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镍(II)促进锌指蛋白的特异性水解。

Nickel(ii)-promoted specific hydrolysis of zinc finger proteins.

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5a; 02-106, Warsaw, Poland.

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

出版信息

Metallomics. 2018 Aug 15;10(8):1089-1098. doi: 10.1039/c8mt00098k.

Abstract

In this work we demonstrate that the previously described reaction of sequence specific Ni(ii)-dependent hydrolytic peptide bond cleavage can be performed in complex metalloprotein molecules, such as the Cys2His2 zinc finger proteins. The cleavage within a zinc finger unit possessing a (Ser/Thr)-X-His sequence is not hindered by the presence of the Zn(ii) ions. It results in loss of the Zn(ii) ion, oxidation of the SH groups and thus, in a collapse of the functional structure. We show that such natural Ni(ii)-cleavage sites in zinc finger domains can be edited out without compromising the DNA binding specificity. Inserting a Ni(ii)-susceptible sequence between the edited zinc finger and an affinity tag allows for removal of the latter sequence by Ni(ii) ions after the protein purification. We have shown that this reaction can be executed even when a metal ion binding N-terminal His-tag is present. The cleavage product maintains the native zinc finger structure involving Zn(ii) ions. Mass spectra revealed that a Ni(ii) ion remains coordinated to the hydrolyzed protein product through the N-terminal (Ser/Thr)-X-His tripeptide segment. The fact that the Ni(ii)-dependent protein hydrolysis is influenced by the Ni(ii) concentration, pH and temperature of the reaction provides a platform for novel regulated DNA effector design.

摘要

在这项工作中,我们证明了先前描述的序列特异性 Ni(ii)依赖性水解肽键断裂反应可以在复杂的金属蛋白分子中进行,如 Cys2His2 锌指蛋白。在具有(Ser/Thr)-X-His 序列的锌指单元内的断裂不受 Zn(ii)离子的存在的阻碍。它导致 Zn(ii)离子的丢失、SH 基团的氧化,从而导致功能结构的崩溃。我们表明,在不损害 DNA 结合特异性的情况下,可以编辑掉锌指结构域中的这种天然 Ni(ii)切割位点。在编辑后的锌指和亲和标签之间插入一个 Ni(ii)敏感序列,允许在蛋白质纯化后通过 Ni(ii)离子去除后者的序列。我们已经表明,即使存在金属离子结合的 N 端 His 标签,也可以执行该反应。断裂产物保持涉及 Zn(ii)离子的天然锌指结构。质谱显示,Ni(ii)离子通过 N 端(Ser/Thr)-X-His 三肽段与水解蛋白产物配位。Ni(ii)依赖性蛋白水解受反应的 Ni(ii)浓度、pH 和温度影响的事实为新型调控 DNA 效应物设计提供了平台。

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