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Identifying important structural characteristics of arsenic resistance proteins by using designed three-stranded coiled coils

机译:通过使用设计的三链盘绕线圈鉴定抗砷蛋白的重要结构特征

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摘要

Arsenic, a contaminant of water supplies worldwide, is one of the most toxic inorganic ions. Despite arsenic's health impact, there is relatively little structural detail known about its interactions with proteins. Bacteria such as Escherichia coli have evolved arsenic resistance using the Ars operon that is regulated by ArsR, a repressor protein that dissociates from DNA when As(III) binds. This protein undergoes a critical conformational change upon binding As(III) with three cysteine residues. Unfortunately, structures of ArsR with or without As(III) have not been reported. Alternatively, de novo designed peptides can bind As(III) in an endo configuration within a thiolate-rich environment consistent with that proposed for both ArsR and ArsD. We report the structure of the As(III) complex of Coil Ser L9C to a 1.8-Å resolution, providing x-ray characterization of As(III) in a Tris thiolate protein environment and allowing a structural basis by which to understand arsenated ArsR.
机译:砷是全球供水的污染物,是毒性最高的无机离子之一。尽管砷对健康有影响,但有关其与蛋白质相互作用的结构细节知之甚少。诸如大肠杆菌之类的细菌已经利用Ars操纵子发展了砷抗性,该操纵子受ArsR调控,当As(III)结合时,阻遏蛋白从DNA上解离。该蛋白在As(III)与三个半胱氨酸残基结合后经历了关键的构象变化。不幸的是,没有报道有或没有As(III)的ArsR的结构。或者,从头设计的肽可以在富含硫醇盐的环境中以与ArsR和ArsD提议的一致的内构构型结合As(III)。我们报告的线圈Ser L9C的As(III)配合物的结构以1.8-Å的分辨率,提供了Tris硫醇盐蛋白环境中As(III)的x射线表征,并为理解砷化ArsR提供了结构基础。

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