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Short-Chain Chromate Ion Transporter Proteins from Bacillus subtilis Confer Chromate Resistance in Escherichia coli▿

机译:枯草芽孢杆菌的短链铬酸根离子转运蛋白赋予大肠杆菌铬酸根抗性Resistance

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摘要

Tandem paired genes encoding putative short-chain monodomain protein members of the chromate ion transporter (CHR) superfamily (ywrB and ywrA) were cloned from genomic DNA of Bacillus subtilis strain 168. The transcription of the paired genes, renamed chr3N and chr3C, respectively, was shown to occur via a bicistronic mRNA generated from a promoter upstream of the chr3N gene. The chr3N and chr3C genes conferred chromate resistance when expressed in Escherichia coli strain W3110. The cloned chr3N gene alone did not confer chromate resistance on E. coli, suggesting that both chr3N and chr3C genes are required for function. E. coli cells expressing paired chr3N and chr3C genes demonstrated diminished uptake of chromate compared to that by a vector-only control strain. These results suggest that short-chain CHR proteins form heterodimer transporters which efflux chromate ions from the cytoplasm.
机译:从枯草芽孢杆菌菌株168的基因组DNA中克隆了编码铬酸盐离子转运蛋白(CHR)超家族的假定短链单域蛋白成员的串联配对基因。该配对基因的转录分别命名为chr3N和chr3C。已证明其通过从hr3N基因上游的启动子产生的双顺反子mRNA发生。当在大肠杆菌菌株W3110中表达时,chr3N和chr3C基因赋予了铬酸盐抗性。单独克隆的chr3N基因不会赋予大肠杆菌铬酸盐抗性,表明chr3N和chr3C基因都是功能所必需的。与仅使用载体的菌株相比,表达成对的chr3N和chr3C基因的大肠杆菌细胞减少了铬酸盐的吸收。这些结果表明,短链CHR蛋白形成异二聚体转运蛋白,其从细胞质中排出铬酸根离子。

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