Cryo-electron tomography reveals coupled flavivirus replication, budding and maturation.

Selma Dahmane, Erin Schexnaydre, Jianguo Zhang, Ebba Rosendal, Nunya Chotiwan, Bina Kumari Singh, Wai-Lok Yau, Richard Lundmark, Benjamin Barad, Danielle A Grotjahn, Susanne Liese, Andreas Carlson, Anna Overby, Lars-Anders Carlson
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Abstract

Flaviviruses replicate their genomes in replication organelles (ROs) formed as bud-like invaginations on the endoplasmic reticulum (ER) membrane, which also functions as the site for virion assembly. While this localization is well established, it is not known to what extent viral membrane remodeling, genome replication, virion assembly, and maturation are coordinated. Here, we imaged tick-borne flavivirus replication in human cells using cryo-electron tomography. We find that the RO membrane bud is shaped by a combination of a curvature-establishing coat and the pressure from intraluminal template RNA. A protein complex at the RO base extends to an adjacent membrane, where immature virions bud. Naturally occurring furin site variants determine whether virions mature in the immediate vicinity of ROs. We further visualize replication in mouse brain tissue by cryo-electron tomography. Taken together, these findings reveal a close spatial coupling of flavivirus genome replication, budding, and maturation.

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低温电子断层扫描揭示了黄病毒复制、出芽和成熟的耦合过程。
黄病毒在内质网(ER)膜上以芽状侵入方式形成的复制细胞器(RO)中复制其基因组,ER膜也是病毒组装的场所。虽然这种定位方式已经确立,但病毒膜重塑、基因组复制、病毒组装和成熟在多大程度上相互协调还不得而知。在这里,我们利用低温电子断层扫描技术对蜱传黄病毒在人体细胞中的复制进行了成像。我们发现,RO膜芽是由建立曲率的外膜和来自腔内模板RNA的压力共同作用形成的。RO基部的蛋白质复合物延伸到邻近的膜,未成熟的病毒就在那里萌发。天然存在的呋喃位点变体决定了病毒是否在 ROs 附近成熟。我们还通过低温电子断层扫描进一步观察了小鼠脑组织中的复制情况。总之,这些发现揭示了黄病毒基因组复制、出芽和成熟在空间上的紧密联系。
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