Li Shou-Lian, Wang Dong, Liu Yi, Lin Ting-Ting, Tang Jin-Lei, Hua Er-Bing, Zhang Xue-Li, Dai Zhu-Bo, Huang Lu-Qi
College of Biotechnology, Tianjin University of Science & Technology, Tianjin 310018, China.
Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China.
Zhongguo Zhong Yao Za Zhi. 2017 Sep;42(17):3326-3331. doi: 10.19540/j.cnki.cjcmm.20170714.003.
Cucurbitadienol has anti-inflammation, anti-cancer activities, and acts as a precursor of traditional Chinese medicine active ingredients mogroside and cucurbitacine. For construction of a Sacchromyces cerevisiae cell factory for production of cucurbitadienol, we firstly cloned a cucurbitadienol synthase (CBS) gene from Siraitia grosvenorii. Then, through heterologous expression of CBS in the triterpenoid chassis strain WD-2091, the engineered strain could produced 27.44 mg•L ⁻¹ cucurbitadienol, which was determined by GC-MS. Further regulation of CBS expression led to cucurbitadienol's titer increasing by 202.07% and reaching 82.89 mg•L ⁻¹ in the shake flask fermentation and 1 724.10 mg•L ⁻¹ in the high cell density fermentation. Our research promotes the cucurbitane-type tetracyclic triterpenoids synthesis pathway analysis progress and provides the basis for further obtaining cell factories for production of cucurbitadienol tetracyclic triterpenoids.
葫芦二烯醇具有抗炎、抗癌活性,并且是中药活性成分罗汉果甜苷和葫芦素的前体。为构建用于生产葫芦二烯醇的酿酒酵母细胞工厂,我们首先从罗汉果中克隆了一个葫芦二烯醇合酶(CBS)基因。然后,通过在三萜底盘菌株WD-2091中异源表达CBS,该工程菌株能够产生27.44 mg•L⁻¹的葫芦二烯醇,这是通过气相色谱-质谱联用(GC-MS)测定的。对CBS表达的进一步调控导致葫芦二烯醇的产量提高了202.07%,在摇瓶发酵中达到82.89 mg•L⁻¹,在高细胞密度发酵中达到1724.10 mg•L⁻¹。我们的研究推动了葫芦烷型四环三萜合成途径的分析进展,并为进一步获得用于生产葫芦二烯醇四环三萜的细胞工厂提供了依据。