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Diversity of sesquiterpene synthases in the basidiomycete Coprinus cinereus.

机译:灰担子菌鸡腿菇中倍半萜烯合酶的多样性。

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摘要

Fungi are a rich source of bioactive secondary metabolites, and mushroom-forming fungi (Agaricomycetes) are especially known for the synthesis of numerous bioactive and often cytotoxic sesquiterpenoid secondary metabolites. Compared with the large number of sesquiterpene synthases identified in plants, less than a handful of unique sesquiterpene synthases have been described from fungi. Here we describe the functional characterization of six sesquiterpene synthases (Cop1 to Cop6) and two terpene-oxidizing cytochrome P450 monooxygenases (Cox1 and Cox2) from Coprinus cinereus. The genes were cloned and, except for cop5, functionally expressed in Escherichia coli and/or Saccharomyces cerevisiae. Cop1 and Cop2 each synthesize germacrene A as the major product. Cop3 was identified as an alpha-muurolene synthase, an enzyme that has not been described previously, while Cop4 synthesizes delta-cadinene as its major product. Cop6 was originally annotated as a trichodiene synthase homologue but instead was found to catalyse the highly specific synthesis of alpha-cuprenene. Coexpression of cop6 and the two monooxygenase genes next to it yields oxygenated alpha-cuprenene derivatives, including cuparophenol, suggesting that these genes encode the enzymes for the biosynthesis of antimicrobial quinone sesquiterpenoids (known as lagopodins) that were previously isolated from C. cinereus and other Coprinus species.
机译:真菌是具有生物活性的次级代谢产物的丰富来源,而形成蘑菇的真菌(姬松茸菌种)以合成多种具有生物活性且通常具有细胞毒性的倍半萜类次级代谢产物而闻名。与在植物中鉴定出的大量倍半萜合酶相比,真菌中描述的少于少数独特的倍半萜合酶。在这里,我们描述了灰粉鬼伞的六个倍半萜烯合酶(Cop1至Cop6)和两个萜烯氧化的细胞色素P450单加氧酶(Cox1和Cox2)的功能表征。克隆了这些基因,除cop5外,这些基因在大肠杆菌和/或酿酒酵母中功能性表达。 Cop1和Cop2各自合成胚芽丙烯A作为主要产物。 Cop3被鉴定为一种α-茂四烯合酶,一种以前未曾描述过的酶,而Cop4则将δ-卡丹烯作为其主要产物。 Cop6最初被注释为三甲叉二烯合酶同系物,但后来发现它催化了α-铜烯的高度特异性合成。 cop6及其旁边的两个单加氧酶基因的共表达会产生含氧的α-铜烯衍生物,包括铜酚,表明这些基因编码用于抗菌醌倍半萜生物合成的酶(称为拉多泊定),这些酶以前是从C. cinereus和其他植物中分离得到的。鬼伞属物种。

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