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Pseudomonas putida as a platform for the synthesis of aromatic compounds

机译:恶臭假单胞菌用作合成芳族化合物的平台

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Aromatic compounds such as l-phenylalanine, 2-phenylethanol and trans-cinnamate are aromatic compounds of industrial interest. Current trends support replacement of chemical synthesis of these compounds by ‘green’ alternatives produced in microbial cell factories. The solvent-tolerant Pseudomonas putida DOT-T1E strain was genetically modified to produce up to 1 g l?1 of l-phenylalanine. In order to engineer this strain, we carried out the following stepwise process: (1) we selected random mutants that are resistant to toxic phenylalanine analogues; (2) we then deleted up to five genes belonging to phenylalanine metabolism pathways, which greatly diminished the internal metabolism of phenylalanine; and (3) in these mutants, we overexpressed the pheAfbr gene, which encodes a recombinant variant of PheA that is insensitive to feedback inhibition by phenylalanine. Furthermore, by introducing new genes, we were able to further extend the diversity of compounds produced. Introduction of histidinol phosphate transferase (PP_0967), phenylpyruvate decarboxylase (kdc) and an alcohol dehydrogenase (adh) enabled the strain to produce up to 180 mg l?1 2-phenylethanol. When phenylalanine ammonia lyase (pal) was introduced, the resulting strain produced up to 200 mg l?1 of trans-cinnamate. These results demonstrate that P. putida can serve as a promising microbial cell factory for the production of l-phenylalanine and related compounds.
机译:芳族化合物,例如1-苯丙氨酸,2-苯乙醇和反式肉桂酸酯是工业上感兴趣的芳族化合物。当前的趋势支持用微生物细胞工厂生产的“绿色”替代物代替这些化合物的化学合成。对耐溶剂的恶臭假单胞菌DOT-T1E菌株进行了基因修饰,可生产多达1 g l?1的1-苯丙氨酸。为了对该菌株进行工程改造,我们进行了以下逐步过程:(1)我们选择了对有毒苯丙氨酸类似物有抗性的随机突变体; (2)然后我们删除了多达五个属于苯丙氨酸代谢途径的基因,从而大大减少了苯丙氨酸的内部代谢。 (3)在这些突变体中,我们过表达pheAfbr基因,该基因编码对苯丙氨酸的反馈抑制不敏感的PheA重组变体。此外,通过引入新基因,我们能够进一步扩展产生的化合物的多样性。引入组氨酸磷酸转移酶(PP_0967),丙酮酸苯甲酸脱羧酶(kdc)和醇脱氢酶(adh)使菌株能够产生高达180 mg l?1的2-苯基乙醇。当引入苯丙氨酸氨裂合酶(Pal)时,所产生的菌株产生高达200mg L-1的反式肉桂酸酯。这些结果表明恶臭假单胞菌可以用作生产1-苯丙氨酸和相关化合物的有希望的微生物细胞工厂。

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