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锌(II)与镉(II)或汞(II)与 12 肽结合的竞争。

Competition of zinc(II) with cadmium(II) or mercury(II) in binding to a 12-mer peptide.

机构信息

Department of Inorganic and Analytical Chemistry, University of Szeged, Dóm tér 7, Szeged H-6720, Hungary.

出版信息

J Inorg Biochem. 2013 Sep;126:96-103. doi: 10.1016/j.jinorgbio.2013.05.019. Epub 2013 Jun 5.

Abstract

Speciation of the complexes of zinc(II) with a dodecapeptide (Ac-SCPGDQGSDCSI-NH2), inspired by the metal binding domain of MerR metalloregulatory proteins, have been studied by pH-potentiometric titrations, UV, SRCD (synchrotron radiation circular dichroism) and (1)H NMR experiments. (MerR is a family of transcriptional regulators the archetype of which is the Hg(2+)-responsive transcriptional repressor-activator MerR protein.) The aim of the ligand-design was to retain the advantageous metal binding features of MerR proteins in a model peptide for the efficient capture of toxic metal ions. The peptide binds zinc(II) via two deprotonated Cys-thiol groups and one of the Asp-carboxylates in the ZnL parent complex, possessing a remarkably high stability (logK=9.93). In spite of the relatively long peptide loop, bis-complexes are also formed with the metal ion under basic conditions. In a competition with cadmium(II) or mercury(II), zinc(II) cannot prevent the binding of toxic metal ions by the thiolate donor groups of the ligand. Around neutral pH one equivalent of mercury(II) was shown to fully replace zinc(II) from the ZnL species. Partial replacement of zinc(II) from the peptide by one equivalent of cadmium(II), relative to zinc(II) and the ligand, is also presumable, nevertheless, spectroscopic data may suggest the formation of mixed metal ion complexes, as well. Based on the obtained results the investigated dodecapeptide can be a promising candidate for capturing toxic metal ions in practical applications.

摘要

锌(II)与十二肽(Ac-SCPGDQGSDCSI-NH2)配合物的形态,受 MerR 金属调控蛋白金属结合域的启发,通过 pH 电位滴定、UV、SRCD(同步辐射圆二色性)和(1)H NMR 实验进行了研究。(MerR 是一类转录调控因子,其原型是 Hg(2+)-响应转录阻遏物-激活物 MerR 蛋白。)配体设计的目的是在模型肽中保留 MerR 蛋白的有利金属结合特性,从而有效地捕获有毒金属离子。该肽通过两个去质子化的 Cys-巯基和一个 ZnL 母体配合物中的 Asp-羧酸盐与锌(II)结合,具有非常高的稳定性(logK=9.93)。尽管肽环相对较长,但在碱性条件下也会与金属离子形成双配合物。在与镉(II)或汞(II)的竞争中,锌(II)不能阻止配体的硫醇供体基团与有毒金属离子的结合。在接近中性 pH 值时,已证明一个当量的汞(II)可以完全取代 ZnL 物种中的锌(II)。相对于锌(II)和配体,镉(II)也可以部分取代肽中的锌(II),尽管如此,光谱数据可能表明也形成了混合金属离子配合物。基于获得的结果,研究的十二肽可以成为实际应用中捕获有毒金属离子的有前途的候选物。

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