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从三萜烯合酶的功能表征和底物混杂 Tripterygium wilfordii。

Functional characterization and substrate promiscuity of sesquiterpene synthases from Tripterygium wilfordii.

机构信息

School of Pharmaceutical Sciences, Capital Medical University, Beijing 100069, PR China.

College of Pharmacy, School of Medicine, Hangzhou Normal University, Hangzhou, Zhejiang 311121, PR China.

出版信息

Int J Biol Macromol. 2021 Aug 31;185:949-958. doi: 10.1016/j.ijbiomac.2021.07.004. Epub 2021 Jul 6.

Abstract

Acyclic terpenes, commonly found in plants, are of high physiological importance and commercial value, and their diversity was controlled by different terpene synthases. During the screen of sesquiterpene synthases from Tripterygium wilfordii, we observed that Ses-TwTPS1-1 and Ses-TwTPS2 promiscuously accepted GPP, FPP, and GGPP to produce corresponding terpene alcohols (linalool/nerolidol/geranyllinalool). The Ses-TwTPS1-2, Ses-TwTPS3, and Ses-TwTPS4 also showed unusual substrate promiscuity by catalyzing GGPP or GPP in addition to FPP as substrate. Furthermore, key residues for the generation of diterpene product, (E, E)-geranyllinalool, were screened depending on mutagenesis studies. The functional analysis of Ses-TwTPS1-1:V199I and Ses-TwTPS1-2:I199V showed that Val in 199 site assisted the produce of diterpene product geranyllinalool by enzyme mutation studies, which indicated that subtle differences away from the active site could alter the product outcome. Moreover, an engineered sesquiterpene high-yielding yeast that produced 162 mg/L nerolidol in shake flask conditions was constructed to quickly identify the function of sesquiterpene synthases in vivo and develop potential applications in microbial fermentation. Our functional characterization of acyclic sesquiterpene synthases will give some insights into the substrate promiscuity of diverse acyclic terpene synthases and provide key residues for expanding the product portfolio.

摘要

无环萜烯,通常在植物中发现,具有很高的生理重要性和商业价值,其多样性由不同的萜烯合酶控制。在筛选雷公藤倍半萜合酶时,我们观察到 Ses-TwTPS1-1 和 Ses-TwTPS2 可随意接受 GPP、FPP 和 GGPP 来产生相应的萜烯醇(芳樟醇/橙花叔醇/香叶基芳樟醇)。Ses-TwTPS1-2、Ses-TwTPS3 和 Ses-TwTPS4 还表现出异常的底物混杂性,除了 FPP 外,还可以 GGPP 或 GPP 作为底物。此外,根据突变研究筛选出产生二萜产物(E,E)-香叶基芳樟醇的关键残基。Ses-TwTPS1-1:V199I 和 Ses-TwTPS1-2:I199V 的功能分析表明,199 位的缬氨酸通过酶突变研究辅助二萜产物香叶基芳樟醇的产生,这表明远离活性位点的细微差异可能改变产物的结果。此外,构建了一株产高含量倍半萜烯的酵母工程菌,在摇瓶条件下可产生 162mg/L 的橙花叔醇,以快速鉴定体内倍半萜合酶的功能,并为微生物发酵中的潜在应用提供参考。我们对无环倍半萜合酶的功能表征将为不同无环萜烯合酶的底物混杂性提供一些见解,并为扩展产物组合提供关键残基。

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