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Recombinant expression and purification of a functional bacterial metallo-chaperone PbrD-fusion construct as a potential biosorbent for Pb(II)

机译:功能性细菌金属伴侣伴栓塞件PBRD融合构建体作为Pb(II)的潜在生物吸附剂的重组表达和纯化

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摘要

PbrD is a lead (II) binding protein encoded by the pbr lead resistance operon found exclusively in Cupriavidus metallidurans CH34. Its ability to sequester Pb(II) shows potential for it to be developed as a biosorbent for Pb in the bioremediation of contaminated wastewaters. In this study the pbrD gene from C. metallidurans CH34 was transformed and overexpressed in Escherichia coli BL21 (DE3) using the pET32 Xa/Lic vector. Optimal expression of recombinant (r)PbrD (similar to 50 kDa) was achieved post-induction with IPTG within inclusion bodies (IBs). Inclusion bodies were solubilised by denaturation and purified by Ni-NTA affinity chromatography. The purified denatured protein containing the N-terminal Trx center dot Tag (TM), His center dot Tag (R) and S (R) Tag (TM) was refolded in vitro via dialysis to a biologically functional form. Circular dichroism spectra of refolded rPbrD-fusion protein indicated a high degree of turns, beta-sheets and 3(10) helices content and tryptophan fluorescence showed a structural conformational change in the presence of Pb(II). Refolded rPbrD-fusion protein bound 99.7% of Pb(II) when mixed with lead nitrate in ten-fold increasing concentrations. Adsorption isotherms including Langmuir, Freundlich, Temkin and Dubinin-Radushkevich models were applied to determine the biosorption mechanism. A biologically functional rPbrD-fusion protein has potential application in the development of a biosorbent for remediation of Pb(II) from wastewater.
机译:PBRD是由PBR铅耐矿床编码的铅(II)结合蛋白,其专门发现在Cupriavidus Metallidurans CH34中。它的螯合Pb(II)的能力显示出它在污染的废水的生物修复中被开发为PB的生物吸附剂。在该研究中,使用PET32 XA / LIC载体,在大肠杆菌BL21(DE3)中转化和过表达来自C.金属呋喃脲CH34的PBRD基因。通过IPTG在包涵体(IBS)内实现重组(R)PBRD(类似于50kDa)的最佳表达。通过变性溶解包涵体并通过Ni-NTA亲和层析纯化。含有N-末端TRX中心点标签(TM)的纯化的变性蛋白质,其中心点标签(R)和S(R)标签(TM)通过透析以生物功能形式重折叠。重折叠的RPBRD融合蛋白的圆形二色性光谱表明高度的匝数,β-薄片和3(10)型螺旋含量和色氨酸荧光在Pb(II)的存在下显示结构构象变化。在10倍的浓度下与硝酸铅混合时,重折叠的RPBRD融合蛋白结合99.7%的Pb(II)。应用包括Langmuir,Freundlich,Temkin和Dubinin-Radushkevich模型的吸附等温线,用于确定生物吸附机制。生物功能性RPBRD融合蛋白具有潜在的应用,在生物吸附剂中施加生物吸附剂,用于从废水中修复PB(II)。

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