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采用新型金属离子污染物清除技术分离金属结合蛋白,并通过金属离子探针在聚丙烯酰胺凝胶电泳中检测蛋白质结合铜:人血清中铜的分布。

Separation of metalloproteins using a novel metal ion contaminant sweeping technique and detection of protein-bound copper by a metal ion probe in polyacrylamide gel electrophoresis: distribution of copper in human serum.

机构信息

Graduate School of Science and Engineering, Saitama University, 255 Shimo-Okubo, Sakura-ku, Saitama 338-8570, Japan.

出版信息

Analyst. 2013 Oct 21;138(20):6097-105. doi: 10.1039/c3an01107k. Epub 2013 Aug 20.

Abstract

A polyacrylamide gel electrophoresis (PAGE)-based method has been developed, consisting of two types of gel electrophoresis, to obtain an accurate distribution of protein-bound metal ions in biological samples. First, proteins are separated by PAGE without the uptake of contaminant metal ions in the separation field and dissociation of metal ions from the proteins. This is followed by another PAGE for the separation and detection of protein-bound metal ions in small volume samples with high sensitivity in the ppt range using a fluorescent metal probe. The former is a new technique using blue-native (BN) PAGE to electrophoretically sweep all metal contaminants by employing two kinds of chelating agents. These agents form complexes with contaminants in the gel and the separation buffer solution, which migrate towards opposite pole directions, thus lowering the contaminants to below the ppt level during separation. This is termed "Metal Ion Contaminant Sweeping BN-PAGE (MICS-BN-PAGE)". After the separation of proteins under these first metal-free conditions, the metal ions in the gel fractions are eluted, followed by derivatization of copper ions into the metal probe complexes to be separated and determined by fluorescence detection in the second PAGE. In this PAGE-based method, the copper ions bound to ceruloplasmin and superoxide dismutase were quantitatively determined, in addition to the exchangeable albumin-bound copper ions. This system successfully provided distribution maps of protein-copper in human serum. The precise distribution of copper in human serum was investigated, and found to be different from that which is widely accepted.

摘要

已开发出一种基于聚丙烯酰胺凝胶电泳(PAGE)的方法,包括两种类型的凝胶电泳,以获得生物样品中结合蛋白的金属离子的准确分布。首先,通过 PAGE 分离蛋白质,而不会在分离场中吸收污染物金属离子,也不会使金属离子从蛋白质中解离。然后,通过另一种 PAGE,在 ppt 范围内使用荧光金属探针以高灵敏度分离和检测小体积样品中的蛋白结合金属离子。前者是一种使用蓝色非天然(BN)PAGE 的新技术,通过使用两种螯合剂电泳扫除所有金属污染物。这些试剂与凝胶和分离缓冲液中的污染物形成复合物,向相反的极向迁移,从而在分离过程中将污染物降低至 ppt 以下水平。这称为“金属离子污染物清扫 BN-PAGE(MICS-BN-PAGE)”。在这些无金属的第一条件下分离蛋白质后,将凝胶部分中的金属离子洗脱,然后将铜离子衍生为金属探针复合物,在第二 PAGE 中通过荧光检测进行分离和定量。在这种基于 PAGE 的方法中,除了可交换的白蛋白结合铜离子之外,还定量测定了铜蓝蛋白和超氧化物歧化酶结合的铜离子。该系统成功提供了人血清中蛋白-铜的分布图谱。还研究了人血清中铜的精确分布,发现与广泛接受的分布不同。

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