谷氨酸棒杆菌
生物制造
清脆的
焊剂(冶金)
生物信息学
脯氨酸
计算生物学
生物
生物化学
合成生物学
海藻糖
代谢工程
基因
化学
氨基酸
遗传学
有机化学
作者
Jiao Liu,Moshi Liu,Shi Tang,Guannan Sun,Ning Gao,Xiaojia Zhao,Xuan Guo,Xiaomeng Ni,Qianqian Yuan,Jinhui Feng,Zhemin Liu,Yanmei Guo,Jiuzhou Chen,Yu Wang,Ping Zheng,Jibin Sun
标识
DOI:10.1038/s41467-022-28501-7
摘要
Development of hyperproducing strains is important for biomanufacturing of biochemicals and biofuels but requires extensive efforts to engineer cellular metabolism and discover functional components. Herein, we optimize and use the CRISPR-assisted editing and CRISPRi screening methods to convert a wild-type Corynebacterium glutamicum to a hyperproducer of L-proline, an amino acid with medicine, feed, and food applications. To facilitate L-proline production, feedback-deregulated variants of key biosynthetic enzyme γ-glutamyl kinase are screened using CRISPR-assisted single-stranded DNA recombineering. To increase the carbon flux towards L-proline biosynthesis, flux-control genes predicted by in silico analysis are fine-tuned using tailored promoter libraries. Finally, an arrayed CRISPRi library targeting all 397 transporters is constructed to discover an L-proline exporter Cgl2622. The final plasmid-, antibiotic-, and inducer-free strain produces L-proline at the level of 142.4 g/L, 2.90 g/L/h, and 0.31 g/g. The CRISPR-assisted strain development strategy can be used for engineering industrial-strength strains for efficient biomanufacturing.
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