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Structural basis for cyclic terpene biosynthesis by tobacco 5-epi-aristolochene synthase

机译:烟草5-表皮-合成蛋白合成环戊烯的结构基础

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摘要

Terpene cyclases catalyze the synthesis of cyclic terpenes with 10-, 15-, and 20-carbon acyclic isoprenoid diphosphates as substrates. Plants have been a source of these natural products by providing a homologous set of terpene synthases. The crystal structures of 5-epi-aristolochene synthase, a sesquiterpene cyclase from tobacco, alone and complexed separately with two farnesyl diphosphate analogs were analyzed. These structures reveal an unexpected enzymatic mechanism for the synthesis of the bicyclic product, 5-epi-aristolochene, and provide a basis for understanding the stereochemical selectivity displayed by other cyclases in the biosynthesis of pharmacologically important cyclic terpenes. As such, these structures provide templates for the engineering of novel terpene cyclases.
机译:萜烯环化酶催化以10碳,15碳和20碳的无环类异戊二烯二磷酸为底物的环状萜烯的合成。通过提供一组同源的萜烯合酶,植物已成为这些天然产物的来源。分别分析了5-epi-aristolochene合酶(一种来自烟草的倍半萜环化酶)的晶体结构,并分别与两种法呢基二磷酸类似物复合。这些结构揭示了用于合成双环产物5-表位-抗气枝菌素的出乎意料的酶促机理,并为理解药理学上重要的环萜烯的生物合成中其他环化酶显示的立体化学选择性提供了基础。这样,这些结构为新型萜烯环化酶的工程设计提供了模板。

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