4.6 Article

Reengineering of 7-dehydrocholesterol biosynthesis in Saccharomyces cerevisiae using combined pathway and organelle strategies

期刊

FRONTIERS IN MICROBIOLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2022.978074

关键词

7-dehydrocholesterol; push and pull; multi-copy site integration; metabolic engineering; Saccharomyces cerevisiae

资金

  1. National Key Research and Development Program of China
  2. Foundation for Innovative Research Groups of the National Natural Science Foundation of China
  3. [2019YFA0905300]
  4. [32021005]

向作者/读者索取更多资源

In this study, the biosynthesis pathway of 7-Dehydrocholesterol (7-DHC) was constructed and modified in Saccharomyces cerevisiae, resulting in significantly increased 7-DHC production. Through strategies such as gene knockout and upregulation, the 7-DHC titer reached the highest reported level. This research is of great importance for the industrial production of 7-DHC and the development of steroid drugs for medical applications.
7-Dehydrocholesterol (7-DHC) is a widely used sterol and a precursor of several costly steroidal drugs. In this study, 7-DHC biosynthesis pathway was constructed and modified in Saccharomyces cerevisiae. Firstly, the biosynthesis pathway was constructed by knocking out the competitive pathway genes ERG5 and ERG6 and integrating two DHCR24 copies from Gallus gallus at both sites. Then, 7-DHC titer was improved by knocking out MOT3, which encoded a transcriptional repressor for the 7-DHC biosynthesis pathway. Next, by knocking out NEM1 and PAH1, 7-DHC accumulation was improved, and genes upregulation was verified by quantitative PCR (qPCR). Additionally, tHMG1, IDI1, ERG2, ERG3, DHCR24, POS5, and CTT1 integration into multi-copy sites was used to convert precursors to 7-DHC, and increase metabolic flux. Finally, qPCR confirmed the significant up-regulation of key genes transcriptional levels. In a 96 h shaker flask fermentation, the 7-DHC titer was 649.5 mg/L by de novo synthesis. In a 5 L bioreactor, the 7-DHC titer was 2.0 g/L, which was the highest 7-DHC titer reported to date. Our study is of great significance for the industrial production of 7-DHC and steroid development for medical settings.

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