异源的
合成生物学
突变体
生物
代谢工程
计算生物学
异源表达
拉伤
原噬菌体
基因
底盘
突变
基因表达
工业微生物学
化学
生物技术
生化工程
细胞生物学
遗传学
山寨
基因簇
蛋白质工程
生物化学
代谢物
淀粉酶
基因表达调控
作者
Jinfang Zhang,Xinyue Li,Maojun Wang,Shaodong Ren,Mei Li,Yihan Liu,Fuping Lu,Qinggang Li,Yu Li
标识
DOI:10.1021/acs.jafc.5c04227
摘要
With the development of synthetic biology and biotechnology, chassis engineering has become the main means of industrial protein production, but it has been limited by the lack of efficient gene editing methods and effective engineering strategies. Bacillus amyloliquefaciens shows potential for expressing heterologous proteins, but its cells undergo early autolysis, hindering further application. In this study, an autolysis-related prophage gene cluster was rationally deleted by establishing an efficient CRISPR-nCas9 editing process, and the prophage mutant strain was constructed, which prevented cell lysis. Based on the prophage mutant strain, we screened secondary metabolite biosynthetic gene clusters that hindered the expression of heterologous proteins, and we made reasonable deletions to further improve their efficient expression. Finally, an optimized yield of acid-stable α amylase (2,46,089.21 U/mL) was obtained in a 5-L fed-batch fermentation. Therefore, we successfully constructed an ideal candidate strain for the expression of heterologous proteins, which provides an important research basis for the development of more chassis strains.
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