Grass carp reovirus(GCRV),a disaster agent to aquatic animals,belongs to Genus Aquareovirus of family Reoviridea.Sequence analysis revealed GCRV genome segment 8(s8) was 1 296 bp nucleotides in length encoding an inne...Grass carp reovirus(GCRV),a disaster agent to aquatic animals,belongs to Genus Aquareovirus of family Reoviridea.Sequence analysis revealed GCRV genome segment 8(s8) was 1 296 bp nucleotides in length encoding an inner capsid protein VP6 of about 43kDa.To obtain in vitro non-fusion expression of a GCRV VP6 protein containing a molecular of fluorescence reporter,the recombinant baculovirus,which contained the GCRVs8 and eGFP(enhanced green fluorescence protein) genes,was constructed by using the Bac-to-Bac insect expression system.In this study,the whole GCRVs8 and eGFP genes,amplified by PCR,were constructed into a pFastBacDual vector under polyhedron(PH) and p10 promoters,respectively.The constructed dual recombinant plasmid(pFbDGCRVs8/eGFP) was transformed into DH10Bac cells to obtain recombinant Bacmid(AcGCRVs8/eGFP) by transposition.Finally,the recombinant bacluovirus(vAcGCRVs8/eGFP) was obtained from transfected Sf9 insect cells.The green fluorescence that was expressed by transfected Sf9 cells was initially observed 3 days post transfection,and gradually enhanced and extended around 5 days culture in P1(Passage1) stock.The stable high level expression of recombinant protein was observed in P2 and subsequent passage budding virus(BV) stock.Additionally,PCR amplification from P1 and amplified P2 BV stock further confirmed the validity of the dual-recombinant baculovirus.Our results provide a foundation for expression and assembly of the GCRV structural protein in vitro.展开更多
将增强的绿色荧光蛋白 ( enhanced green fluorescent protein,EGFP)基因插在 HCMV( hum ancytom egolovirus)启动子下游 ,构建了表达质粒 p CA13 - e G,用脂质体 L ipofectin介导分别转染 He L a细胞、Vero细胞 ,仅通过细胞传代 ,就获...将增强的绿色荧光蛋白 ( enhanced green fluorescent protein,EGFP)基因插在 HCMV( hum ancytom egolovirus)启动子下游 ,构建了表达质粒 p CA13 - e G,用脂质体 L ipofectin介导分别转染 He L a细胞、Vero细胞 ,仅通过细胞传代 ,就获得了能稳定高效表达 EGFP的绿色细胞 .比较发现 ,质粒 p CA13 - e G转染后 ,产生能高效表达 EGFP的 He L a细胞其比率高于 Vero细胞 ;EGFP高效表达对 Vero细胞的毒性大于对 He L a细胞的毒性 .本研究表明 ,绿色细胞轮廓清晰 ,由于其特有的性质 ,在用于细胞的形态观察、细胞分裂等研究时会有所作为 .展开更多
从人血液中提取总DNA,利用PCR技术扩增人肝细胞再生增生因子基因,将其插入表达载体pEGFP-C1的多克隆位点中,构建增强绿色荧光蛋白(enhanced green fluorescence protein gene,EGFP)和人肝细胞再生增强因子(human augmenter of liver reg...从人血液中提取总DNA,利用PCR技术扩增人肝细胞再生增生因子基因,将其插入表达载体pEGFP-C1的多克隆位点中,构建增强绿色荧光蛋白(enhanced green fluorescence protein gene,EGFP)和人肝细胞再生增强因子(human augmenter of liver regeneration gene,ALR)融合基因表达载体pEGFP/ALR,并将其转染Hela细胞系,用含G 418的DMEM/F12培养液筛选转基因细胞,然后利用PCR和聚丙烯酰胺凝胶电泳检测转基因细胞中ALR基因的存在及其表达,用荧光显微镜检测EGFP基因的表达.结果显示:得到了构建正确的EGFP和ALR融合基因表达载体;在转基因细胞中,PCR扩增得到1.7 Kb的ALR条带,蛋白电泳得到57 KD大小条带,与ALR和EGFP融合蛋白大小相符;荧光显微镜下观察到发绿色荧光的Hela细胞.在转基因细胞中,EGFP和ALR同时存在并表达,绿色荧光蛋白可作为报告基因指示目的基因的表达,从而简化了目的基因繁琐的检测手段.展开更多
基金National Natural Science Foundation of China (Grant Nos 30470074,30671615)Innovation Project of the Chinese Academy of Sciences (KSCX2-YW-N-021).
文摘Grass carp reovirus(GCRV),a disaster agent to aquatic animals,belongs to Genus Aquareovirus of family Reoviridea.Sequence analysis revealed GCRV genome segment 8(s8) was 1 296 bp nucleotides in length encoding an inner capsid protein VP6 of about 43kDa.To obtain in vitro non-fusion expression of a GCRV VP6 protein containing a molecular of fluorescence reporter,the recombinant baculovirus,which contained the GCRVs8 and eGFP(enhanced green fluorescence protein) genes,was constructed by using the Bac-to-Bac insect expression system.In this study,the whole GCRVs8 and eGFP genes,amplified by PCR,were constructed into a pFastBacDual vector under polyhedron(PH) and p10 promoters,respectively.The constructed dual recombinant plasmid(pFbDGCRVs8/eGFP) was transformed into DH10Bac cells to obtain recombinant Bacmid(AcGCRVs8/eGFP) by transposition.Finally,the recombinant bacluovirus(vAcGCRVs8/eGFP) was obtained from transfected Sf9 insect cells.The green fluorescence that was expressed by transfected Sf9 cells was initially observed 3 days post transfection,and gradually enhanced and extended around 5 days culture in P1(Passage1) stock.The stable high level expression of recombinant protein was observed in P2 and subsequent passage budding virus(BV) stock.Additionally,PCR amplification from P1 and amplified P2 BV stock further confirmed the validity of the dual-recombinant baculovirus.Our results provide a foundation for expression and assembly of the GCRV structural protein in vitro.
文摘将增强的绿色荧光蛋白 ( enhanced green fluorescent protein,EGFP)基因插在 HCMV( hum ancytom egolovirus)启动子下游 ,构建了表达质粒 p CA13 - e G,用脂质体 L ipofectin介导分别转染 He L a细胞、Vero细胞 ,仅通过细胞传代 ,就获得了能稳定高效表达 EGFP的绿色细胞 .比较发现 ,质粒 p CA13 - e G转染后 ,产生能高效表达 EGFP的 He L a细胞其比率高于 Vero细胞 ;EGFP高效表达对 Vero细胞的毒性大于对 He L a细胞的毒性 .本研究表明 ,绿色细胞轮廓清晰 ,由于其特有的性质 ,在用于细胞的形态观察、细胞分裂等研究时会有所作为 .
文摘从人血液中提取总DNA,利用PCR技术扩增人肝细胞再生增生因子基因,将其插入表达载体pEGFP-C1的多克隆位点中,构建增强绿色荧光蛋白(enhanced green fluorescence protein gene,EGFP)和人肝细胞再生增强因子(human augmenter of liver regeneration gene,ALR)融合基因表达载体pEGFP/ALR,并将其转染Hela细胞系,用含G 418的DMEM/F12培养液筛选转基因细胞,然后利用PCR和聚丙烯酰胺凝胶电泳检测转基因细胞中ALR基因的存在及其表达,用荧光显微镜检测EGFP基因的表达.结果显示:得到了构建正确的EGFP和ALR融合基因表达载体;在转基因细胞中,PCR扩增得到1.7 Kb的ALR条带,蛋白电泳得到57 KD大小条带,与ALR和EGFP融合蛋白大小相符;荧光显微镜下观察到发绿色荧光的Hela细胞.在转基因细胞中,EGFP和ALR同时存在并表达,绿色荧光蛋白可作为报告基因指示目的基因的表达,从而简化了目的基因繁琐的检测手段.