Lu Hui, Diao Hua, Xiao Yu-fang, Yu He-guo, Li Zheng, Shi Hui-juan
Department of Urology, Shanghai Jiatong University, China.
Zhonghua Nan Ke Xue. 2014 Nov;20(11):978-83.
To investigate the methods and solve the technical bottlenecks in the preparation of recombinant human protein hZP3 using the baculovirus expression system and pave the technical ground for the production and application of recombinant hZP3.
The recombinant vector pFASTBAC HTa-hZP3 was constructed and transferred to competent E. coli cells carrying bacmid to produce recombinant bacmid by homologous recombination. Sf9 cells were transfected with the recombinant bacmid to produce recombinant baculovirus. Full-length recombinant hZP3 (amino acids 1-424) and truncated recombinant hZP3 (amino acids 23-348) were expressed in the sf9 cells by infection with the recombinant baculovirus. The expression time of hZP3 was determined by Western blot and its purification was explored.
The recombinant bacmid and baculovirus were successfully constructed for expressing both the full-length and truncated hZP3. The maximal expression of recombinant hZP3 in the sf9 cells was achieved at 72-96 hours after baculovirus infection. Some of the recombinant hZP3 with His-tag could bind affinity matrix and got purified but most of the solubilized hZP3 passed through and the reasons remained unknown. Purified recombinant hZP3 labeled with Dylight Dye488 was able to bind human sperm.
It is feasible to express recombinant hZP3 in insect cells using the baculovirus system though the yield of hZP3 needs to be optimized. The methods for efficient enrichment and purification of recombinant hZP3 require further exploration.
研究利用杆状病毒表达系统制备重组人蛋白hZP3的方法,解决技术瓶颈,为重组hZP3的生产和应用奠定技术基础。
构建重组载体pFASTBAC HTa-hZP3,并将其转入携带杆粒的大肠杆菌感受态细胞中,通过同源重组产生重组杆粒。用重组杆粒转染Sf9细胞以产生重组杆状病毒。用重组杆状病毒感染Sf9细胞,表达全长重组hZP3(氨基酸1-424)和截短的重组hZP3(氨基酸23-348)。通过蛋白质印迹法确定hZP3的表达时间,并探索其纯化方法。
成功构建了用于表达全长和截短hZP3的重组杆粒和杆状病毒。杆状病毒感染后72-96小时,重组hZP3在Sf9细胞中的表达量达到最高。部分带有His标签的重组hZP3能与亲和基质结合并得到纯化,但大部分可溶的hZP3通过了亲和基质,原因不明。用DyLight Dye488标记的纯化重组hZP3能够与人精子结合。
利用杆状病毒系统在昆虫细胞中表达重组hZP3是可行的,不过hZP3的产量需要优化。重组hZP3高效富集和纯化的方法有待进一步探索。