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1
The extracellular domain of vaccinia virus protein B5R affects plaque phenotype, extracellular enveloped virus release, and intracellular actin tail formation.痘苗病毒蛋白B5R的细胞外结构域影响噬斑表型、细胞外被膜病毒释放和细胞内肌动蛋白尾形成。
J Virol. 1998 Mar;72(3):2429-38. doi: 10.1128/JVI.72.3.2429-2438.1998.
2
Functional analysis of vaccinia virus B5R protein: essential role in virus envelopment is independent of a large portion of the extracellular domain.痘苗病毒B5R蛋白的功能分析:在病毒包膜形成中的关键作用独立于大部分细胞外结构域。
J Virol. 1998 Jan;72(1):294-302. doi: 10.1128/JVI.72.1.294-302.1998.
3
Replacing the SCR domains of vaccinia virus protein B5R with EGFP causes a reduction in plaque size and actin tail formation but enveloped virions are still transported to the cell surface.用增强绿色荧光蛋白(EGFP)替换痘苗病毒蛋白B5R的SCR结构域会导致噬斑大小减小和肌动蛋白尾形成减少,但包膜病毒粒子仍会被转运到细胞表面。
J Gen Virol. 2002 Feb;83(Pt 2):323-332. doi: 10.1099/0022-1317-83-2-323.
4
A mutational analysis of the vaccinia virus B5R protein.痘苗病毒B5R蛋白的突变分析
J Gen Virol. 2001 May;82(Pt 5):1199-1213. doi: 10.1099/0022-1317-82-5-1199.
5
Functional analysis of vaccinia virus B5R protein: role of the cytoplasmic tail.痘苗病毒B5R蛋白的功能分析:胞质尾的作用
Virology. 1998 Dec 20;252(2):450-7. doi: 10.1006/viro.1998.9483.
6
Deletion of the vaccinia virus B5R gene encoding a 42-kilodalton membrane glycoprotein inhibits extracellular virus envelope formation and dissemination.编码一种42千道尔顿膜糖蛋白的痘苗病毒B5R基因的缺失会抑制细胞外病毒包膜的形成和传播。
J Virol. 1993 Aug;67(8):4732-41. doi: 10.1128/JVI.67.8.4732-4741.1993.
7
The vaccinia virus 42-kDa envelope protein is required for the envelopment and egress of extracellular virus and for virus virulence.痘苗病毒42-kDa包膜蛋白是细胞外病毒的包膜形成与释放以及病毒毒力所必需的。
Virology. 1993 Jun;194(2):627-37. doi: 10.1006/viro.1993.1302.
8
The envelope protein encoded by the A33R gene is required for formation of actin-containing microvilli and efficient cell-to-cell spread of vaccinia virus.A33R基因编码的包膜蛋白是形成含肌动蛋白的微绒毛和痘苗病毒有效细胞间传播所必需的。
J Virol. 1998 May;72(5):4192-204. doi: 10.1128/JVI.72.5.4192-4204.1998.
9
The cytoplasmic and transmembrane domains of the vaccinia virus B5R protein target a chimeric human immunodeficiency virus type 1 glycoprotein to the outer envelope of nascent vaccinia virions.痘苗病毒B5R蛋白的细胞质结构域和跨膜结构域将一种嵌合的人类免疫缺陷病毒1型糖蛋白靶向新生痘苗病毒的外膜。
J Virol. 1997 Apr;71(4):3178-87. doi: 10.1128/JVI.71.4.3178-3187.1997.
10
An investigation of incorporation of cellular antigens into vaccinia virus particles.细胞抗原掺入痘苗病毒颗粒的研究。
J Gen Virol. 2002 Oct;83(Pt 10):2347-2359. doi: 10.1099/0022-1317-83-10-2347.

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An increase in glycoprotein concentration on extracellular virions dramatically alters vaccinia virus infectivity and pathogenesis without impacting immunogenicity.细胞外病毒粒子上糖蛋白浓度的增加显著改变了痘苗病毒的感染力和发病机制,而不影响其免疫原性。
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2
A systemically deliverable Vaccinia virus with increased capacity for intertumoral and intratumoral spread effectively treats pancreatic cancer.一种系统性递呈的、具有增强的肿瘤间和肿瘤内传播能力的牛痘病毒能够有效治疗胰腺癌。
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Vaccinia Virus Glycoproteins A33, A34, and B5 Form a Complex for Efficient Endoplasmic Reticulum to -Golgi Network Transport.痘苗病毒糖蛋白A33、A34和B5形成复合物以实现从内质网到高尔基体网络的高效转运。
J Virol. 2020 Mar 17;94(7). doi: 10.1128/JVI.02155-19.
4
Partial Deletion of Glycoprotein B5R Enhances Vaccinia Virus Neutralization Escape while Preserving Oncolytic Function.糖蛋白B5R的部分缺失增强痘苗病毒的中和逃逸能力,同时保留溶瘤功能。
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5
The Ectodomain of the Vaccinia Virus Glycoprotein A34 Is Required for Cell Binding by Extracellular Virions and Contains a Large Region Capable of Interaction with Glycoprotein B5.痘苗病毒糖蛋白 A34 的胞外结构域是细胞结合细胞外病毒所必需的,并且包含一个能够与糖蛋白 B5 相互作用的大片段。
J Virol. 2019 Feb 5;93(4). doi: 10.1128/JVI.01343-18. Print 2019 Feb 15.
6
Tagging of the vaccinia virus protein F13 with mCherry causes aberrant virion morphogenesis.用mCherry标记痘苗病毒蛋白F13会导致异常的病毒粒子形态发生。
J Gen Virol. 2017 Oct;98(10):2543-2555. doi: 10.1099/jgv.0.000917.
7
Suppression of NYVAC Infection in HeLa Cells Requires RNase L but Is Independent of Protein Kinase R Activity.抑制人乳头瘤病毒疫苗(NYVAC)在人宫颈癌细胞(HeLa细胞)中的感染需要核糖核酸酶L,但与蛋白激酶R的活性无关。
J Virol. 2015 Dec 9;90(4):2135-41. doi: 10.1128/JVI.02576-15. Print 2016 Feb 15.
8
Replicating poxviruses for human cancer therapy.用于人类癌症治疗的痘病毒复制
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Human antibody responses to the polyclonal Dryvax vaccine for smallpox prevention can be distinguished from responses to the monoclonal replacement vaccine ACAM2000.人类对用于预防天花的多克隆Dryvax疫苗的抗体反应可与对单克隆替代疫苗ACAM2000的反应区分开来。
Clin Vaccine Immunol. 2014 Jun;21(6):877-85. doi: 10.1128/CVI.00035-14. Epub 2014 Apr 23.
10
Poxviruses and the evolution of host range and virulence.痘病毒与宿主范围及毒力的进化
Infect Genet Evol. 2014 Jan;21:15-40. doi: 10.1016/j.meegid.2013.10.014. Epub 2013 Oct 24.

本文引用的文献

1
Extracellular enveloped vaccinia virus. Entry, egress, and evasion.细胞外被膜痘苗病毒。进入、逸出与逃逸。
Adv Exp Med Biol. 1998;440:395-414.
2
Antibodies against vaccinia virus do not neutralize extracellular enveloped virus but prevent virus release from infected cells and comet formation.抗痘苗病毒抗体不能中和细胞外被膜病毒,但可阻止病毒从受感染细胞中释放以及彗星形成。
J Gen Virol. 1997 Aug;78 ( Pt 8):2041-8. doi: 10.1099/0022-1317-78-8-2041.
3
A novel virus binding assay using confocal microscopy: demonstration that the intracellular and extracellular vaccinia virions bind to different cellular receptors.一种使用共聚焦显微镜的新型病毒结合测定法:证明细胞内和细胞外痘苗病毒粒子与不同的细胞受体结合。
J Virol. 1997 May;71(5):4032-41. doi: 10.1128/JVI.71.5.4032-4041.1997.
4
The A34R glycoprotein gene is required for induction of specialized actin-containing microvilli and efficient cell-to-cell transmission of vaccinia virus.A34R糖蛋白基因是诱导含肌动蛋白的特殊微绒毛以及痘苗病毒高效细胞间传播所必需的。
J Virol. 1997 May;71(5):3904-15. doi: 10.1128/JVI.71.5.3904-3915.1997.
5
The cytoplasmic and transmembrane domains of the vaccinia virus B5R protein target a chimeric human immunodeficiency virus type 1 glycoprotein to the outer envelope of nascent vaccinia virions.痘苗病毒B5R蛋白的细胞质结构域和跨膜结构域将一种嵌合的人类免疫缺陷病毒1型糖蛋白靶向新生痘苗病毒的外膜。
J Virol. 1997 Apr;71(4):3178-87. doi: 10.1128/JVI.71.4.3178-3187.1997.
6
Vaccinia virus: a model system for actin-membrane interactions.痘苗病毒:肌动蛋白-膜相互作用的模型系统。
J Cell Sci. 1996 Jul;109 ( Pt 7):1739-47. doi: 10.1242/jcs.109.7.1739.
7
Extracellular vaccinia virus envelope glycoprotein encoded by the A33R gene.由A33R基因编码的细胞外痘苗病毒包膜糖蛋白。
J Virol. 1996 Jun;70(6):3753-62. doi: 10.1128/JVI.70.6.3753-3762.1996.
8
Extracellular enveloped vaccinia virus escapes neutralization.细胞外被膜痘苗病毒逃避中和作用。
Virology. 1996 Mar 15;217(2):478-85. doi: 10.1006/viro.1996.0142.
9
Overexpression of the vaccinia virus A38L integral membrane protein promotes Ca2+ influx into infected cells.牛痘病毒A38L整合膜蛋白的过表达促进Ca2+流入受感染细胞。
J Virol. 1996 Feb;70(2):905-14. doi: 10.1128/JVI.70.2.905-914.1996.
10
Actin-based motility of vaccinia virus.痘苗病毒基于肌动蛋白的运动性。
Nature. 1995 Dec 7;378(6557):636-8. doi: 10.1038/378636a0.

痘苗病毒蛋白B5R的细胞外结构域影响噬斑表型、细胞外被膜病毒释放和细胞内肌动蛋白尾形成。

The extracellular domain of vaccinia virus protein B5R affects plaque phenotype, extracellular enveloped virus release, and intracellular actin tail formation.

作者信息

Mathew E, Sanderson C M, Hollinshead M, Smith G L

机构信息

Sir William Dunn School of Pathology, University of Oxford, United Kingdom.

出版信息

J Virol. 1998 Mar;72(3):2429-38. doi: 10.1128/JVI.72.3.2429-2438.1998.

DOI:10.1128/JVI.72.3.2429-2438.1998
PMID:9499104
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC109543/
Abstract

Vaccinia virus produces two morphologically distinct forms of infectious virus, termed intracellular mature virus (IMV) and extracellular enveloped virus (EEV). EEV is important for virus dissemination within a host and has different surface proteins which bind to cell receptors different from those used by IMV. Six genes are known to encode EEV-specific proteins. One of these, B5R, encodes a 42-kDa glycoprotein with amino acid similarity to members of the complement control protein superfamily and contains four copies of a 50- to 70-amino-acid repeat called the short consensus repeat (SCR). Deletion of B5R causes a small-plaque phenotype, a 10-fold reduction in EEV formation, and virus attenuation in vivo. In this study, we inserted mutated versions of the B5R gene lacking different combinations of the SCRs into a virus deletion mutant lacking the B5R gene. The resultant viruses each formed small plaques only slightly larger than those of the deletion mutant; however, the virus containing only SCR 1 formed plaques slightly larger than those of viruses with SCRs 1 and 2 or SCRs 1, 2, and 3. All of these viruses produced approximately 50-fold more infectious EEV than wild-type virus and formed comet-shaped plaques under liquid overlay. Despite producing more EEV, the mutant viruses were unable to induce the polymerization of actin on intracellular virus particles. The implications of these results for our understanding of EEV formation, release, and infectivity are discussed.

摘要

痘苗病毒产生两种形态上不同的感染性病毒形式,即细胞内成熟病毒(IMV)和细胞外被膜病毒(EEV)。EEV对于病毒在宿主体内的传播很重要,并且具有不同的表面蛋白,这些蛋白与IMV所使用的细胞受体不同。已知有六个基因编码EEV特异性蛋白。其中之一,B5R,编码一种42 kDa的糖蛋白,其氨基酸序列与补体控制蛋白超家族成员相似,并包含四个50至70个氨基酸的重复序列,称为短共有重复序列(SCR)。B5R的缺失会导致小斑块表型、EEV形成减少10倍以及病毒在体内的减毒。在本研究中,我们将缺乏不同SCR组合的B5R基因突变体插入到缺乏B5R基因的病毒缺失突变体中。所得病毒形成的小斑块仅比缺失突变体的略大;然而,仅包含SCR 1的病毒形成的斑块比包含SCR 1和2或SCR 1、2和3的病毒形成的斑块略大。所有这些病毒产生的感染性EEV比野生型病毒多约50倍,并且在液体覆盖下形成彗星状斑块。尽管产生了更多的EEV,但突变病毒无法诱导细胞内病毒颗粒上肌动蛋白的聚合。讨论了这些结果对我们理解EEV形成、释放和感染性的意义。