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首页> 外文期刊>Metabolic engineering >The Acinetobacter sp. chnB promoter together with its cognate positive regulator ChnR is an attractive new candidate for metabolic engineering applications in bacteria.
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The Acinetobacter sp. chnB promoter together with its cognate positive regulator ChnR is an attractive new candidate for metabolic engineering applications in bacteria.

机译:不动杆菌属。 chnB启动子及其同源正调控子ChnR是细菌代谢工程应用中有吸引力的新候选物。

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摘要

Over the last 10 years there has been an extremely fast development in the global characterization of bacteria at the genome, transcriptome, proteome and metabolome levels. To further explore and apply these complex data sets there is now a need for new biological tools that can be used to test or verify hypotheses generated on the basis of all the new information. Here, we report the integration of an expression cassette based on the Acinetobacter sp. chnB promoter and its cognate positive regulator chnR gene into a replicon derived from the broad-host-range plasmid RK2. Cyclohexanone was found to be the most efficient inducer of this system in Escherichia coli, using firefly luciferase as a reporter. To explore the potential of the system in another species, we show that the system can be used in combination with another similar expression cassette (Pm/xylS) to control the monomer composition of the industrially widely used exopolysaccharide alginate, produced by Pseudomonas fluorescens.
机译:在过去的十年中,细菌在基因组,转录组,蛋白质组和代谢组水平上的全球表征发展非常迅速。为了进一步探索和应用这些复杂的数据集,现在需要可以用于测试或验证基于所有新信息生成的假设的新生物学工具。在这里,我们报告了基于不动杆菌属的表达盒的整合。 chnB启动子及其相关的正调控子chnR基因进入一个复制子,该复制子来自宽宿主范围质粒RK2。使用萤火虫荧光素酶作为报告基因,发现环己酮是该系统在大肠杆菌中最有效的诱导剂。为了探索该系统在另一个物种中的潜力,我们表明该系统可以与另一个相似的表达盒(Pm / xylS)结合使用,以控制由荧光假单胞菌生产的工业上广泛使用的胞外藻酸盐藻酸盐的单体组成。

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