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Enhanced transgene expression in mammalian cells by recombinant baculovirus vector containing bovine papillomavirus type 1 replication elements

机译:含有牛乳头瘤病毒1型复制元件的重组杆状病毒载体增强了哺乳动物细胞中的转基因表达

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Background The baculovirus Autographa californica multiple nucleopolyhedrovirus has been widely explored as a transgene expression vector. Further improvement of the expression of the transgene is important for its application. Methods Bovine papillomavirus type 1 (BPV-1) cis-element upstream regulatory region (URR) and trans-elements E1, E2, were inserted into the baculovirus genome. The expression of reporter gene, enhanced green fluorescent protein gene (EGFP), and the persistence of viral genome was compared in several mammalian cell lines after virus transduction. The cytotoxicity of the recombinant viruses was also evaluated. Results The recombinant baculovirus containing URR and E1, E2 genes showed significantly increased expression of EGFP in all cell lines tested, including HEK293, HeLa, BHK-21, CNE, CHO and MDCK cells. In HEK293 cells, the total production of EGFP was approximately five-fold higher than the control. The genome of virus with BPV-1 elements also persisted better than the control virus during the first few days post transduction. No obvious cytotoxicity was observed. Conclusions The coexistence of BPV-1 URR and E1, E2 was essential and sufficient to improve the performance of baculovirus with respect to mediating gene expression in various mammalian cells without major cytotoxicity. The results obtained in the present study facilitate the application of baculovirus as an efficient transgene vehicle for protein production and gene delivery.
机译:背景技术杆状病毒加州致癌的苜蓿多核多角体病毒已经作为转基因表达载体被广泛研究。转基因表达的进一步改善对其应用很重要。方法将1型牛乳头瘤病毒(BPV-1)顺式元件上游调控区(URR)和转座子E1,E2插入杆状病毒基因组。在病毒转导后,在几种哺乳动物细胞系中比较了报告基因的表达,增强的绿色荧光蛋白基因(EGFP)和病毒基因组的持久性。还评估了重组病毒的细胞毒性。结果含有URR和E1,E2基因的重组杆状病毒在所有测试的细胞系(包括HEK293,HeLa,BHK-21,CNE,CHO和MDCK细胞)中均显示EGFP的表达显着增加。在HEK293细胞中,EGFP的总产量比对照高约五倍。在转导后的最初几天中,具有BPV-1元素的病毒的基因组还比对照病毒具有更好的持久性。没有观察到明显的细胞毒性。结论BPV-1 URR与E1,E2的共存对于介导各种哺乳动物细胞中基因表达的杆状病毒的性能至关重要,并足以提高其性能,而没有主要的细胞毒性。在本研究中获得的结果促进杆状病毒作为蛋白质生产和基因传递的有效转基因载体的应用。

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