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The structure of avian polyomavirus reveals variably sized capsids, non-conserved inter-capsomere interactions, and a possible location of the minor capsid protein VP4.

机译:禽多瘤病毒的结构显示衣壳大小不一,衣壳间不保守的相互作用以及次要衣壳蛋白VP4的可能位置。

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Avian polyomavirus (APV) causes a fatal, multi-organ disease among several bird species. Using cryogenic electron microscopy and other biochemical techniques, we investigated the structure of APV and compared it to that of mammalian polyomaviruses, particularly JC polyomavirus and simian virus 40. The structure of the pentameric major capsid protein (VP1) is mostly conserved; however, APV VP1 has a unique, truncated C-terminus that eliminates an intercapsomere-connecting beta-hairpin observed in other polyomaviruses. We postulate that the terminal beta-hairpin locks other polyomavirus capsids in a stable conformation and that absence of the hairpin leads to the observed capsid size variation in APV. Plug-like density features were observed at the base of the VP1 pentamers, consistent with the known location of minor capsid proteins VP2 and VP3. However, the plug density is more prominent in APV and may include VP4, a minor capsid protein unique to bird polyomaviruses.
机译:禽多瘤病毒(APV)在几种鸟类中引起致命的多器官疾病。使用低温电子显微镜和其他生化技术,我们研究了APV的结构并将其与哺乳动物多瘤病毒,特别是JC多瘤病毒和猿猴病毒40进行了比较。五聚体主要衣壳蛋白(VP1)的结构大部分是保守的;但是,APV VP1具有独特的,截短的C末端,可消除在其他多瘤病毒中观察到的连接帽间的β-发夹结构。我们假设末端β-发夹将其他多瘤病毒衣壳锁定在稳定的构象中,而发夹的缺失会导致在APV中观察到的衣壳大小变化。在VP1五聚体的底部观察到了塞状密度特征,与次要衣壳蛋白VP2和VP3的已知位置一致。但是,塞密度在APV中更为突出,可能包括VP4,这是禽多瘤病毒特有的次要衣壳蛋白。

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