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Sco proteins are involved in electron transfer processes

机译:Sco蛋白参与电子转移过程

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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 CuA 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.
机译:Sco蛋白广泛存在于真核生物和许多原核​​生物中。它们具有类似硫氧还蛋白的折叠,并通过CXXXC基序和保守的His配体结合单个铜(I)或铜(II)离子,具有紧密和弱的亲和力。它们与细胞色素c氧化酶的CuA位点的组装有关,如铜伴侣蛋白和/或硫氧还蛋白。在这项工作中,我们在结构上表征了Sco结构域,该结构域与恶臭假单胞菌中的典型电子转移分子即细胞色素c自然融合。类似于硫氧还蛋白的Sco结构域不结合铜(II),以弱亲和力结合铜(I)而不涉及保守的His,并且具有由硫氧还蛋白活性和将铜(II)还原为铜的能力的氧化还原特性。 I),以及细胞色素c结构域的铁(III)至铁(II)。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蛋白功能的区分因素,通常负责电子转移过程。对恶臭假单胞菌与真核Sco蛋白的Sco结构域的比较结构分析显示,结构决定因素影响Sco蛋白中紧密亲和性与弱亲和性铜结合位点的形成。

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