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3D Reconstruction of VZV Infected Cell Nuclei and PML Nuclear Cages by Serial Section Array Scanning Electron Microscopy and Electron Tomography

机译:VZV感染的细胞核和PML核笼的3D重建通过连续切片阵列扫描电子显微镜和电子断层扫描

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摘要

Varicella-zoster virus (VZV) is a human alphaherpesvirus that causes varicella (chickenpox) and herpes zoster (shingles). Like all herpesviruses, the VZV DNA genome is replicated in the nucleus and packaged into nucleocapsids that must egress across the nuclear membrane for incorporation into virus particles in the cytoplasm. Our recent work showed that VZV nucleocapsids are sequestered in nuclear cages formed from promyelocytic leukemia protein (PML) in vitro and in human dorsal root ganglia and skin xenografts in vivo. We sought a method to determine the three-dimensional (3D) distribution of nucleocapsids in the nuclei of herpesvirus-infected cells as well as the 3D shape, volume and ultrastructure of these unique PML subnuclear domains. Here we report the development of a novel 3D imaging and reconstruction strategy that we term Serial Section Array-Scanning Electron Microscopy (SSA-SEM) and its application to the analysis of VZV-infected cells and these nuclear PML cages. We show that SSA-SEM permits large volume imaging and 3D reconstruction at a resolution sufficient to localize, count and distinguish different types of VZV nucleocapsids and to visualize complete PML cages. This method allowed a quantitative determination of how many nucleocapsids can be sequestered within individual PML cages (sequestration capacity), what proportion of nucleocapsids are entrapped in single nuclei (sequestration efficiency) and revealed the ultrastructural detail of the PML cages. More than 98% of all nucleocapsids in reconstructed nuclear volumes were contained in PML cages and single PML cages sequestered up to 2,780 nucleocapsids, which were shown by electron tomography to be embedded and cross-linked by an filamentous electron-dense meshwork within these unique subnuclear domains. This SSA-SEM analysis extends our recent characterization of PML cages and provides a proof of concept for this new strategy to investigate events during virion assembly at the single cell level.
机译:水痘带状疱疹病毒(VZV)是一种人类α疱疹病毒,可引起水痘(水痘)和带状疱疹(带状疱疹)。像所有疱疹病毒一样,VZV DNA基因组在细胞核中复制并包装到核衣壳中,核衣壳必须穿过核膜才能整合到细胞质中的病毒颗粒中。我们最近的工作表明,VZV核衣壳被隔离在体外由早幼粒细胞白血病蛋白(PML)形成的核笼中,以及在人体背根神经节和体内皮肤异种移植物中被隔离。我们寻求一种方法来确定疱疹病毒感染的细胞核中核衣壳的三维(3D)分布以及这些独特的PML亚核域的3D形状,体积和超微结构。在这里,我们报告了一种新颖的3D成像和重建策略的发展,我们称其为“连续切片阵列扫描电子显微镜(SSA-SEM)”,并将其应用于VZV感染细胞和这些核PML笼子的分析。我们显示,SSA-SEM允许以足以定位,计数和区分不同类型的VZV核衣壳并可视化完整PML笼子的分辨率进行大体积成像和3D重建。这种方法可以定量确定单个PML笼子中可以隔离多少个核壳(螯合能力),单个核中有多少比例的核壳(螯合效率),并揭示了PML笼子的超微结构细节。重建核体积中超过98%的所有核衣壳包含在PML笼子中,单个PML笼子中螯合了多达2,780个核衣壳,通过电子断层扫描显示,它们被这些独特的亚核内的丝状电子致密网状物嵌入并交联。域。这种SSA-SEM分析扩展了我们最近对PML笼子的表征,并为这种新策略提供了概念验证,该新策略用于在单个细胞水平上研究病毒体组装过程中的事件。

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