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Junonia coenia Densovirus-Based Vectors for Stable Transgene Expression in Sf9 Cells: Influence of the Densovirus Sequences on Genomic Integration

机译:在Sf9细胞中稳定转基因表达的基于Junonia coenia Densovirus的载体:Densovirus序列对基因组整合的影响。

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摘要

The invertebrate parvovirus Junonia coenia densovirus (JcDNV) shares similarities with terminal hairpins and nonstructural (NS) protein activities of adeno-associated virus (AAV) despite their evolutionary divergence (B. Dumas, M. Jourdan, A. M. Pascaud, and M. Bergoin, Virology, 191:202-222, 1992, and C. Ding, M. Urabe, M. Bergoin, and R. M. Kotin, J. Virol. 76:338-345, 2002). We demonstrate here that persistent transgene expression in insect cells results from stable integration of transfected JcDNV-derived vectors into the host genome. To assess the integrative properties of JcDNV vectors, the green fluorescent protein (GFP) gfp marker gene was fused in frame into the major open reading frame (ORF1) of the viral sequence under the control of the P9 capsid protein promoter. In addition, the influence of the nonstructural proteins on the posttransfection maintenance of the vectors was examined by interruption of one or all three NS ORFs. Following transfection of Sf9 cells with each of the JcDNV constructs, clones showing persistent GFP expression were isolated. Structural analyses revealed that the majority of the JcDNV plasmid sequence was integrated into the genome of the fluorescent clones. Integration was observed whether or not NS proteins were expressed. However, the presence of NS genes in the constructs greatly influenced the number of integrated copies and their distribution in the host genome. Disruption of NS genes expression resulted in integration of head-to-tail concatemers at multiple sites within the genome. Further analyses demonstrated that the cis JcDNV 5′ inverted terminal repeat region was the primary site of recombination. Sequence analyses of integration junctions showed rearrangements of both flanking and internal sequences for most integrations. These findings demonstrate that JcDNV vectors integrate into insect cells in a manner similar to AAV plasmids in mammalian cells.
机译:无脊椎动物细小病毒Junonia coenia densovirus(JcDNV)与腺相关病毒(AAV)的末端发夹和非结构(NS)蛋白质活性具有相似之处,尽管它们在进化上有所不同(B. Dumas,M。Jourdan,AM Pascaud和M. Bergoin,病毒学,191:202-222,1992,和C.Ding,M.Urabe,M.Bergoin和RM Kotin,J.Virol.76:338-345,2002)。我们在这里证明昆虫细胞中持久的转基因表达是由转染的JcDNV衍生的载体稳定整合到宿主基因组中产生的。为了评估JcDNV载体的整合特性,在P9衣壳蛋白启动子的控制下,将绿色荧光蛋白(GFP)gfp标记基因框内融合到病毒序列的主要开放阅读框(ORF1)中。另外,通过中断一个或全部三个NS ORF来检查非结构蛋白对载体转染后维持的影响。用每种JcDNV构建体转染Sf9细胞后,分离出显示持久性GFP表达的克隆。结构分析表明,大多数JcDNV质粒序列已整合到荧光克隆的基因组中。观察是否表达NS蛋白的整合。然而,NS基因在构建体中的存在极大地影响了整合拷贝的数量及其在宿主基因组中的分布。 NS基因表达的破坏导致头尾连接蛋白在基因组内多个位点的整合。进一步的分析表明,顺式JcDNV 5'反向末端重复区域是重组的主要位点。整合连接的序列分析显示,对于大多数整合而言,侧翼序列和内部序列均发生了重排。这些发现表明,JcDNV载体以类似于哺乳动物细胞中的AAV质粒的方式整合到昆虫细胞中。

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