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基于具有金属结合功能的热响应型弹性蛋白共聚物的镉检测。

Cadmium detection by a thermally responsive elastin copolymer with metal-binding functionality.

机构信息

Department of Chemical Engineering, Hongik University, Mapo-gu, Seoul 121-791, Republic of Korea.

出版信息

Enzyme Microb Technol. 2013 Aug 15;53(3):189-93. doi: 10.1016/j.enzmictec.2013.03.023. Epub 2013 Apr 8.

Abstract

Heavy metals are of great concern to environmental safety because of their adverse effects on the environment and human health, even at very low levels. In particular, cadmium and several cadmium-containing compounds are carcinogens and induce many types of cancer. Biological extracts of cadmium have been given greater attention recently because they are considered to be environmentally benign and economically acceptable. Among promising candidates, one emerging technology is the use of tunable, metal-binding biopolymers based on elastin-like polypeptides (ELPs). An ELP consists of the repeating pentapeptide of specific amino acids, Val-Pro-Gly-Xaa-Gly (where the "guest residue" Xaa is any amino except proline) that undergoes a reversible phase transition at a specific temperature (transition temperature, Tt). However, the ELP itself is relatively non-selective. A biopolymer with metal-binding domains that have stronger affinity, capacity, and selectivity would have distinct advantages. We investigated the use of a new generation of ELP biopolymers, EC18-ELP containing synthetic phytochelatin (EC), which is a metal-binding protein with a repetitive motif (Glu-Cys)nGly, as the metal-binding domain. In this study, an EC18-ELP fusion protein was expressed in Escherichia coli and the metal binding ability of EC to cadmium was examined quantitatively. In addition, transition temperature variation was analyzed when the fusion protein bound to cadmium.

摘要

重金属对环境安全具有重要意义,因为它们即使在非常低的水平下也会对环境和人类健康产生不利影响。特别是镉和几种含镉化合物是致癌物质,会诱发多种癌症。由于被认为具有环境友好和经济可接受性,最近人们对生物提取的镉给予了更多的关注。在有前途的候选物中,一种新兴技术是使用基于弹性蛋白样多肽 (ELP) 的可调谐、金属结合生物聚合物。ELP 由特定氨基酸的重复五肽组成,Val-Pro-Gly-Xaa-Gly(其中“客残基”Xaa 是脯氨酸以外的任何氨基酸),在特定温度下经历可逆的相转变(转变温度,Tt)。然而,ELP 本身的选择性相对较低。具有更强亲和力、容量和选择性的金属结合结构域的生物聚合物将具有明显的优势。我们研究了使用新一代 ELP 生物聚合物 EC18-ELP 来结合金属,其中 EC 是一种含有重复基序 (Glu-Cys)nGly 的金属结合蛋白。在这项研究中,在大肠杆菌中表达了 EC18-ELP 融合蛋白,并定量研究了 EC 与镉的金属结合能力。此外,还分析了当融合蛋白与镉结合时转变温度的变化。

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