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首次在中欧地区检测到并对普通鼻蝠多瘤病毒进行基因组分析。

First detection and genome analysis of simple nosed bat polyomaviruses in Central Europe.

机构信息

Veterinary Medical Research Institute, Eötvös Lóránd Research Network (ELKH), Hungária krt. 21, H-1143 Budapest, Hungary.

UCD National Virus Reference Laboratory, University College Dublin, Belfield, Dublin 4, Ireland; Japan Initiative for World-leading Vaccine Research and Development Centers, Hokkaido University, Institute for Vaccine Research and Development, Hokkaido, Japan.

出版信息

Infect Genet Evol. 2023 Aug;112:105439. doi: 10.1016/j.meegid.2023.105439. Epub 2023 Apr 25.

Abstract

Polyomaviruses (PyVs) are known to infect a diverse range of vertebrate host species. We report the discovery of PyVs in vesper bats (family Vespertilionidae) from sampling in Central Europe. Seven partial VP1 sequences from different PyVs were detected in samples originating from six distinct vesper bat species. Using a methodology based on conserved segments within the major capsid virus protein 1 (VP1) among known PyVs, the complete genomes of two different novel bat PyVs were determined. The genetic distances of the large T antigen coding sequences from these PyVs compared to previously-described bat PyVs exceeded 15% meriting classification as representatives of two novel PyV species: Alphapolyomavirus epserotinus and Alphapolyomavirus myodaubentonii. Phylogenetic analysis revealed that both belong to the genus Alphapolyomavirus and clustered together with high confidence in clades including other bat alphapolyomaviruses reported from China, South America and Africa. In silico protein modeling of the VP1 subunits and capsid pentamers, and electrostatic surface potential comparison of the pentamers showed significant differences between the reference template (murine polyomavirus) and the novel bat PyVs. An electrostatic potential difference pattern between the two bat VP1 pentamers was also revealed. Disaccharide molecular docking studies showed that the reference template and both bat PyVs possess the typical shallow sialic acid-binding site located between two VP1 subunits, with relevant oligosaccharide-binding affinities. The characterisation of these novel bat PyVs and the reported properties of their capsid proteins will potentially contribute in the elucidation of the conditions creating the host-pathogen restrictions associated with these viruses.

摘要

多瘤病毒(PyVs)已知感染多种脊椎动物宿主。我们报告了在中欧采样的伏翼蝙蝠(蝙蝠科)中发现的 PyVs。从六个不同的伏翼蝙蝠物种中采集的样本中检测到来自七种不同 PyV 的部分 VP1 序列。使用基于已知 PyV 中主要衣壳蛋白 1(VP1)内保守片段的方法,确定了两种不同新型蝙蝠 PyV 的完整基因组。这些 PyV 的大 T 抗原编码序列与以前描述的蝙蝠 PyV 的遗传距离超过 15%,值得归类为两种新型 PyV 物种的代表:Epserotinus 乳多空病毒和 Myodaubentonii 乳多空病毒。系统发育分析表明,两者都属于α乳多空病毒属,并与包括来自中国、南美洲和非洲的其他蝙蝠α乳多空病毒的高置信度聚类在一起。VP1 亚基和衣壳五聚体的计算机蛋白建模以及五聚体的静电表面电势比较表明,参考模板(鼠多瘤病毒)和新型蝙蝠 PyV 之间存在显著差异。还揭示了两种蝙蝠 VP1 五聚体之间的静电电势差异模式。二糖分子对接研究表明,参考模板和两种蝙蝠 PyV 都具有位于两个 VP1 亚基之间的典型浅唾液酸结合位点,具有相关的寡糖结合亲和力。这些新型蝙蝠 PyV 的特性及其衣壳蛋白的报道特性将有助于阐明与这些病毒相关的宿主-病原体限制条件。

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