Production of multiple terpenes of different chain lengths by subcellular targeting of multi-substrate terpene synthase in plants

萜烯 烟草 焦磷酸法尼酯 焦磷酸异戊烯酯 焦磷酸香叶基香叶基 拟南芥 焦磷酸盐 基质(水族馆) 生物 质体 生物化学 预酸化 生物合成 拟南芥 立体化学 化学 叶绿体 基因 生态学 突变体
作者
Savitha Dhandapani,Jessica Gambino Tjhang,In‐Cheol Jang
出处
期刊:Metabolic Engineering [Elsevier]
卷期号:61: 397-405 被引量:46
标识
DOI:10.1016/j.ymben.2020.08.002
摘要

Multi-substrate terpene synthases (TPSs) are distinct from typical TPSs that react with a single substrate. Although in vitro activity of few multi-substrate TPSs have been reported, in vivo characterization has not been well investigated for most of them. Here, a new TPS from Cananga odorata, CoTPS5, belonging to TPS-f subfamily was functionally characterized in vitro as well as in vivo. CoTPS5 reacted with multiple prenyl-pyrophosphate substrates of various chain lengths as a multi-substrate TPS. It catalyzed the formation of (E)-β-ocimene, (E,E)-α-farnesene and α-springene from geranyl pyrophosphate, (E,E)-farnesyl pyrophosphate and geranylgeranyl pyrophosphate, respectively. Upon transient expression in Nicotiana benthamiana, CoTPS5 localized to cytosol and produced only (E,E)-α-farnesene. However, expression of plastid-targeted CoTPS5 in N. benthamiana resulted in biosynthesis of all three compounds, (E)-β-ocimene, (E,E)-α-farnesene and α-springene. Similarly, transgenic Arabidopsis plants overexpressing plastid-targeted CoTPS5 showed stable and sustainable production of (E)-β-ocimene, (E,E)-α-farnesene and α-springene. Moreover, their production did not affect the growth and development of transgenic Arabidopsis plants. Our results demonstrate that redirecting multi-substrate TPS to a different intracellular compartment could be an effective way to prove in vivo activity of multi-substrate TPSs and thereby allowing for the production of multiple terpenoids simultaneously in plants.
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