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Cucumber Metallothionein-Like 2 (CsMTL2) Exhibits Metal-Binding Properties

机译:黄瓜金属硫蛋白样2(CsMTL2)具有金属结合特性

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摘要

We identified a novel member of the metallothionein (MT) family, Cucumis sativus metallothionein-like 2 (CsMTL2), by screening a young cucumber fruit complementary DNA (cDNA) library. The CsMTL2 encodes a putative 77-amino acid Class II MT protein that contains two cysteine (Cys)-rich domains separated by a Cys-free spacer region. We found that CsMTL2 expression was regulated by metal stress and was specifically induced by Cd2+ treatment. We investigated the metal-binding characteristics of CsMTL2 and its possible role in the homeostasis and/or detoxification of metals by heterologous overexpression in Escherichia coli cells. Furthermore, we produced a deletion mutant form of the protein, CsMTL2m, that contained the two Cys-rich clusters but lacked the spacer region, in E. coli. We compared the metal-binding properties of CsMTL2 with those of CsMTL2m, the β domain of human metallothionein-like protein 1 (HsMTXb), and phytochelatin-like (PCL) heterologously expressed in E. coli using metal-binding assays. We found that E. coli cells expressing CsMTL2 accumulated the highest levels of Zn2+ and Cd2+ of the four transformed cell types, with levels being significantly higher than those of control cells containing empty vector. E. coli cells expressing CsMTL2 had a higher tolerance for cadmium than for zinc ions. These findings show that CsMTL2 improves metal tolerance when heterologously expressed in E. coli. Future studies should examine whether CsMTL2 improves metal tolerance in planta.
机译:我们通过筛选年轻的黄瓜果实互补DNA(cDNA)文库,鉴定了金属硫蛋白(MT)家族的一个新成员,黄瓜黄瓜金属硫蛋白样2(CsMTL2)。 CsMTL2编码一个推测的77个氨基酸的II类MT蛋白,该蛋白包含两个富含半胱氨酸(Cys)的域,这些域被一个无Cys的间隔区隔开。我们发现CsMTL2的表达受金属胁迫的调控,并被Cd 2 + 处理特异性诱导。我们调查了CsMTL2的金属结合特性及其在大肠杆菌细胞中通过异源过表达金属的稳态和/或金属解毒的可能作用。此外,我们在大肠杆菌中产生了一种蛋白质CsMTL2m的缺失突变体形式,它包含两个富含Cys的簇,但缺少间隔区。我们使用金属结合分析法比较了CsMTL2与CsMTL2m的金属结合特性,人金属硫蛋白样蛋白1(HsMTXb)的β结构域和在大肠杆菌中异源表达的植物螯合素样(PCL)的金属结合特性。我们发现,表达CsMTL2的大肠杆菌细胞在四种转化细胞类型中积累了最高水平的Zn 2 + 和Cd 2 + ,其水平明显高于CsMTL2。控制单元包含空载体。表达CsMTL2的大肠杆菌细胞对镉的耐受性高于对锌离子的耐受性。这些发现表明,当在大肠杆菌中异源表达时,CsMTL2提高了金属耐受性。未来的研究应检查CsMTL2是否能提高植物的金属耐受性。

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