Engineering Research Center of High Value Utilization of Western China Fruit Resources, Ministry of Education, Xi'an, 710119, People's Republic of China.
Shaanxi Engineering Lab for Food Green Processing and Safety Control, College of Food Engineering and Nutritional Science, Shaanxi Normal University, 620 West Chang'an Avenue, Chang'an, Xi'an, 710119, People's Republic of China.
Appl Microbiol Biotechnol. 2020 Aug;104(16):7165-7175. doi: 10.1007/s00253-020-10743-4. Epub 2020 Jun 26.
Sterols attract increasing attention due to their important bioactivities. The oleaginous yeast Yarrowia lipolytica has large lipid droplets, which provide storage for the accumulated steroid compounds. In this study, we have successfully constructed a campesterol biosynthetic pathway by modifying the synthetic pathway of ergosterol in Y. lipolytica with different capacity of lipid synthesis. The results showed that the maximal campesterol production was produced in the engineered strain YL-DME, as the optimal lipid content. Furthermore, we found that campesterol mainly exists in the lipid droplets. The campesterol production was further accumulated through the overexpression of two copies of dhcr7. Finally, the maximal campesterol production of 837 mg/L was obtained using a 5-L bioreactor in the engineered YL-DDME, exhibiting a 3.7-fold increase compared with the initial strain YL-DE. Our results demonstrate that the proper promotion of lipid content plays an important role in campesterol biosynthesis in Y. lipolytica, and what we found provides an effective strategy for the production of hydrophobic compounds.Key Points• Campesterol was biosynthesized by deleting erg5 and introducing heterologous dhcr7.• Campesterol production elevated via promotion of lipid content.• Campesterol was mainly found in lipid droplets.• Promotion of lipid content is an effective strategy to produce hydrophobic compounds.
甾醇由于其重要的生物活性而引起越来越多的关注。产油酵母解脂耶氏酵母(Yarrowia lipolytica)具有大的脂滴,为积累的甾体化合物提供了储存场所。在本研究中,我们通过修饰具有不同脂质合成能力的 Y. lipolytica 中麦角甾醇合成途径,成功构建了胆固醇生物合成途径。结果表明,在工程菌株 YL-DME 中产生了最大的胆固醇产量,作为最佳脂质含量。此外,我们发现胆固醇主要存在于脂滴中。通过过量表达两个 dhcr7 拷贝,进一步积累了胆固醇。最终,在工程菌株 YL-DDME 中,通过 5-L 生物反应器获得了 837mg/L 的最大胆固醇产量,与初始菌株 YL-DE 相比,增加了 3.7 倍。我们的结果表明,适当促进脂质含量在 Y. lipolytica 中的胆固醇生物合成中起着重要作用,我们的发现为生产疏水性化合物提供了有效的策略。