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首页> 外文期刊>Applied Microbiology and Biotechnology >Pho regulon promoter-mediated transcription of the key pathway gene aroG ~(Fbr) improves the performance of an l-phenylalanine-producing Escherichia coli strain
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Pho regulon promoter-mediated transcription of the key pathway gene aroG ~(Fbr) improves the performance of an l-phenylalanine-producing Escherichia coli strain

机译:Pho regulon启动子介导的关键途径基因aroG〜(Fbr)的转录提高了产生l-苯丙氨酸的大肠杆菌菌株的性能

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摘要

DAHP synthase (EC 4.1.2.15) is one of the key enzymes involved in aromatic amino acid biosynthesis in Escherichia coli. An approximately twofold decrease in DAHP synthase activity level was detected in the late growth phase of the l-phenylalanine (Phe)-producing E. coli strain, in which this enzyme encoded by aroG4 is resistant to feedback inhibition. An additional copy of aroG4 that is controlled by promoters of E. coli phoA or pstS genes was integrated into the chromosome of the Phe producer. The choice of promoter was based on the detected activation of the Pho regulon that occurs in response to the depletion of soluble inorganic orthophosphate (P_i) in the medium, provided that the optical density of the Phe-producing culture did not exceed 70% of its maximum value. Pho-mediated aroG4 transcription increased both the accumulation of Phe and the level of DAHP synthase activity in the late stage of batch cultivation on glucose in P_i-limited conditions. Disruption of rpoS led to the improved performance of a P _(phoA) -aroG4 strain. The pstS promoter that is recognized by the σ~(70)/σ~S- associated core RNA polymerase resulted in the stable maintenance of DAHP synthase activity during long-drawn fed-batch cultivation of the RpoS ~+ strain carrying the P _(pstS) -aroG4.
机译:DAHP合酶(EC 4.1.2.15)是大肠杆菌中芳香族氨基酸生物合成中涉及的关键酶之一。在生产1-苯丙氨酸(Phe)的大肠杆菌菌株的生长后期,检测到DAHP合酶活性水平降低了大约两倍,其中由aroG4编码的这种酶对反馈抑制具有抵抗力。受大肠杆菌phoA或pstS基因启动子控制的aroG4的另一个副本已整合到Phe生产者的染色体中。启动子的选择基于检测到的Pho regulon的激活,该激活是响应培养基中可溶性无机正磷酸盐(P_i)的耗尽而发生的,前提是产生Phe的培养物的光密度不超过其Pho的70%最大值。在P_i有限的条件下,葡萄糖分批培养的后期,Pho介导的aroG4转录增加了Phe的积累和DAHP合酶活性的水平。 rpoS的中断导致P_(phoA)-aroG4菌株的性能提高。被σ〜(70)/σ〜S相关核心RNA聚合酶识别的pstS启动子导致了在携带P _的RpoS〜+菌株的长期分批分批培养过程中DAHP合酶活性的稳定维持。 pstS)-aroG4。

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