. Our results suggested that the compensatory effect of the mutations in ISP was due to the repositioning of this subunit on cyt b during quinol oxidation. This genetic and biochemical study thus revealed the close interaction between the cyt b cd(1) helix in the quinol-oxidizing Q(O) site and the ISP via the flexible hinge region and that fine-tuning of the Q(O) site catalysis can be achieved by subtle changes in the linker domain of the ISP.
线粒体bc(1)复合物催化泛醇的氧化和细胞色素(cyt)c的还原。通过生物弹道法在酵母中引入了细胞色素b突变A144F。该残基位于喹啉氧化(Q(O))位点的细胞色素b cd(1)两亲螺旋中。产生的突变体呼吸缺陷,并且在Q(O)位点的喹啉结合和电子传递速率方面受到影响。选择了一个基因内抑制突变(A144F+F179L),该突变部分缓解了原始突变体A144F的喹啉氧化缺陷。抑制突变F179L位于距A144F小于4埃处,可能直接补偿了144位苯丙氨酸引起的空间位阻。获得了第二组抑制突变,它们也部分恢复了bc(1)复合物的喹啉氧化活性。它们位于铁硫蛋白(ISP)铰链区中距A144F约20埃处,介于85和92位残基之间。这个灵活区域对于酶周转过程中ISP在细胞色素b和细胞色素c(1)之间的移动至关重要。我们的结果表明,ISP中突变的补偿作用是由于喹啉氧化过程中该亚基在细胞色素b上的重新定位。因此,这项遗传和生化研究揭示了喹啉氧化Q(O)位点的细胞色素b cd(1)螺旋与ISP通过灵活的铰链区之间的紧密相互作用,并且通过ISP连接域的细微变化可以实现Q(O)位点催化的微调。