Schütz Michael, Schoepp-Cothenet Barbara, Lojou Elisabeth, Woodstra Mireille, Lexa Doris, Tron Pascale, Dolla Alain, Durand Marie-Claire, Stetter Karl Otto, Baymann Frauke
Laboratoire de Bioénergétique et Ingénierie des Protéines (UPR9036), CNRS, 31, chemin Joseph-Aiguier, F-13402 Marseille Cedex 20, France.
Biochemistry. 2003 Sep 16;42(36):10800-8. doi: 10.1021/bi034452a.
Phylogenetic analysis of constituent proteins of Rieske/cytochrome b complexes [Schütz et al. (2000) J. Mol. Biol. 300, 663-675] indicated that the respective enzyme from the hyperthermophile Aquifex (A.) aeolicus is closely related to proteobacterial counterparts, in disagreement with positioning of its parent species on small subunit rRNA trees. An assessment of the details and possible reasons for this discrepancy necessitates a thorough understanding of the biochemical and biophysical properties of the enzyme in addition to the bioinformatic data. The cytochrome bc(1) complex from A. aeolicus, which is part of the "Knallgasreaction" pathway, was therefore studied in membranes and in detergent-solubilized, isolated complex. Hemes b(L) (E(m,7) = -190 mV; g(z)= 3.7), b(H) (E(m,7) = -60 mV; g(z )= 3.45), and c(1) (E(m,7) = +160 mV; g(z )= 3.55) were identified by EPR and optical spectroscopy in combination with electrochemical methods. Two electrochemically distinct (E(m,7) = +95 mV; E(m,7) = +210 mV) Rieske centers were detected in membranes, and the +210 mV species was shown to correspond to the Rieske center of the cyt bc(1) complex. The gene coding for this latter Rieske protein was heterologously expressed in Escherichia coli, and the resulting protein was characterized in detail. The pool quinone of A. aeolicus was determined to be naphthoquinone. The redox poises of the individual electron-transfer steps are compared to those of other Rieske/cyt b complexes. The Aquifex enzyme was found to represent the only extant naphthoquinol oxidizing true cyt bc(1) complex described so far. An improved scenario for the phylogenetic positioning of the Aquifex cyt bc(1) complex is proposed.
Rieske/细胞色素b复合物组成蛋白的系统发育分析[舒茨等人(2000年)《分子生物学杂志》300卷,663 - 675页]表明,嗜热菌嗜泉古菌(A. aeolicus)的相应酶与变形菌门的对应物密切相关,这与其亲本物种在小亚基rRNA树上的定位不一致。要评估这种差异的细节和可能原因,除了生物信息学数据外,还需要深入了解该酶的生化和生物物理性质。因此,对嗜泉古菌参与“氢细菌反应”途径的细胞色素bc(1)复合物在膜中和去污剂增溶的分离复合物中进行了研究。通过电子顺磁共振(EPR)、光谱学并结合电化学方法鉴定了血红素b(L)(E(m,7) = -190 mV;g(z)= 3.7)、b(H)(E(m,7) = -60 mV;g(z )= 3.45)和c(1)(E(m,7) = +160 mV;g(z )= 3.55)。在膜中检测到两个电化学性质不同的(E(m,7) = +95 mV;E(m,7) = +210 mV) Rieske中心,并且+210 mV的物种被证明对应于细胞色素bc(1)复合物的Rieske中心。编码后一种Rieske蛋白的基因在大肠杆菌中进行了异源表达,并对产生的蛋白进行了详细表征。确定嗜泉古菌的醌库为萘醌。将各个电子传递步骤的氧化还原平衡与其他Rieske/细胞色素b复合物的进行了比较。发现嗜泉古菌的酶代表了迄今为止描述的唯一现存的萘醌醇氧化型真正细胞色素bc(1)复合物。提出了一种改进的嗜泉古菌细胞色素bc(1)复合物系统发育定位方案。