Iwasaki T, Wakagi T, Isogai Y, Iizuka T, Oshima T
Department of Life Science, Tokyo Institute of Technology, Yokohama, Japan.
J Biol Chem. 1995 Dec 29;270(52):30893-901. doi: 10.1074/jbc.270.52.30893.
The terminal segment of the aerobic respiratory chain of the thermoacidophilic archaeon Sulfolobus sp. strain 7 is an unusual caldariellaquinol oxidase supercomplex, which contains at least one b-type and three spectroscopically distinguishable a-type cytochromes, one copper, and a Rieske-type FeS center. In this paper, we report the purification and characterization of two different forms of the archaeal a-type cytochromes, namely, a three-subunit cytochrome a583-aa3 subcomplex and a single-subunit cytochrome aa3 derived from the cytochrome subcomplex, in order to facilitate further studies on the terminal oxidase segment of Sulfolobus. The optical and EPR spectroscopic analyses suggest the presence of two different low-spin heme centers and one high-spin heme center in the purified cytochrome a583-aa3 subcomplex, and one low-spin and one high-spin hemes in cytochrome aa3, respectively. The Rieske-type FeS center detected in the purified cytochrome supercomplex was absent in two forms of the a-type cytochrome oxidase, indicating its association with cytochrome b562. The crystal field parameters of the lowspin heme a583 center indicate that its axial ligands may be similar to those of cytochromes c, rather than conventional bis-histidine ligation. In spite of the absence of any c-type cytochrome, a ferrocytochrome c oxidase activity was detected in the archaeal purified cytochrome a583-aa3 subcomplex with no quinol oxidase activity, but not in the purified cytochrome oxidase supercomplex, which has been tentatively interpreted as a representative of electron transfer from the Rieske FeS center to cytochrome a583 in vivo. Thus, our results indicate the following scheme for the intramolecular electron transfer of the terminal oxidase supercomplex from Sulfolobus sp. strain 7: [caldariellaquinol-->] b562-->Rieske FeS center-->a583 aa3-->molecular oxygen.
嗜热嗜酸古菌硫化叶菌属菌株7的需氧呼吸链末端片段是一种不寻常的卡尔达里喹醇氧化酶超复合物,它包含至少一个b型和三个光谱上可区分的a型细胞色素、一个铜和一个 Rieske 型铁硫中心。在本文中,我们报告了两种不同形式的古菌a型细胞色素的纯化和表征,即一个三亚基细胞色素a583 - aa3亚复合物和一个源自细胞色素亚复合物的单亚基细胞色素aa3,以便促进对硫化叶菌末端氧化酶片段的进一步研究。光学和电子顺磁共振光谱分析表明,纯化的细胞色素a583 - aa3亚复合物中存在两个不同的低自旋血红素中心和一个高自旋血红素中心,而细胞色素aa3中分别存在一个低自旋和一个高自旋血红素。在纯化的细胞色素超复合物中检测到的 Rieske 型铁硫中心在两种形式的a型细胞色素氧化酶中均不存在,表明它与细胞色素b562相关联。低自旋血红素a583中心的晶体场参数表明其轴向配体可能与细胞色素c的相似,而不是传统的双组氨酸配位。尽管没有任何c型细胞色素,但在古菌纯化的细胞色素a583 - aa3亚复合物中检测到亚铁细胞色素c氧化酶活性,且无喹醇氧化酶活性,但在纯化的细胞色素氧化酶超复合物中未检测到,这初步解释为体内从 Rieske 铁硫中心到细胞色素a583的电子转移代表。因此,我们的结果表明了硫化叶菌属菌株7末端氧化酶超复合物分子内电子转移的以下方案:[卡尔达里喹醇 -->] b562 --> Rieske 铁硫中心 --> a583 aa3 --> 分子氧。