Structural insights into conformational switching in the copper metalloregulator CsoR from Streptomyces lividans.

Tatiana V Porto, Michael A Hough, Jonathan A R Worrall
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引用次数: 9

Abstract

Copper-sensitive operon repressors (CsoRs) act to sense cuprous ions and bind them with a high affinity under copper stress in many bacteria. The binding of copper(I) leads to a conformational change in their homotetramer structure, causing disassembly of the operator DNA-CsoR complex and evoking a transcriptional response. Atomic-level structural insight into the conformational switching mechanism between the apo and metal-bound states is lacking. Here, a new X-ray crystal structure of the CsoR from Streptomyces lividans is reported and compared with a previously reported S. lividans CsoR X-ray structure crystallized under different conditions. Based on evidence from this new X-ray structure, it is revealed that the conformational switching between states centres on a concertina effect at the C-terminal end of each α2 helix in the homotetramer. This drives the Cys104 side chain, a copper(I)-ligating residue, into a position enabling copper(I) coordination and as a result disrupts the α2-helix geometry, leading to a compacting and twisting of the homotetramer structure. Strikingly, the conformational switching induces a redistribution of electrostatic surface potential on the tetrameric DNA-binding face, which in the copper(I)-bound state would no longer favour interaction with the mode of operator DNA binding.

铜金属调控因子CsoR构象转换的结构研究。
铜敏感操纵子阻遏物(cors)在铜胁迫下对铜离子起感应作用,并以高亲和力与铜离子结合。铜(I)的结合导致其同四聚体结构的构象变化,导致操作员DNA-CsoR复合物的拆卸并引起转录反应。在载脂蛋白和金属结合态之间的构象转换机制的原子水平结构的洞察力是缺乏的。本文报道了一种新的lividans链霉菌CsoR的x射线晶体结构,并与之前报道的lividans CsoR在不同条件下结晶的x射线结构进行了比较。基于这种新x射线结构的证据,揭示了态之间的构象转换集中在同四聚体中每个α2螺旋的c端上的手风琴效应。这使得Cys104侧链(铜(I)连接残基)进入铜(I)配位的位置,从而破坏α2-螺旋的几何形状,导致同四聚体结构的压实和扭曲。引人注目的是,构象切换引起四聚体DNA结合面上静电表面电位的重新分配,在铜(I)结合状态下,这将不再有利于与操作符DNA结合模式的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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