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首页> 外文期刊>Angewandte Chemie >Diverged Plant Terpene Synthases Reroute the Carbocation Cyclization Path towards the Formation of Unprecedented 6/11/5 and 6/6/7/5 Sesterterpene Scaffolds
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Diverged Plant Terpene Synthases Reroute the Carbocation Cyclization Path towards the Formation of Unprecedented 6/11/5 and 6/6/7/5 Sesterterpene Scaffolds

机译:分叉植物萜烯合成酶重新排教划分型循环化路径,以形成前所未有的6/11/5和6/6/7/5 serterpene支架

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摘要

Sesterterpenoids are a relatively rare class of plant terpenes. Sesterterpene synthase (STS)-mediated cyclization of the linear C-25 isoprenoid precursor geranylfarnesyl diphosphate (GFPP) defines sesterterpene scaffolds. So far only a very limited number of STSs have been characterized. The discovery of three new plant STSs is reported that produce a suite of sesterterpenes with unprecedented 6/11/5 and 6/6/7/5 fused ring systems when transiently co-expressed with a GFPP synthase in Nicotiana benthamiana. Structural elucidation, feeding experiments, and quantum chemical calculations suggest that these STSs catalyze an unusual cyclization path involving reprotonation, intramolecular 1,6 proton transfer, and concerted but asynchronous bicyclization events. The cyclization is diverted from those catalyzed by the characterized plant STSs by forming unified 15/5 bicyclic sesterterpene intermediates. Mutagenesis further revealed a conserved amino acid residue implicated in reprotonation.
机译:Sesterterpenoids是一种相对罕见的植物萜烯。 连续的合酶(STS)介导的线性C-25异戊二烯前体的环化,二烷基二磷酸二磷酸(GFPP)定义了SerterTepene支架。 到目前为止,只有一个非常有限数量的STS。 据报道,三种新植物STS的发现,当瞬时共同表达尼古利亚纳·斯坦姆亚洲人的GFPP合成酶时,将出现一套前所未有的6/11/5和6/6/7/5融合环系统。 结构阐明,饲养实验和量子化学计算表明,这些STS催化了涉及再生,分子内1,6质子转移和齐全而异的双环发生事件的异常环化路径。 通过形成统一的15/5双环中间体,将环化从特征植物STS催化的那些转移。 诱变进一步揭示了一种涉及再生的保守氨基酸残基。

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