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首页> 外文期刊>Angewandte Chemie >Reconstitution of Biosynthetic Machinery for the Synthesis of the Highly Elaborated Indole Diterpene Penitrem
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Reconstitution of Biosynthetic Machinery for the Synthesis of the Highly Elaborated Indole Diterpene Penitrem

机译:重构生物合成机械,合成高度精制的吲哚二萜青霉烯

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摘要

Penitrem A is one of the most elaborated members of the fungal indole diterpenes. Two separate penitrem gene clusters were identified using genomic and RNA sequencing data, and 13 out of 17 transformations in the penitrem biosynthesis were elucidated by heterologous reconstitution of the relevant genes. These reactions involve 1) a prenylation-initiated cationic cyclization to install the bicyclo[3.2.0] heptane skeleton (PtmE), 2) a two-step P450-catalyzed oxidative processes forming the unique tricyclic penitrem skeleton (PtmK and PtmU), and 3) five sequential oxidative transformations (PtmKULNJ). Importantly, without conventional gene disruption, reconstitution of the biosynthetic machinery provided sufficient data to determine the pathway. It was thus demonstrated that the Aspergillus oryzae reconstitution system is a powerful method for studying the biosynthesis of complex natural products.
机译:Penitrem A是真菌吲哚二萜中最精细的成员之一。利用基因组和RNA测序数据鉴定了两个单独的Penitrem基因簇,并通过相关基因的异源重组阐明了Penitrem生物合成中17个转化中的13个。这些反应涉及1)戊烯基化引发的阳离子环化,以安装双环[3.2.0]庚烷骨架(PtmE),2)两步P450催化的氧化过程,形成独特的三环戊三烯骨架(PtmK和PtmU),以及3)五个顺序的氧化转化(PtmKULNJ)。重要的是,在没有常规基因破坏的情况下,生物合成机制的重建提供了足够的数据来确定途径。因此证明了米曲霉的重构系统是研究复杂天然产物生物合成的有效方法。

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