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Biosynthesis and biotechnological production of serotonin derivatives

机译:血清素衍生物的生物合成和生物技术生产

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摘要

Serotonin derivatives belong to a class of phenylpropanoid amides found at low levels in a wide range of plant species. Representative serotonin derivatives include feruloylserotonin (FS) and 4-coumaroylserotonin (CS). Since the first identification of serotonin derivatives in safflower seeds, their occurrence, biological significance, and pharmacological properties have been reported. Recently, serotonin N-hydroxycinnamoyl transferase (SHT), which is responsible for the synthesis of serotonin derivatives, was cloned from pepper (Capsicum annuum) and characterized in terms of its enzyme kinetics. Using the SHT gene, many attempts have been made to either increase the level of serotonin derivatives in transgenic plants or produce serotonin derivatives de novo in microbes by dual expression of key genes such as SHT and 4-coumarate-CoA ligase (4CL). Due to the strong antioxidant activity and other therapeutic properties of serotonin derivatives, these compounds may have high potential in treatment and prophylaxis, as cosmetic ingredients, and as major components of functional foods or feeds that have health-improving effects. This review examines the biosynthesis of serotonin derivatives, corresponding enzymes, heterologous production in plants or microbes, and their applications.
机译:5-羟色胺衍生物属于一类苯基丙烷类酰胺,在各种植物中含量低。代表性的5-羟色胺衍生物包括阿魏酰5-羟色胺(FS)和4-香豆酰5-羟色胺(CS)。自从首次鉴定红花种子中的5-羟色胺衍生物以来,已经报道了它们的出现,生物学意义和药理特性。最近,负责合成5-羟色胺衍生物的5-羟色胺N-羟基肉桂酰基转移酶(SHT)被从辣椒(辣椒)中克隆,并根据其酶动力学进行了表征。使用SHT基因,已经进行了许多尝试来提高转基因植物中5-羟色胺衍生物的水平,或者通过关键基因(例如SHT和4-香豆酸酯-CoA连接酶(4CL))的双重表达在微生物中重新产生5-羟色胺衍生物。由于5-羟色胺衍生物的强抗氧化活性和其他治疗特性,这些化合物作为化妆品成分以及具有改善健康作用的功能性食品或饲料的主要成分,在治疗和预防方面可能具有很高的潜力。本文综述了5-羟色胺衍生物的生物合成,相应的酶,植物或微生物的异源生产及其应用。

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