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A unique metallothionein-engineered in Escherichia coli for biosorption of lead, zinc, and cadmium; absorption or adsorption?

机译:一种独特的金属硫蛋白,在大肠杆菌中设计用于铅,锌和镉的生物吸附; 吸收或吸附?

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The present study introduced and evaluated modification of E. coli BL21 (DE3) to improve its biosorption capacity by the transfer of the Corynebacterium glutamicum metallothionein gene (C.gMT). The C.gMT sequence was extracted and cloned in pET28a vector and the ligation product was transferred into E. coli BL21 (DE3). It has been also submitted to the GenBank database (accession number KJ638906.1). The performance of the recombinant bacterium was evaluated at different metal ions concentrations, contact times, pH values, and co-ions. The results show that recombinant BL21 (DE3) was able to uptake Pb+2, and Zn+2 at greater percentages than could BL21 (DE3). The optimum pH for the removal of each heavy metal was different. As contact time increased, Pb+2 and Zn+2 biosorption by the recombinant bacterium increased, while the biosorption of Cd+2 remained at a nearly steady rate for contact times of more than 1 h. Increasing the concentrations of Pb+2 and Zn+2 in solution increased biosorption of these metals by the recombinant BL21 (DE3) over that of Cd+2. It could be hypothesized that Pb+2 and Zn+2 removal by C.gMT-engineered BL21 (DE3) occurred mainly via intracellular biosorption (absorption) and that Cd+2 was mainly taken up through cell surface biosorption (adsorption).
机译:本研究介绍和评估了大肠杆菌BL21(DE3)的改性,通过转移棒状杆菌金属金属硫蛋白基因(C.GMT)来改善其生物吸收能力。提取C.GMT序列并在PET28A载体中克隆,将连接产物转移到大肠杆菌BL21(DE3)中。它还已提交给Genbank数据库(登录号kJ638906.1)。在不同的金属离子浓度,接触时间,pH值和共离子中评价重组细菌的性能。结果表明,重组BL21(DE3)能够以比BL21(DE3)更大的百分比以更大的百分比吸收PB + 2。除去每个重金属的最佳pH是不同的。随着接触时间增加,通过重组细菌的Pb + 2和Zn + 2生物吸收增加,而CD + 2的生物吸收以超过1小时的接触时间留下几乎稳定的速率。在溶液中增加Pb + 2和Zn + 2的浓度通过重组BL21(DE3)在CD + 2的重组BL21(DE3)增加了这些金属的生物吸附。可以假设C.GMT工程化BL21(DE3)的PB + 2和Zn + 2除去主要通过细胞内生物吸附(吸收)而发生,并且该CD + 2主要通过细胞表面生物吸附(吸附)。

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