Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310027, China.
ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou, 310000, China.
Nat Commun. 2023 Jan 27;14(1):437. doi: 10.1038/s41467-023-36007-z.
Brassinolide (BL) is the most biologically active compound among natural brassinosteroids. However, the agricultural applications are limited by the extremely low natural abundance and the scarcity of synthetic precursors. Here, we employ synthetic biology to construct a yeast cell factory for scalable production of 24-epi-ergosterol, an un-natural sterol, proposed as a precursor for BL semi-synthesis. First, we construct an artificial pathway by introducing a Δ sterol reductase from plants (DWF1), followed by enzyme directed evolution, to enable de novo biosynthesis of 24-epi-ergosterol in yeast. Subsequently, we manipulate the sterol homeostasis (overexpression of ARE2, YEH1, and YEH2 with intact ARE1), maintaining a balance between sterol acylation and sterol ester hydrolysis, for the production of 24-epi-ergosterol, whose titer reaches to 2.76 g L using fed-batch fermentation. The sterol homeostasis engineering strategy can be applicable for bulk production of other economically important phytosterols.
油菜素内酯(BL)是天然油菜素甾体中生物活性最强的化合物。然而,由于其极低的天然丰度和合成前体的稀缺性,其在农业上的应用受到限制。在这里,我们采用合成生物学方法构建了一个酵母细胞工厂,用于可扩展生产 24-表-麦角甾醇,一种非天然甾醇,被提议作为 BL 半合成的前体。首先,我们通过引入植物中的 Δ甾醇还原酶(DWF1)构建了一个人工途径,然后通过酶定向进化,使酵母能够从头生物合成 24-表-麦角甾醇。随后,我们通过操纵甾醇稳态(过表达完整 ARE1 的 ARE2、YEH1 和 YEH2),在甾醇酰化和甾醇酯水解之间保持平衡,以生产 24-表-麦角甾醇,其在分批补料发酵中的产量达到 2.76g/L。该甾醇稳态工程策略可适用于其他具有经济重要性的植物甾醇的批量生产。