de Gier J W, Schepper M, Reijnders W N, van Dyck S J, Slotboom D J, Warne A, Saraste M, Krab K, Finel M, Stouthamer A H, van Spanning R J, van der Oost J
Department of Molecular and Cellular Biology, BioCentrum Amsterdam, Vrije Universiteit, Netherlands.
Mol Microbiol. 1996 Jun;20(6):1247-60. doi: 10.1111/j.1365-2958.1996.tb02644.x.
In Paracoccus denitrificans the aa3-type cytochrome c oxidase and the bb3-type quinol oxidase have previously been characterized in detail, both biochemically and genetically. Here we report on the isolation of a genomic locus that harbours the gene cluster ccoNOOP, and demonstrate that it encodes an alternative cbb3-type cytochrome c oxidase. This oxidase has previously been shown to be specifically induced at low oxygen tensions, suggesting that its expression is controlled by an oxygen-sensing mechanism. This view is corroborated by the observation that the ccoNOOP gene cluster is preceded by a gene that encodes an FNR homologue and that its promoter region contains an FNR-binding motif. Biochemical and physiological analyses of a set of oxidase mutants revealed that, at least under the conditions tested, cytochromes aa3, bb3 and cbb3 make up the complete set of terminal oxidases in P. denitrificans. Proton-translocation measurements of these oxidase mutants indicate that all three oxidase types have the capacity to pump protons. Previously, however, we have reported decreased H+/e- coupling efficiencies of the cbb3-type oxidase under certain conditions. Sequence alignment suggests that many residues that have been proposed to constitute the chemical and pumped proton channels in cytochrome aa3 (and probably also in cytochrome bb3) are not conserved in cytochrome cbb3. It is concluded that the design of the proton pump in cytochrome cbb3 differs significantly from that in the other oxidase types.
在脱氮副球菌中,aa3型细胞色素c氧化酶和bb3型喹啉氧化酶先前已在生化和遗传方面进行了详细表征。在此,我们报告了一个包含基因簇ccoNOOP的基因组位点的分离,并证明它编码一种替代性的cbb3型细胞色素c氧化酶。这种氧化酶先前已被证明在低氧张力下会被特异性诱导,这表明其表达受氧感应机制控制。ccoNOOP基因簇之前有一个编码FNR同源物的基因,且其启动子区域包含一个FNR结合基序,这一观察结果证实了这一观点。对一组氧化酶突变体的生化和生理学分析表明,至少在所测试的条件下,细胞色素aa3、bb3和cbb3构成了脱氮副球菌中完整的末端氧化酶集合。对这些氧化酶突变体的质子转运测量表明,所有三种氧化酶类型都有泵浦质子的能力。然而,我们之前曾报道在某些条件下cbb3型氧化酶的H⁺/e⁻偶联效率降低。序列比对表明,许多在细胞色素aa3(可能还有细胞色素bb3)中被认为构成化学质子通道和泵浦质子通道的残基在细胞色素cbb3中并不保守。结论是,细胞色素cbb3中质子泵的设计与其他氧化酶类型有显著差异。