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首页> 外文期刊>Angewandte Chemie >Visualizing Biological Copper Storage: The Importance of Thiolate-Coordinated Tetranuclear Clusters
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Visualizing Biological Copper Storage: The Importance of Thiolate-Coordinated Tetranuclear Clusters

机译:可视化生物铜储存:硫醇酸酯协调四核簇的重要性

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摘要

Bacteria possess cytosolic proteins (Csp3s) capable of binding large quantities of copper and preventing toxicity. Crystal structures of a Csp3 plus increasing amounts of Cu-I provide atomic-level information about how a storage protein loads with metal ions. Many more sites are occupied than Cu-I equiv added, with binding by twelve central sites dominating. These can form [Cu-4(S-Cys)(4)] intermediates leading to [Cu-4(S-Cys)(5)](-), [Cu-4(S-Cys)(6)](2-), and [Cu-4(S-Cys)(5)(O-Asn)](-) clusters. Construction of the five Cu-I sites at the opening of the bundle lags behind the main core, and the two least accessible sites at the opposite end of the bundle are occupied last. Facile Cu-I cluster formation, reminiscent of that for inorganic complexes with organothiolate ligands, is largely avoided in biology but is used by proteins that store copper in the cytosol of prokaryotes and eukaryotes, where this reactivity is also key to toxicity.
机译:细菌具有能够结合大量铜和预防毒性的细胞溶胶蛋白(CSP3)。 CSP3的晶体结构加上Cu-I的增加量提供了关于如何用金属离子载荷的储存蛋白质的原子级信息。 许多网站被占用的Cu-I平等添加,其中十二个中央场所的绑定主导地位。 这些可以形成[Cu-4(S-Cys)(4)]中间体,所述中间体导致[Cu-4(S-Cys)(5)]( - ),[Cu-4(S-Cys)(6)]( 2-)和[Cu-4(S-Cys)(5)(O-ASN)]( - )簇。 在主核心的束滞后的开口下的五个Cu-1位点的构造,并且捆绑在束的另一个最小可接近的位置占用。 容易解的Cu-I簇形成,使具有细胞直甲酸盐配体的无机络合物的联想在一起,在生物学中大大避免,但是由蛋白质使用,该蛋白质在原核生物和真核生物中储存铜,其中这种反应性也是毒性的关键。

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