Co-expression of squalene epoxidases with triterpene cyclases boosts production of triterpenoids in plants and yeast

三萜 角鲨烯 角鲨烯单加氧酶 生物化学 羊毛甾醇 生物合成 酵母 烟草 ATP合酶 化学 生物 甾醇 替代医学 胆固醇 病理 基因 医学
作者
Lemeng Dong,Jacob Pollier,Jean‐Etienne Bassard,Georgios Ntallas,Aldo Almeida,Eleni Lazaridi,Bekzod Khakimov,Philipp Arendt,Louisi Oliveira,Frédéric Lota,Alain Goossens,Franck Michoux,Søren Bak
出处
期刊:Metabolic Engineering [Elsevier]
卷期号:49: 1-12 被引量:39
标识
DOI:10.1016/j.ymben.2018.07.002
摘要

Triterpene cyclases catalyze the first committed step in triterpene biosynthesis, by forming mono- to pentacyclic backbone structures from oxygenated C30 isoprenoid precursors. Squalene epoxidase precedes this cyclization by providing the oxygenated and activated substrate for triterpene biosynthesis. Three squalene epoxidases from Cucurbita pepo (CpSEs) were isolated and shown to have evolved under purifying selection with signs of sites under positive selection in their N- and C-termini. They all localize to the Endoplasmic Reticulum (ER) and produce 2,3-oxidosqualene and 2,3:22,23-dioxidosqualene when expressed in a yeast erg1 (squalene epoxidase) erg7 (lanosterol synthase) double mutant. Co-expression of the CpSEs with four different triterpene cyclases, either transiently in Nicotiana benthamiana or constitutively in yeast, showed that CpSEs boost triterpene production. CpSE2 was the best performing in this regard, which could reflect either increased substrate production or superior channeling of the substrate to the triterpene cyclases. Fluorescence Lifetime Imaging Microscopy (FLIM) analysis with C. pepo cucurbitadienol synthase (CpCPQ) revealed a specific interaction with CpSE2 but not with the other CpSEs. When CpSE2 was transformed into C. pepo hairy root lines, cucurbitacin E production was increased two folds compared to empty vector control lines. This study provides new insight into the importance of SEs in triterpene biosynthesis, suggesting that they may facilitate substrate channeling, and demonstrates that SE overexpression is a new tool for increasing triterpene production in plants and yeast.
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