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首页> 外文期刊>Chemical Engineering Science >Utilizing a highly responsive gene, yhjX, in E. coli based production of 1,4-butanediol
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Utilizing a highly responsive gene, yhjX, in E. coli based production of 1,4-butanediol

机译:在基于大肠杆菌的1,4-丁二醇生产中利用高响应性基因yhjX

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摘要

The role of yhjX, a predicted major facilitator superfamily protein, was examined in context of E. coli response to 1,4-butanediol (1,4-BDO). E. coli DH1 and MG1655, two commonly used metabolic engineering hosts, were both sensitive to the presence of 1,4-BDO in the growth medium, but to different extents. The strains also showed differences in the transcriptional response of the yhjX gene that was highly induced in response to 1,4-BDO. yhjX deletion improved growth of the E. coli strains in the control defined medium but did not significantly impact 1,4-BDO sensitivity. Overexpression of yhjX using a plasmid-borne copy and lactose-inducible promoter also did not result in an improvement in 1,4-BDO tolerance. However, the large differential expression of yhjX in response to this diol provided the foundation to develop a biosensor for the detection of 1,4-BDO using a fluorescent gene under the control of the yhjX promoter. A basic P_(yhjX):GFP biosensor in E. coli DH1 allows the detection of 4-7% 1,4-BDO in the extracellular medium and provides a tool for high throughput engineering for improving 1,4-BDO production strains.
机译:在大肠杆菌对1,4-丁二醇(1,4-BDO)的反应中检查了yhjX(一种预测的主要促进子超家族蛋白)的作用。大肠杆菌DH1和MG1655这两种常用的代谢工程宿主对生长培养基中1,4-BDO的存在均敏感,但程度不同。该菌株还显示了yhjX基因转录反应的差异,该基因被高度诱导响应1,4-BDO。 yhjX缺失改善了在对照定义的培养基中大肠杆菌菌株的生长,但并未显着影响1,4-BDO敏感性。使用质粒携带的拷贝和乳糖诱导型启动子过量表达yhjX,也不会导致1,4-BDO耐受性的改善。然而,响应于该二醇的yhjX的大差异表达为开发一种生物传感器提供了基础,该传感器使用yhjX启动子控制的荧光基因来检测1,4-BDO。大肠杆菌DH1中的基本P_(yhjX):GFP生物传感器可检测细胞外培养基中的4-7%1,4-BDO,并提供了用于提高1,4-BDO生产菌株的高通量工程设计的工具。

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