Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China.
Science Center for Future Foods, Ministry of Education, Jiangnan University, Wuxi 214122, China.
ACS Synth Biol. 2024 Jun 21;13(6):1866-1878. doi: 10.1021/acssynbio.4c00132. Epub 2024 Jun 5.
3-Fucosyllactose (3-FL) is an important fucosylated human milk oligosaccharide (HMO) with biological functions such as promoting immunity and brain development. Therefore, the construction of microbial cell factories is a promising approach to synthesizing 3-FL from renewable feedstocks. In this study, a combinatorial engineering strategy was used to achieve efficient 3-FL production in . α-1,3-Fucosyltransferase () from was introduced into and optimized to create a 3-FL-producing chassis strain. Subsequently, the 3-FL titer increased to 5.2 g/L by improving the utilization of the precursor lactose and down-regulating the endogenous competitive pathways. Furthermore, a synthetic membraneless organelle system based on intrinsically disordered proteins was designed to spatially regulate the pathway enzymes, producing 7.3 g/L 3-FL. The supply of the cofactors NADPH and GTP was also enhanced, after which the 3-FL titer of engineered strain E26 was improved to 8.2 g/L in a shake flask and 10.8 g/L in a 3 L fermenter. In this study, we developed a valuable approach for constructing an efficient 3-FL-producing cell factory and provided a versatile workflow for other chassis cells and HMOs.
3-岩藻糖基乳糖(3-FL)是一种重要的人乳寡糖(HMO),具有促进免疫和大脑发育等生物学功能。因此,构建微生物细胞工厂是利用可再生原料合成 3-FL 的一种很有前途的方法。本研究采用组合工程策略,在 中高效生产 3-FL。从 中引入了 α-1,3-岩藻糖基转移酶(),并对其进行了优化,以构建 3-FL 生产底盘菌株。随后,通过提高乳糖前体的利用率和下调内源性竞争途径,将 3-FL 的产量提高到 5.2 g/L。此外,还设计了一种基于无序蛋白的无膜细胞器系统,用于空间调控途径酶,从而生产 7.3 g/L 的 3-FL。还增强了辅因子 NADPH 和 GTP 的供应,之后,工程菌株 E26 在摇瓶和 3 L 发酵罐中的 3-FL 产量分别提高到 8.2 g/L 和 10.8 g/L。在本研究中,我们开发了一种构建高效 3-FL 生产细胞工厂的有价值方法,并为其他底盘细胞和 HMO 提供了一种通用的工作流程。