首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Substitution of the Native Zn(II) with Cd(II) Co(II) and Ni(II) Changes the Downhill Unfolding Mechanism of Ros87 to a Completely Different Scenario
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Substitution of the Native Zn(II) with Cd(II) Co(II) and Ni(II) Changes the Downhill Unfolding Mechanism of Ros87 to a Completely Different Scenario

机译:用CD(II)CO(II)和Ni(II)替换天然Zn(II)将ROS87的下坡展开机制改变为完全不同的情况

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摘要

The structural effects of zinc replacement by xenobiotic metal ions have been widely studied in several eukaryotic and prokaryotic zinc-finger-containing proteins. The prokaryotic zinc finger, that presents a bigger βββαα domain with a larger hydrophobic core with respect to its eukaryotic counterpart, represents a valuable model protein to study metal ion interaction with metallo-proteins. Several studies have been conducted on Ros87, the DNA binding domain of the prokaryotic zinc finger Ros, and have demonstrated that the domain appears to structurally tolerate Ni(II), albeit with important structural perturbations, but not Pb(II) and Hg(II), and it is in vitro functional when the zinc ion is replaced by Cd(II). We have previously shown that Ros87 unfolding is a two-step process in which a zinc binding intermediate converts to the native structure thorough a delicate downhill folding transition. Here, we explore the folding/unfolding behaviour of Ros87 coordinated to Co(II), Ni(II) or Cd(II), by UV-Vis, CD, DSC and NMR techniques. Interestingly, we show how the substitution of the native metal ion results in complete different folding scenarios. We found a two-state unfolding mechanism for Cd-Ros87 whose metal affinity Kd is comparable to the one obtained for the native Zn-Ros87, and a more complex mechanism for Co-Ros87 and Ni-Ros87, that show higher Kd values. Our data outline the complex cross-correlation between the protein–metal ion equilibrium and the folding mechanism proposing such an interplay as a key factor in the proper metal ion selection by a specific metallo-protein.
机译:Xenobiotic金属离子置换的锌替代的结构效应已被广泛研究了几种真核和原核锌 - 手指的蛋白质。代理锌指的,其具有较大的ββαα结构域具有较大的疏水芯,相对于其真核对应物代表了一种有价值的模型蛋白,以研究金属离子与金属蛋白相互作用。在ROS87上进行了几项研究,原核锌指ROS的DNA结合结构域,并且已经证明了该结构域在结构上耐受Ni(II),尽管具有重要的结构性扰动,但不是PB(II)和HG(II) ),当锌离子被CD(II)取代时,它是在体外功能的。我们之前已经表明,ROS87展开是一种两步过程,其中锌结合中间体转换为彻底的折叠折叠过渡到原生结构。在这里,我们通过UV-VI,CD,DSC和NMR技术探索与CO(II),Ni(II),Ni(II)或CD(II)的ROS87的折叠/展开行为。有趣的是,我们展示了本土金属离子的替代如何实现完整的不同折叠情景。我们发现了一种用于CD-ROS87的两种展开机制,其金属亲和力Kd与天然Zn-ROS87获得的CD-ROS87相当,以及具有显示更高KD值的CO-ROS87和Ni-ROS87的更复杂的机制。我们的数据概述了蛋白质 - 金属离子平衡和折叠机构之间的复杂互相关,提出这种相互作用作为特定金属蛋白的适当金属离子选择的关键因素。

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