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Production of three phenylethanoids tyrosol hydroxytyrosol and salidroside using plant genes expressing in Escherichia coli

机译:利用在大肠杆菌中表达的植物基因来生产三种苯乙醇类化合物酪醇羟基酪醇和红景天苷

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摘要

Polyphenols, which include phenolic acids, flavonoids, stilbenes, and phenylethanoids, are generally known as useful antioxidants. Tyrosol, hydroxytyrosol, and salidroside are typical phenylethanoids. Phenylethanoids are found in plants such as olive, green tea, and Rhodiola and have various biological activities, including the prevention of cardiovascular diseases, cancer, and brain damage. We used Escherichia coli to synthesize three phenylethanoids, tyrosol, hydroxytyrosol, and salidroside. To synthesize tyrosol, the aromatic aldehyde synthase (AAS) was expressed in E. coli. Hydroxytyrosol was synthesized using E. coli harboring AAS and HpaBC, which encodes hydroxylase. In order to synthesize salidroside, 12 uridine diphosphate-dependent glycosyltransferases (UGTs) were screened and UGT85A1 was found to convert tyrosol to salidroside. Using E. coli harboring AAS and UGT85A1, salidroside was synthesized. Through the optimization of these three E. coli strains, we were able to synthesize 531 mg/L tyrosol, 208 mg/L hydroxytyrosol, and 288 mg/L salidroside, respectively.
机译:多酚,包括酚酸,类黄酮,对苯二甲酸酯和苯乙醛类,通常被认为是有用的抗氧化剂。酪醇,羟基酪醇和红景天苷是典型的苯乙胺类化合物。苯乙醇类化合物存在于橄榄,绿茶和红景天等植物中,具有多种生物活性,包括预防心血管疾病,癌症和脑损伤。我们使用大肠杆菌合成了三种苯乙胺类化合物,酪醇,羟基酪醇和红景天苷。为了合成酪醇,芳族醛合酶(AAS)在大肠杆菌中表达。使用携带AAS和编码羟化酶的HpaBC的大肠杆菌合成羟基酪醇。为了合成红景天苷,筛选了12种尿苷二磷酸依赖性糖基转移酶(UGT),发现UGT85A1将酪醇转化为红景天苷。使用带有AAS和UGT85A1的大肠杆菌,合成了红景天苷。通过优化这三株大肠杆菌,我们能够分别合成531μg/ L的酪醇,208μmg/ L的羟基酪醇和288μmg/ L的红景天苷。

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