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利用基于质粒的表达系统在大肠杆菌中合成多巴胺及其对宿主生长曲线的显著影响。

Synthesis of dopamine in E. coli using plasmid-based expression system and its marked effect on host growth profiles.

作者信息

Das Arunangshu, Verma Anita, Mukherjee Krishna J

机构信息

a School of Biotechnology , Jawaharlal Nehru University , New Delhi , India.

出版信息

Prep Biochem Biotechnol. 2017 Sep 14;47(8):754-760. doi: 10.1080/10826068.2017.1320291. Epub 2017 Apr 21.

Abstract

L-Dopa and dopamine are important pathway intermediates toward the synthesis of catecholamine such as epinephrine and norepinephrine from amino acid L-tyrosine. Dopamine, secreted from dopaminergic nerve cells, serves as an important neurotransmitter. We report the synthesis of dopamine by extending the aromatic amino acid pathway of Escherichia coli DH5α by the expression of 4-hydroxyphenylacetate-3-hydrolase (HpaBC) from E. coli and an engineered dopa decarboxylase (DDC) from pig kidney cell. The activity of HpaBC and DDC require 200 µM iron supplementation and 50 µM vitamin B6, respectively as additives to the growth media. The maximum concentration of L-dopa and dopamine obtained from the broth was around 26 and 27 mg/L after 24 hr of separate shake flask studies. We observed that in the presence of dopamine synthesized in vivo host growth was remarkably enhanced. These observations lead us to an interesting finding about the role of these catecholamines on bacterial growth. It is clear that synthesis of dopamine in vivo actually promotes growth much efficiently as compared to when dopamine is added to the system from outside. From HPLC and GC-MS data it was further observed that L-dopa was stable within the observable time of experiments whereas dopamine actually was subjected to degradation via oxidation and host consumption.

摘要

左旋多巴和多巴胺是从氨基酸L-酪氨酸合成儿茶酚胺(如肾上腺素和去甲肾上腺素)的重要途径中间体。多巴胺由多巴胺能神经细胞分泌,是一种重要的神经递质。我们通过表达来自大肠杆菌的4-羟基苯乙酸-3-水解酶(HpaBC)和来自猪肾细胞的工程化多巴脱羧酶(DDC),扩展大肠杆菌DH5α的芳香族氨基酸途径来合成多巴胺。HpaBC和DDC的活性分别需要向生长培养基中添加200μM铁和50μM维生素B6作为添加剂。在单独的摇瓶研究24小时后,从肉汤中获得的左旋多巴和多巴胺的最大浓度分别约为26和27mg/L。我们观察到,在体内合成多巴胺的情况下,宿主生长显著增强。这些观察结果使我们对这些儿茶酚胺在细菌生长中的作用有了一个有趣的发现。很明显,与从外部向系统中添加多巴胺相比,体内合成多巴胺实际上能更有效地促进生长。从高效液相色谱(HPLC)和气相色谱-质谱联用(GC-MS)数据进一步观察到,在可观察的实验时间内左旋多巴是稳定的,而多巴胺实际上会通过氧化和宿主消耗而降解。

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