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拟态病毒分离株表面纤丝模式的多样性。

Diversity of Surface Fibril Patterns in Mimivirus Isolates.

机构信息

Laboratório de Vírus, Instituto de Ciências Biológicas, Departamento de Microbiologia, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.

Centro de Microscopia da UFMG, Universidade Federal de Minas Gerais, Belo Horizonte, Minas Gerais, Brazil.

出版信息

J Virol. 2023 Feb 28;97(2):e0182422. doi: 10.1128/jvi.01824-22. Epub 2023 Feb 2.

Abstract

Among the most intriguing structural features in the known virosphere are mimivirus surface fibrils, proteinaceous filaments approximately 150 nm long, covering the mimivirus capsid surface. Fibrils are important to promote particle adhesion to host cells, triggering phagocytosis and cell infection. However, although mimiviruses are one of the most abundant viral entities in a plethora of biomes worldwide, there has been no comparative analysis on fibril organization and abundance among distinct mimivirus isolates. Here, we describe the isolation and characterization of Megavirus caiporensis, a novel lineage C mimivirus with surface fibrils organized as "clumps." This intriguing feature led us to expand our analyses to other mimivirus isolates. By employing a combined approach including electron microscopy, image processing, genomic sequencing, and viral prospection, we obtained evidence of at least three main patterns of surface fibrils that can be found in mimiviruses: (i) isolates containing particles with abundant fibrils, distributed homogeneously on the capsid surface; (ii) isolates with particles almost fibrilless; and (iii) isolates with particles containing fibrils in abundance, but organized as clumps, as observed in Megavirus caiporensis. A total of 15 mimivirus isolates were analyzed by microscopy, and their DNA polymerase subunit B genes were sequenced for phylogenetic analysis. We observed a unique match between evolutionarily-related viruses and their fibril profiles. Biological assays suggested that patterns of fibrils can influence viral entry in host cells. Our data contribute to the knowledge of mimivirus fibril organization and abundance, as well as raising questions on the evolution of those intriguing structures. Mimivirus fibrils are intriguing structures that have drawn attention since their discovery. Although still under investigation, the function of fibrils may be related to host cell adhesion. In this work, we isolated and characterized a new mimivirus, called Megavirus caiporensis, and we showed that mimivirus isolates can exhibit at least three different patterns related to fibril organization and abundance. In our study, evolutionarily-related viruses presented similar fibril profiles, and such fibrils may affect how those viruses trigger phagocytosis in amoebas. These data shed light on aspects of mimivirus particle morphology, virus-host interactions, and their evolution.

摘要

在已知的病毒体中,最引人注目的结构特征之一是 mimivirus 表面纤维,这是一种大约 150nm 长的蛋白丝状结构,覆盖在 mimivirus 衣壳表面。纤维对于促进颗粒与宿主细胞的黏附、触发吞噬作用和细胞感染非常重要。然而,尽管 mimiviruses 是全球众多生物群落中最丰富的病毒实体之一,但在不同 mimivirus 分离株之间,关于纤维的组织和丰度还没有进行过比较分析。在这里,我们描述了 Megavirus caiporensis 的分离和特征,这是一种新型的 C 类 mimivirus,其表面纤维组织为“团块”。这个有趣的特征促使我们将分析扩展到其他 mimivirus 分离株。通过采用包括电子显微镜、图像处理、基因组测序和病毒勘探在内的综合方法,我们获得了至少三种可以在 mimiviruses 中发现的表面纤维模式的证据:(i)分离株中含有大量纤维的颗粒,均匀分布在衣壳表面;(ii)分离株中几乎没有纤维的颗粒;(iii)分离株中含有大量纤维,但组织为团块,如 Megavirus caiporensis 中观察到的那样。通过显微镜分析了总共 15 个 mimivirus 分离株,并对其 DNA 聚合酶亚基 B 基因进行了测序,以进行系统发育分析。我们观察到进化上相关的病毒与其纤维谱之间存在独特的匹配。生物测定表明,纤维模式可能影响病毒进入宿主细胞。我们的数据有助于了解 mimivirus 纤维的组织和丰度,并提出了关于这些有趣结构进化的问题。 Mimivirus 纤维是自发现以来引起关注的结构。尽管仍在研究中,但纤维的功能可能与宿主细胞的黏附有关。在这项工作中,我们分离和表征了一种新的 mimivirus,称为 Megavirus caiporensis,并表明 mimivirus 分离株可以表现出至少三种与纤维组织和丰度相关的不同模式。在我们的研究中,进化上相关的病毒呈现出相似的纤维谱,而这些纤维可能影响这些病毒在变形虫中触发吞噬作用的方式。这些数据揭示了 mimivirus 颗粒形态、病毒-宿主相互作用及其进化的一些方面。

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