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首页> 外文期刊>Applied and Environmental Microbiology >Effect of gene amplification on mercuric ion reduction activity of Escherichia coli.
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Effect of gene amplification on mercuric ion reduction activity of Escherichia coli.

机译:基因扩增对大肠杆菌汞离子还原活性的影响。

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摘要

The mercury resistance (mer) operon of plasmid R100 was cloned onto various plasmid vectors to study the effect of mer gene amplification on the rate of Hg2+ reduction by Escherichia coli cells. The plasmids were maintained at copy numbers ranging from 3 to 140 copies per cell. The overall Hg2+ reduction rate of intact cells increased only 2.4-fold for the 47-fold gene amplification. In contrast, the rate of the cytoplasmic reduction reaction, measured in permeabilized cells, increased linearly with increasing gene copy number, resulting in a 6.8-fold overall amplification. RNA hybridizations indicated that mRNA of the cytoplasmic mercuric reductase (merA gene product) increased 11-fold with the 47-fold gene amplification, while mRNA of the transport protein (merT gene product) increased only 5.4-fold. Radiolabeled proteins produced in maxicells were used to correlate the expression levels of the mer polypeptides with the measured reduction rates. The results indicated that, with increasing gene copy number, there was an approximately 5-fold increase in the merA gene product compared with a 2.5-fold increase in the merT gene product. These data demonstrate a parallel increase of Hg2+ reduction activity and transport protein expression in intact cells with plasmids with different copy numbers. In contrast, the expression level of the mercuric reductase gene underwent higher amplification than that of the transport genes at both the RNA and protein levels as plasmid copy number increased.
机译:将质粒R100的耐汞(mer)操纵子克隆到各种质粒载体上,以研究mer基因扩增对大肠杆菌细胞Hg2 +还原速率的影响。将质粒维持在每个细胞3至140个拷贝的拷贝数范围内。对于47倍的基因扩增,完整细胞的总体Hg2 +降低速率仅增加了2.4倍。相反,在透化细胞中测得的胞质还原反应速率随基因拷贝数的增加而线性增加,从而导致整体扩增达到6.8倍。 RNA杂交表明,胞质汞还原酶(merA基因产物)的mRNA随47倍基因扩增而增加11倍,而转运蛋白(merT基因产物)的mRNA仅增加5.4倍。用maxicells中产生的放射性标记的蛋白质将mer多肽的表达水平与测得的还原率相关。结果表明,随着基因拷贝数的增加,merA基因产物的增加约5倍,而merT基因产物的增加2.5倍。这些数据证明了完整细胞中具有不同拷贝数的质粒的Hg2 +还原活性和转运蛋白表达平行增加。相反,随着质粒拷贝数的增加,汞还原酶基因的表达水平在RNA和蛋白质水平上都比转运基因的表达水平更高。

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