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首页> 外文期刊>Viruses >Evaluation of Trichodysplasia Spinulosa-Associated Polyomavirus Capsid Protein as a New Carrier for Construction of Chimeric Virus-Like Particles Harboring Foreign Epitopes
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Evaluation of Trichodysplasia Spinulosa-Associated Polyomavirus Capsid Protein as a New Carrier for Construction of Chimeric Virus-Like Particles Harboring Foreign Epitopes

机译:棘状增生相关多瘤病毒衣壳蛋白的评估作为构建携带外来抗原表位的嵌合病毒样颗粒的新载体。

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Recombinant virus-like particles (VLPs) represent a promising tool for protein engineering. Recently, trichodysplasia spinulosa-associated polyomavirus (TSPyV) viral protein 1 (VP1) was efficiently produced in yeast expression system and shown to self-assemble to VLPs. In the current study, TSPyV VP1 protein was exploited as a carrier for construction of chimeric VLPs harboring selected B and T cell-specific epitopes and evaluated in comparison to hamster polyomavirus VP1 protein. Chimeric VLPs with inserted either hepatitis B virus preS1 epitope DPAFR or a universal T cell-specific epitope AKFVAAWTLKAAA were produced in yeast Saccharomyces cerevisiae. Target epitopes were incorporated either at the HI or BC loop of the VP1 protein. The insertion sites were selected based on molecular models of TSPyV VP1 protein. The surface exposure of the insert positions was confirmed using a collection of monoclonal antibodies raised against the intact TSPyV VP1 protein. All generated chimeric proteins were capable to self-assemble to VLPs, which induced a strong immune response in mice. The chimeric VLPs also activated dendritic cells and T cells as demonstrated by analysis of cell surface markers and cytokine production profiles in spleen cell cultures. In conclusion, TSPyV VP1 protein represents a new potential carrier for construction of chimeric VLPs harboring target epitopes.
机译:重组病毒样颗粒(VLP)代表了蛋白质工程的有前途的工具。近来,在酵母表达系统中有效产生了毛细支气管炎相关性多螺旋体相关多瘤病毒(TSPyV)病毒蛋白1(VP1),并显示出它可以自组装成VLP。在当前的研究中,TSPyV VP1蛋白被用作载体,用于构建携带选定的B细胞和T细胞特异性表位的嵌合VLP,并与仓鼠多瘤病毒VP1蛋白进行比较。插入有乙型肝炎病毒preS1表位DPAFR或通用T细胞特异性表位AKFVAAWTLKAAA的嵌合VLP是在酵母酵母中产生的。将目标表位掺入VP1蛋白的HI或BC环。根据TSPyV VP1蛋白的分子模型选择插入位点。使用针对完整TSPyV VP1蛋白的单克隆抗体的收集,证实了插入位置的表面暴露。所有产生的嵌合蛋白都能够自组装为VLP,从而在小鼠中诱导强烈的免疫反应。嵌合VLP还激活树突状细胞和T细胞,如通过脾细胞培养物中细胞表面标志物和细胞因子产生概况的分析所证实的。总之,TSPyV VP1蛋白代表了构建具有目标表位的嵌合VLP的新潜在载体。

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