Wang Gang, Li Qiang, Xu Dikai, Cui Mingxin, Sun Xiao, Xu Yanyan, Wang Wenya
Key Laboratory for Industrial Biocatalysis, Ministry of Education, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
Key Laboratory for Industrial Biocatalysis, Ministry of Education, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
J Biotechnol. 2014 Nov 10;189:72-5. doi: 10.1016/j.jbiotec.2014.08.039. Epub 2014 Sep 2.
It is desirable to build a universal and efficient protein expression system for wild-type prokaryotic strains in biotechnology industry and the outstanding T7 expression system could be a good candidate. However, the current utilization of T7 system depends on the specific DE3 lysogenic hosts, which severely limits its application in wild-type strains. In this study, a host-independent T7 expression system without relying on DE3 lysogenic hosts to provide T7 RNA Polymerase was developed. T7 RNA Polymerase gene (Gene1) and T7 Promoter were successfully integrated into a single plasmid with the regulation of proper antisense RNA to limit T7 RNA Polymerase expression at a non-lethal level. This host-independent T7 expression system realized efficient protein expression in 4 non-DE3 Escherichia coli strains and a wild-type Sinorhizobium strain TH572.
在生物技术产业中,为野生型原核菌株构建一个通用且高效的蛋白质表达系统是很有必要的,而出色的T7表达系统可能是一个不错的选择。然而,目前T7系统的应用依赖于特定的DE3溶原宿主菌,这严重限制了其在野生型菌株中的应用。在本研究中,开发了一种不依赖宿主的T7表达系统,该系统不依赖DE3溶原宿主菌来提供T7 RNA聚合酶。T7 RNA聚合酶基因(Gene1)和T7启动子在合适的反义RNA调控下成功整合到单个质粒中,以将T7 RNA聚合酶的表达限制在非致死水平。这种不依赖宿主的T7表达系统在4种非DE3大肠杆菌菌株和野生型中华根瘤菌菌株TH572中实现了高效的蛋白质表达。