烟草蚀刻病毒
大肠杆菌
融合蛋白
蛋白酶
生物化学
连接器
水蛭素
劈理(地质)
串联亲和纯化
生物反应器
生物
肽
亲和层析
重组DNA
化学
凝血酶
酶
病毒
基因
病毒学
免疫学
计算机科学
断裂(地质)
植物
马铃薯Y病毒
血小板
操作系统
古生物学
植物病毒
作者
Qinghua Tian,Ping Zhang,Zhan Gao,Hengli Li,Zhengli Bai,Shuhua Tan
标识
DOI:10.1080/10826068.2017.1286600
摘要
Fusion expression provides an effective means for the biosynthesis of longer peptides in Escherichia coli. However, the commonly used fusion tags are primarily suitable for laboratory scale applications due to the high cost of commercial affinity resins. Herein, a novel approach exploiting hirudin as a multipurpose fusion tag in combination with tobacco etch virus (TEV) protease cleavage has been developed for the efficient and cost-effective production of a 43-amino acid model peptide lunasin in E. coli at preparative scale. A fusion gene which allows for lunasin to be N-terminally fused to the C-terminus of hirudin through a flexible linker comprising a TEV protease cleavage site was designed and cloned in a secretion vector pTASH. By cultivation in a 7-L bioreactor, the fusion protein was excreted into the culture medium at a high yield of ~380 mg/L, which was conveniently recovered and purified by inexpensive HP20 hydrophobic chromatography at a recovery rate of ~80%. After polishing and cleavage with TEV protease, the finally purified lunasin was obtained with ≥95% purity and yield of ~86 mg/L culture medium. Conclusively, this hirudin tagging strategy is powerful in the production of lunasin and could be applicable for the production of other peptides at preparative scale.
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