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Bioaccumulation of Copper Ions by Escherichia coli Expressing Vanabin Genes from the Vanadium-Rich Ascidian Ascidia sydneiensis samea

机译:大肠杆菌表达富钒海鞘亚热带拟南芥中钒基因的铜离子的生物富集

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摘要

The genes encoding two vanadium-binding proteins, vanabin1 and vanabin2, from a vanadium-rich ascidian, Ascidia sydneiensis samea, were recently identified and cloned (T. Ueki, T. Adachi, S. Kawano, M. Aoshima, N. Yamaguchi, K. Kanamori, and H. Michibata, Biochim. Biophys. Acta 1626:43-50, 2003). The vanabins were found to bind vanadium(IV), and an excess of copper(II) ions inhibited the binding of vanadium(IV) to the vanabins in vitro. In this study, we constructed Escherichia coli strains that expressed vanabin1 or vanabin2 fused to maltose-binding protein (MBP) in the periplasmic space. We found that both strains accumulated about twenty times more copper(II) ions than the control BL21 strain, while no significant accumulation of vanadium was observed. The strains expressing either MBP-vanabin1 or MBP-vanabin2 absorbed approximately 70% of the copper ions in the medium to which 10 μM copper (II) ions were initially added. The MBP-vanabin1 and MBP-vanabin2 protein expressed in the periplasm bound to copper ions at a copper:protein molar ratio of 8:1 and 5:1, respectively, but MBP did not bind to copper ions. These data showed that the metal-binding proteins vanabin1 and vanabin2 bound copper ions directly and enhanced the bioaccumulation of copper ions by E. coli.
机译:最近鉴定并克隆了编码来自富钒海鞘亚胞胞藻(Acidia sydneiensis samea)的两个钒结合蛋白vanabin1和vanabin2的基因(T.Ueki,T.Adachi,S.Kawano,M.Aoshima,N.Yamaguchi, K.Kanamori和H.Michibata,Biochim.Biophys.Acta 1626:43-50,2003)。发现钒与钒(IV)结合,并且过量的铜(II)离子在体外抑制钒(IV)与钒的结合。在这项研究中,我们构建了大肠杆菌菌株,该菌株在周质空间表达与麦芽糖结合蛋白(MBP)融合的vanabin1或vanabin2。我们发现这两种菌株积累的铜(II)离子比对照BL21菌株多约二十倍,而没有观察到钒的显着积累。表达MBP-vanabin1或MBP-vanabin2的菌株在最初添加10μM铜(II)的培养基中吸收了约70%的铜离子。在周质中表达的MBP-vanabin1和MBP-vanabin2蛋白分别以8:1和5:1的铜:蛋白摩尔比与铜离子结合,但MBP不与铜离子结合。这些数据表明金属结合蛋白vanabin1和vanabin2直接结合铜离子,并增强了大肠杆菌对铜离子的生物蓄积。

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