摘要
羟基酪醇是重要精细化学品,作为天然抗氧化剂被广泛应用于食品、医药领域。利用合成生物学技术生产羟基酪醇具有重要意义。本文克隆并功能鉴定了来源于大肠杆菌EscherichiacoliBL21的羟化酶编码基因HpaBC,结果表明该酶的两个亚基均能成功表达并能催化酪醇生成羟基酪醇。通过CRISPR-Cas9技术将由tac启动子调控的HpaBC基因表达盒整合到前期构建的酪醇高产菌株YMG5A*R基因组中,同时删除副产物乙酸的合成途径,获得大肠杆菌代谢工程菌株YMGRD1H1。摇瓶发酵实验结果表明,重组菌株能够直接利用葡萄糖生产羟基酪醇,产量达到1.81g/L,同时发现几乎没有副产物积累。5L发酵罐规模的流加补料发酵实验表明,羟基酪醇最高产量达到2.95 g/L,是目前文献报道以葡萄糖从头合成羟基酪醇的最高水平。通过系统改造大肠杆菌,实现了羟基酪醇的大量合成,为进一步构建具有工业应用潜力的羟基酪醇细胞工厂奠定了基础,也为拓展芳香族化合物的微生物制造路线提供了有益的参考。
Hydroxytyrosol is an important fine chemical and is widely used in food and medicine as a natural antioxidant.Production of hydroxytyrosol through synthetic biology is of important significance. Here we cloned and functionally characterized a hydroxylase encoding gene HpaBC from Escherichia coli BL21, and both subunits of this enzyme can be successfully expressed to convert the tyrosol into hydroxytyrosol. A HpaBC gene integration expression cassette under the tac promoter was constructed, and integrated into the genome of a tyrosol hyper-producing E. coli YMG5 A*R using CRISPR-Cas9 technology. Meanwhile, the pathway for production of acetic acid was deleted, resulting in a recombinant strain YMGRD1 H1. Shake flask fermentation showed that strain YMGRD1 H1 can directly use glucose to produce hydroxytyrosol,reaching a titer of 1.81 g/L, and nearly no by-products were detected. A titer of 2.95 g/L was achieved in a fed-batch fermentation conducted in a 5 L fermenter, which is the highest titer for the de novo synthesis of hydroxytyrosol from glucose reported to date. Production of hydroxytyrosol by engineered E. coli lays a foundation for further construction of hydroxytyrosol cell factories with industrial application potential, adding another example for microbial manufacturing of aromatic compounds.
作者
刘春筱
夏媛媛
齐丽娜
杨海泉
陈磊
沈微
陈献忠
Chunxiao Liu;Yuanyuan Xia;Lina Qi;Haiquan Yang;Lei Chen;Wei Shen;Xianzhong Chen(Key Laboratory of Industrial Biotechnology,Ministry of Education,Jiangnan University,Wuxi 214122,Jiangsu,China;School of Biotechnology,Jiangnan University,Wuxi 214122,Jiangsu,China)
出处
《生物工程学报》
CAS
CSCD
北大核心
2021年第12期4243-4253,共11页
Chinese Journal of Biotechnology
基金
江苏省自然科学基金(No.BK20171138)资助。