Magnetic Resonance Center CERM, University of Florence, Via Luigi Sacconi 6, 50019, Sesto Fiorentino, Florence, Italy.
J Biol Inorg Chem. 2011 Mar;16(3):391-403. doi: 10.1007/s00775-010-0735-x. Epub 2010 Dec 23.
Sco proteins are widespread in eukaryotic and in many prokaryotic organisms. They have a thioredoxin-like fold and bind a single copper(I) or copper(II) ion through a CXXXC motif and a conserved His ligand, with both tight and weak affinities. They have been implicated in the assembly of the Cu(A) site of cytochrome c oxidase as copper chaperones and/or thioredoxins. In this work we have structurally characterized a Sco domain which is naturally fused with a typical electron transfer molecule, i.e., cytochrome c, in Pseudomonas putida. The thioredoxin-like Sco domain does not bind copper(II), binds copper(I) with weak affinity without involving the conserved His, and has redox properties consisting of a thioredoxin activity and of the ability of reducing copper(II) to copper(I), and iron(III) to iron(II) of the cytochrome c domain. These findings indicate that the His ligand coordination is the discriminating factor for introducing a metallochaperone function in a thioredoxin-like fold, typically responsible for electron transfer processes. A comparative structural analysis of the Sco domain from P. putida versus eukaryotic Sco proteins revealed structural determinants affecting the formation of a tight-affinity versus a weak-affinity copper binding site in Sco proteins.
Sco 蛋白广泛存在于真核生物和许多原核生物中。它们具有硫氧还蛋白样折叠结构,通过 CXXXC 基序和保守的 His 配体结合单个铜 (I) 或铜 (II) 离子,具有紧密和弱亲和力。它们被认为是细胞色素 c 氧化酶 Cu(A) 位点组装的铜伴侣和/或硫氧还蛋白。在这项工作中,我们对天然融合在 Pseudomonas putida 中典型电子传递分子细胞色素 c 上的 Sco 结构域进行了结构表征。该硫氧还蛋白样 Sco 结构域不结合铜 (II),与铜 (I) 结合的亲和力较弱,不涉及保守的 His,并且具有氧化还原特性,包括硫氧还蛋白活性以及还原细胞色素 c 结构域中铜 (II)为铜 (I) 和铁 (III) 为铁 (II) 的能力。这些发现表明 His 配体配位是在硫氧还蛋白样折叠中引入金属伴侣功能的区分因素,通常负责电子传递过程。对来自 P. putida 的 Sco 结构域与真核 Sco 蛋白的比较结构分析揭示了影响 Sco 蛋白中形成紧密亲和力与弱亲和力铜结合位点的结构决定因素。