Sakamoto Junshi, Shibata Takatsugu, Mine Tadashi, Miyahara Ryoko, Torigoe Tomokimi, Noguchi Shunsuke, Matsushita Kazunobu, Sone Nobuhito
Department of Biochemical Engineering and Science, Kyushu Institute of Technology, Kawazu 680-4, Iizuka, Fukuoka-ken 820-8502, Japan1.
Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Yamaguchi 753-0841, Japan2.
Microbiology (Reading). 2001 Oct;147(Pt 10):2865-2871. doi: 10.1099/00221287-147-10-2865.
The membranes from Corynebacterium glutamicum cells contain a hydrophobic di-haem C protein as the cytochrome c subunit of the new type of cytochrome bc complex (complex III in the respiratory chain) encoded by the qcrCAB operon [Sone, N., Nagata, K., Kojima, H., Tajima, J., Kodera, Y., Kanamaru, T., Noguchi, S. & Sakamoto, J. (2001). Biochim Biophys Acta 1503, 279-290]. To characterize complex IV, cytochrome c oxidase and its structural genes were isolated. The oxidase is of the cytochrome aa(3) type, but mass spectrometry indicated that the haem is haem As, which contains a geranylgeranyl side-chain instead of a farnesyl group. The enzyme is a SoxM-type haem-copper oxidase composed of three subunits. Edman degradation and mass spectrometry suggested that the N-terminal signal sequence of subunit II is cleaved and that the new N-terminal cysteine residue is diacylglycerated, while neither subunit I nor subunit III is significantly modified. The genes for subunits II (ctaC) and III (ctaE) are located upstream of the qcrCAB operon, while that for subunit I (ctaD) is located separately. The oxidase showed low enzyme activity with extrinsic substrates such as cytochromes c from horse heart or yeast, and has the Cu(A)-binding motif in its subunit II. A prominent structural feature is the insertion of an extra charged amino acid cluster between the beta2 and beta4 strands in the substrate-binding domain of subunit II. The beta2-beta4 loop of this oxidase is about 30 residues longer than that of major cytochrome c oxidases from mitochondria and proteobacteria, and is rich in both acidic and basic residues. These findings suggest that the extra charged cluster may play a role in the interaction of the oxidase with the cytochrome c subunit of the new type of bc complex.
谷氨酸棒杆菌细胞的膜含有一种疏水的双血红素C蛋白,作为由qcrCAB操纵子编码的新型细胞色素bc复合物(呼吸链中的复合物III)的细胞色素c亚基[Sone, N., Nagata, K., Kojima, H., Tajima, J., Kodera, Y., Kanamaru, T., Noguchi, S. & Sakamoto, J. (2001). Biochim Biophys Acta 1503, 279 - 290]。为了表征复合物IV,分离出了细胞色素c氧化酶及其结构基因。该氧化酶为细胞色素aa(3)型,但质谱分析表明血红素是血红素As,其含有一个香叶基香叶基侧链而非法尼基侧链。该酶是一种由三个亚基组成的SoxM型血红素 - 铜氧化酶。埃德曼降解和质谱分析表明,亚基II的N端信号序列被切割,新的N端半胱氨酸残基被二酰基甘油化,而亚基I和亚基III均未发生显著修饰。亚基II(ctaC)和亚基III(ctaE)的基因位于qcrCAB操纵子的上游,而亚基I(ctaD)的基因则单独定位。该氧化酶对诸如马心或酵母的细胞色素c等外在底物表现出低酶活性,并且在其亚基II中具有Cu(A)结合基序。一个显著的结构特征是在亚基II的底物结合结构域的β2和β4链之间插入了一个额外的带电荷氨基酸簇。该氧化酶的β2 - β4环比线粒体和变形菌的主要细胞色素c氧化酶的β2 - β4环长约30个残基,并且富含酸性和碱性残基。这些发现表明,额外的带电荷簇可能在该氧化酶与新型bc复合物的细胞色素c亚基的相互作用中发挥作用。