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利用多重 CRISPR 干扰和高通量发酵技术在工程化谷氨酸棒杆菌中从葡萄糖异源生产角鲨烯。

Heterologous Production of Squalene from Glucose in Engineered Corynebacterium glutamicum Using Multiplex CRISPR Interference and High-Throughput Fermentation.

机构信息

Department of Food Science and Biotechnology , Sungkyunkwan University (SKKU) , 2066 Seobu-ro , Jangan-gu, Suwon 16419 , Republic of Korea.

Intelligent Sustainable Materials R&D Group, Research Institute of Sustainable Manufacturing System , Korea Institute of Industrial Technology , 89 Yangdaegiro-gil , Ipjang-myeon, Seobuk-gu, Cheonan 31056 , Republic of Korea.

出版信息

J Agric Food Chem. 2019 Jan 9;67(1):308-319. doi: 10.1021/acs.jafc.8b05818. Epub 2018 Dec 27.

Abstract

The sustainable production of squalene has driven the development of microbial cell factories due to the limitation of low-yielding bioprocesses from plants and illegal harvesting shark liver. We report the metabolic engineering of Corynebacterium glutamicum to produce squalene from glucose. Combinatorial metabolic engineering strategies for precursor rebalancing, redox balancing, and blocking the competing pathway for the isopentenyl diphosphate availabilities were applied by repressing the target genes using the CRISPR interference. The best engineered strain using high-throughput fermentation produced squalene from glucose at 5.4 ± 0.3 mg/g dry cell weight (DCW) and 105.3 ± 3.0 mg/L, which was a 5.2-fold increase over the parental strain. In addition, flask cultivation of C. glutamicum overexpressing the dxs and idi genes with squalene synthase gene and repressing the idsA gene resulted in production of squalene at 5.8 ± 0.4 mg/g DCW and 82.8 ± 6.2 mg/L, which was a 3.4-fold increase over the parental strain.

摘要

由于植物生物过程产量低和非法采集鲨鱼肝脏,角鲨烯的可持续生产推动了微生物细胞工厂的发展。我们报告了利用谷氨酸棒状杆菌从葡萄糖生产角鲨烯的代谢工程。通过使用 CRISPR 干扰来抑制目标基因,应用了前体再平衡、氧化还原平衡和阻断异戊烯二磷酸可用性的竞争途径的组合代谢工程策略。使用高通量发酵的最佳工程菌株从葡萄糖生产角鲨烯,产量为 5.4 ± 0.3mg/g 干细胞重量(DCW)和 105.3 ± 3.0mg/L,比亲本菌株提高了 5.2 倍。此外,过表达角鲨烯合酶基因并抑制 idsA 基因的谷氨酸棒状杆菌摇瓶培养,可使角鲨烯产量达到 5.8 ± 0.4mg/g DCW 和 82.8 ± 6.2mg/L,比亲本菌株提高了 3.4 倍。

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