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Itaconic acid derivatives: structure, function, biosynthesis, and perspectives

机译:衣康酸衍生物:结构,功能,生物合成和观点

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Itaconic acid possessing a vinylidene group, which is mainly produced by fungi, is used as a biobased platform chemical and shows distinctive bioactivities. On the other hand, some fungi and lichens produce itaconic acid derivatives possessing itaconic acid skeleton, and the number of the derivatives is currently more than seventy. Based on the molecular structures, they can be categorized into two groups, alkylitaconic acids and alpha-methylene-gamma-butyrolactones. Interestingly, some itaconic acid derivatives show versatile functions such as antimicrobial, anti-inflammatory, antitumor, and plant growth-regulating activities. The vinylidene group of itaconic acid derivatives likely participates in these functions. It is suggested that alpha-methylene-gamma-butyrolactones are biosynthesized from alkylitaconic acids which are first biosynthesized from acyl-CoA and oxaloacetic acid. Some modifying enzymes such as hydroxylase and dehydratase are likely involved in the further modification after biosynthesis of their precursors. This contributes to the diversity of itaconic acid derivatives. In this review, we summarize their structures, functions, and biosynthetic pathways together with a discussion of a strategy for the industrial use.
机译:具有主要由真菌产生的偏二苯基的衣康酸用作生物化平台化学品,并显示出独特的生物活化。另一方面,一些真菌和地衣产生具有衣康酸骨架的衣康酸衍生物,并且目前衍生物的数量超过七十。基于分子结构,它们可以分为两组,烷基膦酸和α-亚甲基 - γ-丁内酯。有趣的是,一些衣康酸衍生物呈多种功能,例如抗微生物,抗炎,抗肿瘤和植物生长调节活动。甲基苯甲酸衍生物的偏苯基乙烯基可能参与这些功能。建议,α-亚甲基-γ-丁内酯由烷基耐盐酸生物合成,所述烷基耐盐是由酰基-CoA和草氧乙酸的生物合成的。一些改性酶如羟化酶和脱水酶可能参与其前体生物合成后的进一步修饰。这有助于透析酸衍生物的多样性。在本次审查中,我们总结了他们的结构,功能和生物合成途径以及对工业用途的讨论。

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