首页> 美国卫生研究院文献>Journal of Virology >Analysis of Capsid Formation of Human Polyomavirus JC (Tokyo-1 Strain) by a Eukaryotic Expression System: Splicing of Late RNAs Translation and Nuclear Transport of Major Capsid Protein VP1 and Capsid Assembly
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Analysis of Capsid Formation of Human Polyomavirus JC (Tokyo-1 Strain) by a Eukaryotic Expression System: Splicing of Late RNAs Translation and Nuclear Transport of Major Capsid Protein VP1 and Capsid Assembly

机译:真核表达系统分析人多瘤病毒JC(Tokyo-1株)的衣壳形成:后期RNA的剪接主要衣壳蛋白VP1的翻译和核转运以及衣壳装配。

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摘要

Human polyomavirus JC (JCV) can encode the three capsid proteins VP1, VP2, and VP3, downstream of the agnoprotein in the late region. JCV virions are identified in the nucleus of infected cells. In this study, we have elucidated unique features of JCV capsid formation by using a eukaryotic expression system. Structures of JCV polycistronic late RNAs (M1 to M4 and possibly M5 and M6) generated by alternative splicing were determined. VP1 would be synthesized from M2 RNA, and VP2 and VP3 would be synthesized from M1 RNA. The presence of the open reading frame of the agnoprotein or the leader sequence (nucleotides 275 to 409) can decrease the expression level of VP1. VP1 was efficiently transported to the nucleus in the presence of VP2 and VP3 but distributed both in the cytoplasm and in the nucleus in their absence. Mutation analysis indicated that inefficiency in nuclear transport of VP1 is due to the unique structure in the N-terminal sequence, KRKGERK. Within the nucleus, VP1 was localized discretely and identified as speckles in the presence of VP2 and VP3 but distributed diffusely in their absence. These results suggest that VP1 was efficiently transported to the nucleus and localized in the discrete subnuclear regions, possibly with VP2 and VP3. By electron microscopy, recombinant virus particles were identified in the nucleus, and their intranuclear distribution was consistent with distribution of speckles. This system provides a useful model with which to understand JCV capsid formation and the structures and functions of the JCV capsid proteins.
机译:人多瘤病毒JC(JCV)可以在晚期区域agnoprotein的下游编码三个衣壳蛋白VP1,VP2和VP3。在感染的细胞核中鉴定出JCV病毒体。在这项研究中,我们已经通过使用真核表达系统阐明了JCV衣壳形成的独特特征。确定了JCV多顺反子晚期RNA的结构(M1至M4,可能还有M5和M6),该结构是由可变剪接产生的。 VP1将由M2 RNA合成,而VP2和VP3将由M1 RNA合成。失明蛋白或前导序列(核苷酸275至409)的开放阅读框的存在可降低VP1的表达水平。在存在VP2和VP3的情况下,VP1可以有效地转运到细胞核,但是在不存在的情况下,VP1既分布在细胞质中,又分布在细胞核中。突变分析表明VP1的核转运效率低下是由于N末端序列KRKGERK中的独特结构所致。在细胞核内,VP1离散定位并在存在VP2和VP3的情况下被识别为斑点,但在它们不存在的情况下散布分布。这些结果表明,VP1被有效地转运到细胞核并定位在离散的亚核区域,可能与VP2和VP3结合。通过电子显微镜,在细胞核中鉴定出重组病毒颗粒,其核内分布与斑点分布一致。该系统提供了有用的模型,通过该模型可以了解JCV衣壳蛋白的形成以及JCV衣壳蛋白的结构和功能。

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