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Flagellar region 3b supports strong expression of integrated DNA and the highest chromosomal integration efficiency of the Escherichia coli flagellar regions

机译:鞭毛区3b支持整合DNA的强表达和大肠杆菌鞭毛区的最高染色体整合效率

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摘要

The Gram-negative bacterium Escherichia coli is routinely used as the chassis for a variety of biotechnology and synthetic biology applications. Identification and analysis of reliable chromosomal integration and expression target loci is crucial for E. coli engineering. Chromosomal loci differ significantly in their ability to support integration and expression of the integrated genetic circuits. In this study, we investigate E. coli K12 MG1655 flagellar regions 2 and 3b. Integration of the genetic circuit into seven and nine highly conserved genes of the flagellar regions 2 (motA, motB, flhD, flhE, cheW, cheY and cheZ) and 3b (fliE, F, G, J, K, L, M, P, R), respectively, showed significant variation in their ability to support chromosomal integration and expression of the integrated genetic circuit. While not reducing the growth of the engineered strains, the integrations into all 16 target sites led to the loss of motility. In addition to high expression, the flagellar region 3b supports the highest efficiency of integration of all E. coli K12 MG1655 flagellar regions and is therefore potentially the most suitable for the integration of synthetic genetic circuits.
机译:革兰氏阴性大肠杆菌通常用作各种生物技术和合成生物学应用的底盘。鉴定和分析可靠的染色体整合和表达靶基因座对于大肠杆菌工程至关重要。染色体基因座在支持整合基因回路的整合和表达的能力方面存在显着差异。在这项研究中,我们调查大肠杆菌K12 MG1655鞭毛区2和3b。将遗传回路整合到鞭毛区域2(motA,motB,flhD,flhE,cheW,cheY和cheZ)和3b(fliE,F,G, J )的七个和九个高度保守的基因中, K L M P R ),它们支持染色体整合和整合遗传回路表达的能力的差异。在不降低工程菌株生长的同时,整合到所有16个靶位点导致了活力丧失。除高表达外,鞭毛区域3b还支持所有 E 的最高整合效率。大肠杆菌K12 MG1655鞭毛区,因此可能最适合整合合成遗传回路。

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