Bott M, Bolliger M, Hennecke H
Mikrobiologisches Institut, Eidgenössische Technische Hochschule, Zürich, Switzerland.
Mol Microbiol. 1990 Dec;4(12):2147-57. doi: 10.1111/j.1365-2958.1990.tb00576.x.
Further genetic evidence is provided here that Bradyrhizobium japonicum possesses a mitochondria-like electron-transport pathway: 2[H]----UQ----bc1----c----aa3----O2. Two Tn5-induced mutants, COX122 and COX132, having cytochrome c oxidase-negative phenotypes, were obtained and characterized. Mutant COX122 was defective in a novel gene, named cycM, which was responsible for the synthesis of a c-type cytochrome with an Mr of 20,000 (20K). This 20K cytochrome c appeared to catalyse electron transport from the cytochrome bc1 complex to the aa3-type terminal oxidase and, unlike mitochondrial cytochrome c, was membrane-bound in B. japonicum. The Tn5 insertion of mutant COX132 was localized in coxA, the structural gene for subunit I of cytochrome aa3. This finding also led to the cloning and sequencing of the corresponding wild-type coxA gene that encoded a 541-amino-acid protein with a predicted Mr of 59,247. The CoxA protein shared about 60% sequence identity with the cytochrome aa3 subunit I of mitochondria. The B. japonicum cycM and coxA mutants were able to fix nitrogen in symbiosis with soybean (Fix+). In contrast, mutants described previously which lacked the bc1 complex did not develop into endosymbiotic bacteroids and were thus Fix-. The data suggest that a symbiosis-specific respiratory chain exists in B. japonicum in which the electrons branch off at the bc1 complex.
本文提供了进一步的遗传学证据,表明日本慢生根瘤菌拥有一条类似线粒体的电子传递途径:2[H]----泛醌----bc1----细胞色素c----aa3----O₂。获得并鉴定了两个Tn5诱导的具有细胞色素c氧化酶阴性表型的突变体COX122和COX132。突变体COX122在一个名为cycM的新基因中存在缺陷,该基因负责合成一种相对分子质量为20,000(20K)的c型细胞色素。这种20K细胞色素c似乎催化电子从细胞色素bc1复合体传递到aa3型末端氧化酶,并且与线粒体细胞色素c不同,它在日本慢生根瘤菌中是膜结合的。突变体COX132的Tn5插入定位于coxA,即细胞色素aa3亚基I的结构基因。这一发现还导致了相应野生型coxA基因的克隆和测序,该基因编码一个541个氨基酸的蛋白质,预测相对分子质量为59,247。CoxA蛋白与线粒体细胞色素aa3亚基I的序列同一性约为60%。日本慢生根瘤菌的cycM和coxA突变体能够与大豆共生固氮(Fix+)。相比之下,先前描述的缺乏bc1复合体的突变体不能发育成内共生类菌体,因此是Fix-。数据表明,日本慢生根瘤菌中存在一条共生特异性呼吸链,其中电子在bc1复合体处分支。