谷氨酸棒杆菌
基因组编辑
DNA连接酶
同源重组
清脆的
基因组工程
非同源性末端接合
基因组
计算生物学
生物
基因
代谢工程
遗传学
作者
Fayu Yang,Nan Wei,Zhihao Zhang,Sheng Wang,Yingchun Liu,Lifang Zhang,Feng Gu
标识
DOI:10.1007/s10529-021-03195-x
摘要
Corynebacterium glutamicum (C. glutamicum) has been harnessed for multi-million-ton scale production of glutamate and lysine. To further increase its amino acid production for fermentation industry, there is an acute need to develop next-generation genome manipulation tool for its metabolic engineering. All reported methods for genome editing triggered with CRISPR-Cas are based on the homologous recombination. While, it requires the generation of DNA repair template, which is a bottle-neck for its extensive application.In this study, we developed a method for gene knockout in C. glutamicum via CRISPR-Cpf1-coupled non-homologous end-joining (CC-NHEJ). Specifically, CRISPR-Cpf1 introduced double-strand breaks in the genome of C. glutamicum, which was further repaired by ectopically expressed two NHEJ key proteins (Mycobacterium tuberculosis Ku and ligase D). We provide the proof of concept, for CC-NHEJ, by the successful knockout of the crtYf/e gene in C. glutamicum with the efficiency of 22.00 ± 5.56%, or something like that.The present study reported a novel genome manipulation method for C. glutamicum.
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