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2
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Structure and assembly of intracellular mature vaccinia virus: thin-section analyses.细胞内成熟痘苗病毒的结构与组装:超薄切片分析
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本文引用的文献

1
Immature forms of vaccinia virus: morphological observations from thin sections of infected human skin.痘苗病毒的不成熟形态:来自受感染人类皮肤薄片的形态学观察
Virology. 1968 Jan;34(1):189-92. doi: 10.1016/0042-6822(68)90029-9.
2
THE CYCLE OF MULTIPLICATION OF VACCINIA VIRUS IN EARLE'S STRAIN L CELLS. II. INITIATION OF DNA SYNTHESIS AND MORPHOGENESIS.痘苗病毒在厄尔氏L细胞系中的增殖周期。II. DNA合成及形态发生的起始
Virology. 1964 Nov;24:295-309. doi: 10.1016/0042-6822(64)90168-0.
3
THE CYCLE OF MULTIPLICATION OF VACCINIA VIRUS IN EARLE'S STRAIN L CELLS. I. UPTAKE AND PENETRATION.痘苗病毒在厄尔氏L细胞系中的增殖周期。I. 摄取与穿透
Virology. 1964 Nov;24:278-94. doi: 10.1016/0042-6822(64)90167-9.
4
THE FINE STRUCTURE OF THE DNA-CONTAINING CORE OF VACCINIA VIRUS.牛痘病毒含DNA核心的精细结构
Virology. 1963 Oct;21:267-9. doi: 10.1016/0042-6822(63)90267-8.
5
The uptake and development of vaccinia virus in strain L cells followed with labeled viral deoxyribonucleic acid.用标记的病毒脱氧核糖核酸追踪痘苗病毒在L细胞系中的摄取和发育情况。
J Cell Biol. 1963 Jul;18(1):51-72. doi: 10.1083/jcb.18.1.51.
6
The initiation of vaccinia infection.牛痘感染的起始
Virology. 1960 Jul;11:603-23. doi: 10.1016/0042-6822(60)90103-3.
7
The development of vaccinia virus in Earle's L strain cells as examined by electron microscopy.通过电子显微镜检查痘苗病毒在厄尔氏L株细胞中的发育情况。
J Biophys Biochem Cytol. 1961 Aug;10(4):475-503. doi: 10.1083/jcb.10.4.475.
8
Morphology of resting vaccinia virus.静息痘苗病毒的形态学
Nature. 1956 Dec 29;178(4548):1453-5. doi: 10.1038/1781453a0.
9
Structure and development of viruses observed in the electron microscope. II. Vaccinia and fowl pox viruses.在电子显微镜下观察到的病毒的结构与发育。II. 牛痘病毒和禽痘病毒。
J Exp Med. 1954 Sep 1;100(3):301-10. doi: 10.1084/jem.100.3.301.
10
Structure and assembly of intracellular mature vaccinia virus: thin-section analyses.细胞内成熟痘苗病毒的结构与组装:超薄切片分析
J Virol. 2001 Nov;75(22):11056-70. doi: 10.1128/JVI.75.22.11056-11070.2001.

细胞内成熟痘苗病毒的结构与组装:分离颗粒分析

Structure and assembly of intracellular mature vaccinia virus: isolated-particle analysis.

作者信息

Griffiths G, Wepf R, Wendt T, Locker J K, Cyrklaff M, Roos N

机构信息

European Molecular Biology Laboratory, 69117 Heidelberg, Germany.

出版信息

J Virol. 2001 Nov;75(22):11034-55. doi: 10.1128/JVI.75.22.11034-11055.2001.

DOI:10.1128/JVI.75.22.11034-11055.2001
PMID:11602744
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC114684/
Abstract

In a series of papers, we have provided evidence that during its assembly vaccinia virus is enveloped by a membrane cisterna that originates from a specialized, virally modified, smooth-membraned domain of the endoplasmic reticulum (ER). Recently, however, Hollinshead et al. (M. Hollinshead, A. Vanderplasschen, G. I. Smith, and D. J. Vaux, J. Virol. 73:1503-1517, 1999) argued against this hypothesis, based on their interpretations of thin-sectioned material. The present article is the first in a series of papers that describe a comprehensive electron microscopy (EM) analysis of the vaccinia Intracellular Mature Virus (IMV) and the process of its assembly in HeLa cells. In this first study, we analyzed the IMV by on-grid staining, cryo-scanning EM (SEM), and cryo-transmission EM. We focused on the structure of the IMV particle, both after isolation and in the context of viral entry. For the latter, we used high-resolution cryo-SEM combined with cryofixation, as well as a novel approach we developed for investigating vaccinia IMV bound to plasma membrane fragments adsorbed onto EM grids. Our analysis revealed that the IMV is made up of interconnected cisternal and tubular domains that fold upon themselves via a complex topology that includes an S-shaped fold. The viral tubules appear to be eviscerated from the particle during viral infection. Since the structure of the IMV is the result of a complex assembly process, we also provide a working model to explain how a specialized smooth-ER domain can be modulated to form the IMV. We also present theoretical arguments for why it is highly unlikely that the IMV is surrounded by only a single membrane.

摘要

在一系列论文中,我们提供了证据表明痘苗病毒在组装过程中被源自内质网(ER)一个特殊的、经病毒修饰的光滑膜结构域的膜池所包裹。然而,最近霍林斯黑德等人(M. 霍林斯黑德、A. 范德普拉斯申、G. I. 史密斯和D. J. 沃克斯,《病毒学杂志》73:1503 - 1517,1999年)基于他们对超薄切片材料的解读,对这一假说提出了反对意见。本文是一系列论文中的第一篇,这些论文描述了对痘苗细胞内成熟病毒(IMV)及其在HeLa细胞中组装过程的全面电子显微镜(EM)分析。在这项初步研究中,我们通过网格上染色、低温扫描电子显微镜(SEM)和低温透射电子显微镜对IMV进行了分析。我们关注了IMV颗粒的结构,包括分离后的结构以及在病毒进入过程中的结构。对于后者,我们使用了结合低温固定的高分辨率低温SEM,以及我们开发的一种用于研究结合到吸附在EM网格上的质膜片段上的痘苗IMV的新方法。我们的分析表明,IMV由相互连接的池状和管状结构域组成,这些结构域通过包括一个S形折叠的复杂拓扑结构自身折叠。病毒小管在病毒感染期间似乎从颗粒中被排空。由于IMV的结构是一个复杂组装过程的结果,我们还提供了一个工作模型来解释如何调节一个特殊的光滑内质网结构域以形成IMV。我们还提出了理论依据,说明IMV仅被单层膜包围的可能性极小。