首页> 外文会议>Conference on vaccine technology VI >COMPARATIVE TRANSCRIPTOME ANALYSIS OF A TRICHOPLUSIA Nl CELL LINE REVEALS DISTINCT HOST RESPONSES TO INTRACELLULAR AND SECRETED PROTEIN PRODUCTS EXPRESSED BY RECOMBINANT BACULOVIRUSES
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COMPARATIVE TRANSCRIPTOME ANALYSIS OF A TRICHOPLUSIA Nl CELL LINE REVEALS DISTINCT HOST RESPONSES TO INTRACELLULAR AND SECRETED PROTEIN PRODUCTS EXPRESSED BY RECOMBINANT BACULOVIRUSES

机译:毛滴虫N1细胞株揭示不同宿主对重组杆状病毒表达的细胞内和分泌蛋白产物的比较转录分析

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The baculovirus insect cell expression system has become a firmly established production platform in biotechnology. Various complex proteins, multi-subunit particles including veterinary and human vaccines are manufactured with this system on a commercial scale. Apart from baculovirus infected Spodoptera frugiperda (Sf9) cells, the Trichoplusia ni (HighFive) cell line is alternatively used as host organism. In this study, we explored the protein production capabilities of Tnms42 insect cells, a new derivative of HighFive, which is free o latent nodavirus infection. As a model system, a cytosolic (mCherry) and a secreted (hemagglutinin) protein were overexpressed in Tnms42 cells. The response of the host cells was followed in a time course experiment over the infection cycle by comparative transcriptome analysis (RNA-seq). As expected, the baculovirus infection per se had a massive impact on the host cell transcriptome, which was observed by the huge total number of differentially expressed transcripts (>14,000). Despite this severe overall cellular reaction, a specific response could be clearly attributed to the overexpression of secreted hemagglutinin, revealing limits in the secretory capacity of the host cell. About 400 significantly regulated transcripts were identified and assigned to biochemical pathways and gene ontology (GO) categories, all related to protein processing, folding and response to unfolded protein. The identification of relevant target genes will serve to design specific virus engineering concepts for improving the yield of proteins that are dependent on the secretory pathway.
机译:杆状病毒昆虫细胞表达系统已成为生物技术中一个牢固建立的生产平台。用该系统以商业规模生产各种复杂的蛋白质,包括兽用和人用疫苗的多亚基颗粒。除杆状病毒感染的节食贪夜蛾(Sf9)细胞外,毛滴虫(HighFive)细胞系也可以用作宿主生物。在这项研究中,我们探索了Tnms42昆虫细胞的蛋白质生产能力,该昆虫细胞是HighFive的一种新衍生物,它可以自由感染潜伏性诺德病毒。作为模型系统,胞质(mCherry)和分泌的(血凝素)蛋白在Tnms42细胞中过表达。通过比较转录组分析(RNA-seq),在整个感染周期的时程实验中追踪宿主细胞的应答。如预期的那样,杆状病毒感染本身对宿主细胞的转录组产生了巨大的影响,这通过大量差异表达的转录本(> 14,000)观察到。尽管发生了这种严重的总体细胞反应,但特定的反应显然可以归因于分泌的血凝素的过表达,从而揭示了宿主细胞分泌能力的局限性。鉴定出约400个受调控的转录本,并将其分配到生化途径和基因本体(GO)类别,所有这些都与蛋白质加工,折叠和对未折叠蛋白质的反应有关。相关靶基因的鉴定将用于设计特定的病毒工程概念,以提高依赖于分泌途径的蛋白质的产量。

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