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首页> 外文期刊>Angewandte Chemie >A Monooxygenase from Boreostereum vibrans Catalyzes Oxidative Decarboxylation in a Divergent Vibralactone Biosynthesis Pathway
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A Monooxygenase from Boreostereum vibrans Catalyzes Oxidative Decarboxylation in a Divergent Vibralactone Biosynthesis Pathway

机译:来自气孔杆菌的单加氧酶催化不同的Vibralactone生物合成途径中的氧化脱羧。

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摘要

The oxidative decarboxylation of prenyl 4-hydroxybenzoate to prenylhydroquinone has been frequently proposed for the biosynthesis of prenylated (hydro)quinone derivates (sometimes meroterpenoids), yet no corresponding genes or enzymes have so far been reported. A FAD-binding monooxygenase (VibMO1) was identified that converts prenyl 4-hydroxybenzoate into prenylhydroquinone and is likely involved in the biosynthesis of vibralactones and other meroterpenoids in the basidiomycete Boreostereum vibrans. Feeding of 3-allyl-4-hydroxybenzylalcohol, an analogue of the vibralactone pathway intermediate 3-prenyl-4-hydroxybenzylalcohol, generated 20 analogues with different scaffolds. This demonstrated divergent pathways to skeletally distinct compounds initiating from a single precursor, thus providing the first insight into a novel biosynthetic pathway for 3-substituted gamma-butyrolactones from a shikimate origin.
机译:常有人提出将4-羟基苯甲酸异戊酯氧化脱羧为异戊烯基对苯二酚用于生物合成炔基化的(氢)醌衍生物(有时是甲萜类化合物),但迄今尚未报道相应的基因或酶。一个FAD结合单加氧酶(VibMO1)已被确定,可以将异戊烯基4-羟基苯甲酸酯转化为异戊烯基对苯二酚,并且可能参与了拟南芥纤毛虫中的草酸内酯和其他类萜类化合物的生物合成。补给3-烯丙基-4-羟基苄基醇,它是振动内酯途径中间体3-异戊烯基-4-羟基苄基醇的类似物,产生了具有不同支架的20个类似物。这证明了从单一前体开始的骨架上截然不同的化合物的发散途径,从而为从sh草酸酯起源的3-取代的γ-丁内酯的新型生物合成途径提供了第一见解。

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