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首页> 外文期刊>Applied Microbiology and Biotechnology >Development of an enhanced chromosomal expression system based on porin synthesis operon for halophile Halomonas sp.
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Development of an enhanced chromosomal expression system based on porin synthesis operon for halophile Halomonas sp.

机译:基于孔蛋白合成操纵子的嗜盐嗜盐单胞菌的增强型染色体表达系统的开发。

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Since halophile Halomonas spp. can grow contamination free in seawater under unsterile and continuous conditions, it holds great promise for industrial biotechnology to produce low-cost chemicals in an economic way. Yet, metabolic engineering methods are urgently needed for Halomonas spp. It is commonly known that chromosomal expression is more stable yet weaker than plasmid one is. To overcome this challenge, a novel chromosomal expression method was developed for halophile Halomonas TD01 and its derivatives based on a strongly expressed porin gene as a site for external gene integration. The gene of interest was inserted downstream the porin gene, forming an artificial operon porin-inserted gene. This chromosome expression system was proven functional by some examples: First, chromosomal expression of heterologous polyhydroxybutyrate (PHB) synthase gene phaC_(Re) from Ralstonia eutropha completely restored the PHB accumulation level in endogenous phaC knockout mutant of Halomonas TD01. The integrated phaC_(Re) was expressed at the highest level when inserted at the locus of porin compared with insertions in other chromosome locations. Second, an inducible expression system was constructed in phaC-deleted Halomonas TD01 by integrating the lac repressor gene (lacI) into the porin site in the host chromosome. The native porin promoter was inserted with the key 21 bp DNA of lac operator (lacO) sequence to become an inducible promoter encoded in a plasmid. This inducible system allowed on-off switch of gene expression in Halomonas TD strains. Thus, the stable and strong chromosomal expression method in Halomonas TD spp. was established.
机译:自嗜盐单胞菌属。可以在无菌和连续条件下在海水中生长无污染的污染物,它对工业生物技术以经济方式生产低成本化学品具有广阔的前景。然而,Haloomonas spp迫切需要代谢工程方法。众所周知,染色体表达比质粒表达更稳定但更弱。为了克服这一挑战,基于高度表达的孔蛋白基因作为外部基因整合的位点,开发了一种针对嗜盐菌Halomonas TD01及其衍生物的新型染色体表达方法。将感兴趣的基因插入孔蛋白基因的下游,形成人工操纵子插入孔蛋白的基因。通过一些实例证明了该染色体表达系统的功能:首先,来自富营养小球藻的异源多羟基丁酸(PHB)合酶基因phaC_(Re)的染色体表达完全恢复了Halomonas TD01内源性phaC敲除突变体中的PHB积累水平。与其他染色体位置的插入相比,整合的phaC_(Re)在孔位点插入时以最高水平表达。其次,通过将lac阻遏基因(lacI)整合入宿主染色体的孔蛋白位点,在phaC缺失的Halomonas TD01中构建了诱导型表达系统。天然孔蛋白启动子插入了lac操纵子(lacO)序列的关键21 bp DNA,成为质粒中编码的诱导型启动子。此诱导系统允许在Halomonas TD菌株中进行基因表达的开关。因此,在Halomonas TD spp中具有稳定而强大的染色体表达方法。建立了。

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