Department of Environmental, Biological and Pharmaceutical Science and Technology , University of Campania "L. Vanvitelli" , via Vivaldi 43 , 81100 Caserta , Italy.
Interuniversity Research Centre on Bioactive Peptides , University of Naples "Federico II" , Via Mezzocannone 16 , 80134 , Naples , Italy.
Inorg Chem. 2019 Jan 22;58(2):1067-1080. doi: 10.1021/acs.inorgchem.8b02201. Epub 2018 Dec 31.
Zinc ion binding is a principal event in the achievement of the correct fold in classical zinc finger domains since the motif is largely unfolded in the absence of metal. In the case of a prokaryotic zinc finger, the larger βββαα domain contributes to the folding mechanism with a larger hydrophobic core. For these reasons, following the great amount of attention devoted to unveiling the effect of xenobiotic metal ion replacement in zinc fingers and in zinc-containing proteins in general, the prokaryotic zinc finger domain appears to be an interesting model for studying metal ion interaction with metalloproteins. Here, we explore the binding of Ni(II), Hg(II), and Pb(II) to Ros87, the DNA binding domain of the prokaryotic zinc finger protein Ros. We measured Ros87-metal ion dissociation constants and monitored the effects on the structure and function of the domain. Interestingly, we found that the protein folds in the presence of Ni(II) with important structural perturbations, while in the presence of Pb(II) and Hg(II) it does not appear to be significantly folded. Accordingly, an overall strong reduction in the DNA binding capability is observed for all of the examined proteins. Our data integrate and complement the information collected in the past few years concerning the functional and structural effects of metal ion substitution in classical zinc fingers in order to contribute to a better comprehension of the toxicity of these metals in biological systems.
锌离子结合是经典锌指结构域实现正确折叠的主要事件,因为在没有金属的情况下,基序基本上是未折叠的。在原核锌指的情况下,较大的βββαα结构域通过较大的疏水性核心为折叠机制做出贡献。由于这些原因,在大量关注揭示外源金属离子取代锌指和一般含锌蛋白的效果之后,原核锌指结构域似乎是研究金属离子与金属蛋白相互作用的有趣模型。在这里,我们研究了 Ni(II)、Hg(II)和 Pb(II)与原核锌指蛋白 Ros 的 DNA 结合域 Ros87 的结合。我们测量了 Ros87-金属离子离解常数,并监测了对结构和功能的影响域。有趣的是,我们发现该蛋白在 Ni(II)存在下折叠,结构发生重要变化,而在 Pb(II)和 Hg(II)存在下似乎没有明显折叠。因此,所有被检查的蛋白质的 DNA 结合能力都明显降低。我们的数据整合和补充了过去几年收集的有关经典锌指中金属离子取代的功能和结构影响的信息,有助于更好地理解这些金属在生物系统中的毒性。