Matsutani Minenosuke, Fukushima Kota, Kayama Chiho, Arimitsu Misato, Hirakawa Hideki, Toyama Hirohide, Adachi Osao, Yakushi Toshiharu, Matsushita Kazunobu
Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Yamaguchi, Yamaguchi 753-8515, Japan.
Laboratory of Applied Plant Genomics, Department of Plant Genome Research, Kazusa DNA Research Institute, 2-6-7 Kazusakamatari, Kisarazu, Chiba 292-0818, Japan.
Biochim Biophys Acta. 2014 Oct;1837(10):1810-20. doi: 10.1016/j.bbabio.2014.05.355. Epub 2014 May 23.
The bacterial aerobic respiratory chain has a terminal oxidase of the heme-copper oxidase superfamily, comprised of cytochrome c oxidase (COX) and ubiquinol oxidase (UOX); UOX evolved from COX. Acetobacter pasteurianus, an α-Proteobacterial acetic acid bacterium (AAB), produces UOX but not COX, although it has a partial COX gene cluster, ctaBD and ctaA, in addition to the UOX operon cyaBACD. We expressed ctaB and ctaA genes of A. pasteurianus in Escherichia coli and demonstrated their function as heme O and heme A synthases. We also found that the absence of ctaD function is likely due to accumulated mutations. These COX genes are closely related to other α-Proteobacterial COX proteins. However, the UOX operons of AAB are closely related to those of the β/γ-Proteobacteria (γ-type UOX), distinct from the α/β-Proteobacterial proteins (α-type UOX), but different from the other γ-type UOX proteins by the absence of the cyoE heme O synthase. Thus, we suggest that A. pasteurianus has a functional γ-type UOX but has lost the COX genes, with the exception of ctaB and ctaA, which supply the heme O and A moieties for UOX. Our results suggest that, in AAB, COX was replaced by β/γ-Proteobacterial UOX via horizontal gene transfer, while the COX genes, except for the heme O/A synthase genes, were lost.
细菌有氧呼吸链具有血红素 - 铜氧化酶超家族的末端氧化酶,由细胞色素c氧化酶(COX)和泛醇氧化酶(UOX)组成;UOX由COX进化而来。巴氏醋杆菌是一种α - 变形菌属的醋酸细菌(AAB),它能产生UOX但不产生COX,尽管除了UOX操纵子cyaBACD外,它还有一个部分COX基因簇ctaBD和ctaA。我们在大肠杆菌中表达了巴氏醋杆菌的ctaB和ctaA基因,并证明了它们作为血红素O和血红素A合酶的功能。我们还发现ctaD功能缺失可能是由于积累的突变所致。这些COX基因与其他α - 变形菌属的COX蛋白密切相关。然而,AAB的UOX操纵子与β/γ - 变形菌属的操纵子密切相关(γ型UOX),与α/β - 变形菌属的蛋白(α型UOX)不同,但又因缺少cyoE血红素O合酶而与其他γ型UOX蛋白不同。因此,我们认为巴氏醋杆菌具有功能性的γ型UOX,但除了为UOX提供血红素O和A部分的ctaB和ctaA外,COX基因已经丢失。我们的结果表明,在AAB中,COX通过水平基因转移被β/γ - 变形菌属的UOX所取代,而除了血红素O/A合酶基因外的COX基因则丢失了。