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本文引用的文献

1
Eilat virus, a unique alphavirus with host range restricted to insects by RNA replication.依拉病毒,一种独特的甲病毒,其宿主范围通过 RNA 复制局限于昆虫。
Proc Natl Acad Sci U S A. 2012 Sep 4;109(36):14622-7. doi: 10.1073/pnas.1204787109. Epub 2012 Aug 20.
2
Evolution of viral proteins originated de novo by overprinting.新起源的病毒蛋白通过重迭进化。
Mol Biol Evol. 2012 Dec;29(12):3767-80. doi: 10.1093/molbev/mss179. Epub 2012 Jul 19.
3
Molecular links between the E2 envelope glycoprotein and nucleocapsid core in Sindbis virus.辛德毕斯病毒 E2 包膜糖蛋白与核衣壳核心蛋白之间的分子联系。
J Mol Biol. 2011 Dec 2;414(3):442-59. doi: 10.1016/j.jmb.2011.09.045. Epub 2011 Oct 4.
4
Glycoprotein organization of Chikungunya virus particles revealed by X-ray crystallography.X 射线晶体学揭示的基孔肯雅病毒粒子的糖蛋白组织。
Nature. 2010 Dec 2;468(7324):709-12. doi: 10.1038/nature09555.
5
Structural changes of envelope proteins during alphavirus fusion.包膜蛋白在甲病毒融合过程中的结构变化。
Nature. 2010 Dec 2;468(7324):705-8. doi: 10.1038/nature09546.
6
Structural evidence of glycoprotein assembly in cellular membrane compartments prior to Alphavirus budding.在甲病毒出芽之前细胞膜隔室中糖蛋白组装的结构证据。
J Virol. 2010 Nov;84(21):11145-51. doi: 10.1128/JVI.00036-10. Epub 2010 Aug 25.
7
Why genes overlap in viruses.病毒中基因为何会重叠。
Proc Biol Sci. 2010 Dec 22;277(1701):3809-17. doi: 10.1098/rspb.2010.1052. Epub 2010 Jul 7.
8
Chikungunya: a potentially emerging epidemic?基孔肯雅热:一种潜在的暴发流行疾病?
PLoS Negl Trop Dis. 2010 Apr 27;4(4):e623. doi: 10.1371/journal.pntd.0000623.
9
A virus-like particle vaccine for epidemic Chikungunya virus protects nonhuman primates against infection.一种类似病毒的颗粒疫苗可预防基孔肯雅热病毒,保护非人灵长类动物免受感染。
Nat Med. 2010 Mar;16(3):334-8. doi: 10.1038/nm.2105. Epub 2010 Jan 28.
10
A structural and functional perspective of alphavirus replication and assembly.甲病毒复制与组装的结构和功能视角
Future Microbiol. 2009 Sep;4(7):837-56. doi: 10.2217/fmb.09.59.

甲病毒 TF 蛋白的功能表征。

Functional characterization of the alphavirus TF protein.

机构信息

Markey Center for Structural Biology, Department of Biological Sciences, Purdue University, West Lafayette, Indiana, USA.

出版信息

J Virol. 2013 Aug;87(15):8511-23. doi: 10.1128/JVI.00449-13. Epub 2013 May 29.

DOI:10.1128/JVI.00449-13
PMID:23720714
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3719798/
Abstract

Alphavirus dogma has long dictated the production of a discrete set of structural proteins during infection of a cell: capsid, pE2, 6K, and E1. However, bioinformatic analyses of alphavirus genomes (A. E. Firth, B. Y. Chung, M. N. Fleeton, and J. F. Atkins, Virol. J. 5:108, 2008) suggested that a ribosomal frameshifting event occurs during translation of the alphavirus structural polyprotein. Specifically, a frameshift event is suggested to occur during translation of the 6K gene, yielding production of a novel protein, termed transframe (TF), comprised of a C-terminal extension of the 6K protein in the -1 open reading frame (ORF). Here, we validate the findings of Firth and colleagues with respect to the production of the TF protein and begin to characterize the function of TF. Using a mass spectrometry-based approach, we identified TF in purified preparations of both Sindbis and Chikungunya virus particles. We next constructed a panel of Sindbis virus mutants with mutations which alter the production, size, or sequence of TF. We demonstrate that TF is not absolutely required in culture, although disrupting TF production leads to a decrease in virus particle release in both mammalian and insect cells. In a mouse neuropathogenesis model, mortality was <15% in animals infected with the TF mutants, whereas mortality was 95% in animals infected with the wild-type virus. Using a variety of additional assays, we demonstrate that TF retains ion-channel activity analogous to that of 6K and that lack of production of TF does not affect genome replication, particle infectivity, or envelope protein transit to the cell surface. The TF protein therefore represents a previously uncharacterized factor important for alphavirus assembly.

摘要

甲病毒教条主义长期以来一直认为,在细胞感染过程中会产生一组离散的结构蛋白:衣壳、pE2、6K 和 E1。然而,对甲病毒基因组的生物信息学分析(A. E. Firth、B. Y. Chung、M. N. Fleeton 和 J. F. Atkins,Virol. J. 5:108,2008)表明,核糖体移码事件发生在翻译甲病毒结构多蛋白的过程中。具体来说,建议在翻译 6K 基因时发生移码事件,从而产生一种新型蛋白质,称为跨框架(TF),由 6K 蛋白的 C 末端延伸在 -1 开放阅读框(ORF)中组成。在这里,我们验证了 Firth 及其同事关于 TF 蛋白产生的发现,并开始表征 TF 的功能。使用基于质谱的方法,我们在纯化的辛德毕斯病毒和基孔肯雅病毒颗粒中鉴定了 TF。接下来,我们构建了一组具有改变 TF 产生、大小或序列的突变的辛德毕斯病毒突变体。我们证明 TF 在培养物中不是绝对必需的,尽管破坏 TF 产生会导致哺乳动物和昆虫细胞中病毒粒子释放减少。在小鼠神经发病模型中,感染 TF 突变体的动物死亡率<15%,而感染野生型病毒的动物死亡率为 95%。使用各种其他测定法,我们证明 TF 保留了类似于 6K 的离子通道活性,并且缺乏 TF 的产生不会影响基因组复制、粒子感染力或包膜蛋白向细胞表面的转运。因此,TF 蛋白代表了一种以前未被表征的、对甲病毒组装很重要的因子。