Ekici Seda, Pawlik Grzegorz, Lohmeyer Eva, Koch Hans-Georg, Daldal Fevzi
University of Pennsylvania, Department of Biology, Philadelphia, PA 19104, USA.
Biochim Biophys Acta. 2012 Jun;1817(6):898-910. doi: 10.1016/j.bbabio.2011.10.011. Epub 2011 Nov 4.
The cbb(3)-type cytochrome c oxidases (cbb(3)-Cox) constitute the second most abundant cytochrome c oxidase (Cox) group after the mitochondrial-like aa(3)-type Cox. They are present in bacteria only, and are considered to represent a primordial innovation in the domain of Eubacteria due to their phylogenetic distribution and their similarity to nitric oxide (NO) reductases. They are crucial for the onset of many anaerobic biological processes, such as anoxygenic photosynthesis or nitrogen fixation. In addition, they are prevalent in many pathogenic bacteria, and important for colonizing low oxygen tissues. Studies related to cbb(3)-Cox provide a fascinating paradigm for the biogenesis of sophisticated oligomeric membrane proteins. Complex subunit maturation and assembly machineries, producing the c-type cytochromes and the binuclear heme b(3)-Cu(B) center, have to be coordinated precisely both temporally and spatially to yield a functional cbb(3)-Cox enzyme. In this review we summarize our current knowledge on the structure, regulation and assembly of cbb(3)-Cox, and provide a highly tentative model for cbb(3)-Cox assembly and formation of its heme b(3)-Cu(B) binuclear center. This article is part of a Special Issue entitled: Biogenesis/Assembly of Respiratory Enzyme Complexes.
cbb(3)型细胞色素c氧化酶(cbb(3)-Cox)是仅次于线粒体样aa(3)型Cox的第二丰富的细胞色素c氧化酶(Cox)群体。它们仅存在于细菌中,由于其系统发育分布以及与一氧化氮(NO)还原酶的相似性,被认为代表了真细菌领域中的一种原始创新。它们对于许多厌氧生物过程的启动至关重要,例如无氧光合作用或固氮作用。此外,它们在许多病原菌中普遍存在,并且对于在低氧组织中定殖很重要。与cbb(3)-Cox相关的研究为复杂寡聚膜蛋白的生物合成提供了一个引人入胜的范例。产生c型细胞色素和双核血红素b(3)-Cu(B)中心的复杂亚基成熟和组装机制必须在时间和空间上精确协调,以产生功能性的cbb(3)-Cox酶。在这篇综述中,我们总结了目前关于cbb(3)-Cox的结构、调控和组装的知识,并为cbb(3)-Cox的组装及其血红素b(3)-Cu(B)双核中心的形成提供了一个极具推测性的模型。本文是名为:呼吸酶复合物的生物合成/组装的特刊的一部分。