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首页> 外文期刊>Biotechnology Progress >Localization Effect on the Metal Biosorption Capability of Recombinant Mammalian and Fish Metallothioneins in Escherichia coli
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Localization Effect on the Metal Biosorption Capability of Recombinant Mammalian and Fish Metallothioneins in Escherichia coli

机译:本地化对重组哺乳动物和鱼类金属硫蛋白在大肠杆菌中的金属生物吸附能力的影响

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In this study,we examined the expression of mammalian and fish metallothioneins (MTs) in Escherichia coli as a strategy to enhance metal biosorption efficiency of bacterial biosorbents for lead (Pb),copper (Cu),cadmium (Cd),and zinc (Zn).In addition,MT proteins were expressed in either the cytoplasmic or periplasmic compartment of host cells to explore the localization effect on metal biosorption.The results showed that MT expression led to a significant increase (5-210%) in overall biosorption efficiency (eta_(ads)),especially for biosorption of Cd.The MT-driven improvement in metal biosorption relied more on the increase in the biosorption rates (r_2,a kinetic property) than on the equilibrium biosorption capacities (q_(max),a thermodynamic property),despite a 10-45% and 30-80% increase in q_(max) of Cd and Zn,respectively.Periplasmic expression of MTs appeared to be more effective in facilitating the metal-binding ability than the cytoplasmlic MT expression.Notably,disparity of the impacts on biosorption ability was observed for the origin of MT proteins,as human MT (MT1A) was the most effective biosorption stimulator compared to MTs originating from mouse (MT1) and fish (OmMT).Moreover,the overall biosorption efficiency (eta_(ads)) of the MT-expressing recombinant biosorbents was found to be adsorbate-dependent:the eta_(ads) values decreased in the order of Cd > Cu > Zn > Pb.
机译:在这项研究中,我们检查了哺乳动物和鱼类金属硫蛋白(MTs)在大肠杆菌中的表达,以此作为提高细菌生物吸附剂对铅(Pb),铜(Cu),镉(Cd)和锌(Zn)的金属生物吸附效率的策略。 )。此外,MT蛋白在宿主细胞的细胞质或周质区表达,以探讨其对金属生物吸附的定位作用。结果表明MT表达导致整体生物吸附效率显着提高(5-210%)( eta_(ads)),特别是对Cd的生物吸附。MT驱动的金属生物吸附的改善更多地取决于生物吸附速率(r_2,动力学性质)的增加,而不是平衡生物吸附容量(q_(max),热力学)。性质),尽管Cd和Zn的q_(max)分别增加了10-45%和30-80%.MT的胞质表达似乎在促进金属结合能力方面比胞质的MT表达更有效。 ,差距观察到MT蛋白起源对生物吸附能力的影响,因为与来自小鼠(MT1)和鱼类(OmMT)的MT相比,人类MT(MT1A)是最有效的生物吸附刺激剂。此外,总体生物吸附效率(eta_(ads ))的MT表达重组生物吸附剂被发现与吸附物有关:eta_(ads)值按Cd> Cu> Zn> Pb的顺序降低。

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