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首页> 外文期刊>Applied and Environmental Microbiology >New approach to tryptophan production by Escherichia coli: genetic manipulation of composite plasmids in vitro.
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New approach to tryptophan production by Escherichia coli: genetic manipulation of composite plasmids in vitro.

机译:大肠杆菌大肠杆菌生产的新方法:体外复合质粒的遗传操纵。

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For the purpose of studying the production of L-tryptophan by Escherichia coli, the deletion mutants of the trp operon (trpAE1) were transformed with mutant plasmids carrying the trp operon whose anthranilate synthase and phosphoribosyl anthranilate transferase (anthranilate aggregate), respectively, had been desensitized to tryptophan inhibition. In addition to release of the anthranilate aggregate from the feedback inhibition required for plasmids such as pSC101 trp.I15, the properties of trp repression (trpR) and tryptophanase deficiency (tnaA) were both indispensable for host strains such as strain Tna (trpAE1 trpR tnaA). The gene dosage effects on tryptophan synthase activities and on production of tryptophan were assessed. A moderate plasmid copy number, approximately five per chromosome, was optimal for tryptophan production. Similarly, an appropriate release of the anthranilate aggregate from feedback inhibition was also a necessary step to ward off the metabolic anomaly. If the mutant plasmid pSC101 trp-I15 was further mutagenized (pSC101 trp.I15.14) and then transferred to Tna cells, an effective enhancement of tryptophan production was achieved. Although further improvement of the host-plasmid system is needed before commercial production of tryptophan can be realized by this means, a promising step toward this goal has been established.
机译:为了研究通过大肠杆菌的L-色氨酸生产,TRP操纵子(TRPAE1)的缺失突变体与携带TRP操纵子的突变质粒分别转化,其分别具有其抗旱性合酶和磷酰基氨基酸酯转移酶(苯胺酸酯聚集体)的转移酶(曾经脱硫至色氨酸抑制。除了从质粒所需的反馈抑制释放诸如PSC101 TRP.I15所需的反馈抑制之外,TRP抑制(TRPR)和色氨酸酶缺乏(TNAA)的性质对于宿主菌株(如菌株TNA)(TRPAE1 TRPRNA)是必不可少的)。评估了对色氨酸合酶活动和色氨酸生产的基因剂量影响。色氨酸生产的适度质粒拷贝数约为每种染色体。类似地,来自反馈抑制的适当释放的邻苯酸酯聚集体也是抵御代谢异常的必要步骤。如果突变质粒pSC101 TRP-I15进一步诱变(PSC101 TRP.I15.14)然后转移到TNA细胞,则实现了对色氨酸产生的有效增强。尽管在通过这种方式实现了色氨酸的商业生产之前需要进行宿主质粒系统的进一步改善,但是已经建立了对此目标的有希望的一步。

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