Xiamen University, Fujian, 361102, China.
Appl Microbiol Biotechnol. 2021 Mar;105(6):2333-2340. doi: 10.1007/s00253-021-11186-1. Epub 2021 Mar 2.
2-Phenylethanol (2-PE) is an important flavor ingredient and is widely applied in the fields of food, cosmetics, and pharmaceuticals. Despite that Saccharomyces cerevisiae has the ability to naturally synthesize 2-PE via the Ehrlich pathway, de novo synthesis of 2-PE in high titer still remains a huge challenge. In this study, a non-native styrene degradation pathway was introduced into S. cerevisiae, which represents the first time to demonstrate the functional expression of "styrene-derived" 2-PE synthesis in yeast. Using a host strain engineered with L-phenylalanine (L-Phe) overproduction, the heterologous 2-PE pathway coupled with endogenous Ehrlich pathway produced 233 mg/L 2-PE under shake flasks. Additionally, we further engineered the permease transporters to improve the intracellular L-Phe availability, and further improved the 2-PE titer to 680 mg/L. Taken together, our work represents one of the pioneering reports to explore "styrene-derived" pathway in S. cerevisiae. The synthetic yeast described here might be used as a platform for the future development of next-generation high-yielding 2-PE yeast strains.Key Points• A styrene-derived pathway was established in yeast for 2-phenylethanol productions; membrane-associated styrene oxide isomerase was functional in yeast.• Transporter engineering to improve the L-phenylalanine importation with enhanced 2-phenylethanol productions.
2-苯乙醇(2-PE)是一种重要的风味物质,广泛应用于食品、化妆品和制药等领域。尽管酿酒酵母(Saccharomyces cerevisiae)具有通过 Ehrlich 途径自然合成 2-PE 的能力,但以高浓度从头合成 2-PE 仍然是一个巨大的挑战。在本研究中,我们将非天然的苯乙烯降解途径引入酿酒酵母中,这是首次证明“苯乙烯衍生”2-PE 合成在酵母中的功能表达。使用过表达 L-苯丙氨酸(L-Phe)的工程化宿主菌株,异源 2-PE 途径与内源性 Ehrlich 途径耦合,在摇瓶中产生 233mg/L 的 2-PE。此外,我们进一步工程化透性酶转运蛋白以提高细胞内 L-Phe 的可用性,并进一步将 2-PE 的产量提高到 680mg/L。总之,我们的工作代表了探索酿酒酵母中“苯乙烯衍生”途径的开创性报告之一。所描述的合成酵母可能被用作未来开发高产 2-PE 酵母菌株的平台。
关键词:
建立了酵母中用于 2-苯乙醇生产的苯乙烯衍生途径;膜结合的苯乙烯氧化物异构酶在酵母中具有功能。
通过转运蛋白工程提高 L-苯丙氨酸的摄取量,从而提高 2-苯乙醇的产量。