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Influenza A Virus Assembly Intermediates Fuse in the Cytoplasm

机译:甲型流感病毒大会介导细胞质中的保险丝。

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摘要

Reassortment of influenza viral RNA (vRNA) segments in co-infected cells can lead to the emergence of viruses with pandemic potential. Replication of influenza vRNA occurs in the nucleus of infected cells, while progeny virions bud from the plasma membrane. However, the intracellular mechanics of vRNA assembly into progeny virions is not well understood. Here we used recent advances in microscopy to explore vRNA assembly and transport during a productive infection. We visualized four distinct vRNA segments within a single cell using fluorescent in situ hybridization (FISH) and observed that foci containing more than one vRNA segment were found at the external nuclear periphery, suggesting that vRNA segments are not exported to the cytoplasm individually. Although many cytoplasmic foci contain multiple vRNA segments, not all vRNA species are present in every focus, indicating that assembly of all eight vRNA segments does not occur prior to export from the nucleus. To extend the observations made in fixed cells, we used a virus that encodes GFP fused to the viral polymerase acidic (PA) protein (WSN PA-GFP) to explore the dynamics of vRNA assembly in live cells during a productive infection. Since WSN PA-GFP colocalizes with viral nucleoprotein and influenza vRNA segments, we used it as a surrogate for visualizing vRNA transport in 3D and at high speed by inverted selective-plane illumination microscopy. We observed cytoplasmic PA-GFP foci colocalizing and traveling together en route to the plasma membrane. Our data strongly support a model in which vRNA segments are exported from the nucleus as complexes that assemble en route to the plasma membrane through dynamic colocalization events in the cytoplasm.
机译:在共同感染的细胞中流感病毒RNA(vRNA)片段的重配可能导致具有大流行潜力的病毒的出现。流感病毒vRNA的复制发生在受感染细胞的细胞核中,而子代病毒粒子则从质膜中萌芽。但是,vRNA组装成子代病毒体的细胞内机制尚不清楚。在这里,我们利用显微镜的最新进展来探索生产性感染期间的vRNA组装和运输。我们使用荧光原位杂交(FISH)可视化了单个细胞中的四个不同的vRNA片段,并观察到在外部核外围发现了包含多个vRNA片段的病灶,这表明vRNA片段并未单独输出到细胞质中。尽管许多细胞质灶都包含多个vRNA片段,但并不是每个焦点都存在所有vRNA物种,这表明所有8个vRNA片段的组装都不会在从细胞核输出之前发生。为了扩展在固定细胞中的观察结果,我们使用了一种编码与病毒聚合酶酸性(PA)蛋白质(WSN PA-GFP)融合的GFP的病毒来探索生产性感染期间活细胞中vRNA组装的动力学。由于WSN PA-GFP与病毒核蛋白和流感vRNA片段共定位,因此我们将其用作通过反向选择性平面照明显微镜以3D方式可视化vRNA转运的替代品。我们观察到细胞质PA-GFP灶共定位并一起行进到质膜。我们的数据有力地支持了一个模型,在该模型中,vRNA片段从细胞核中以复合物的形式通过细胞质中的动态共定位事件组装到质膜上。

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