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奥罗病毒的结构表明,T=4结构是病毒结构蛋白的基本特性。

Aura virus structure suggests that the T=4 organization is a fundamental property of viral structural proteins.

作者信息

Zhang Wei, Fisher Bonnie R, Olson Norman H, Strauss James H, Kuhn Richard J, Baker Timothy S

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Virol. 2002 Jul;76(14):7239-46. doi: 10.1128/jvi.76.14.7239-7246.2002.

Abstract

Aura and Sindbis viruses are closely related alphaviruses. Unlike other alphaviruses, Aura virus efficiently encapsidates both genomic RNA (11.8 kb) and subgenomic RNA (4.2 kb) to form virus particles. Previous studies on negatively stained Aura virus particles predicted that there were two major size classes with potential T=3 and T=4 capsid structures. We have used cryoelectron microscopy and three-dimensional image reconstruction techniques to examine the native morphology of different classes of Aura virus particles produced in BHK cells. Purified particles separated into two components in a sucrose gradient. Reconstructions of particles in the top and bottom components were computed to resolutions of 17 and 21 A, respectively, and compared with reconstructions of Sindbis virus and Ross River virus particles. Aura virus particles of both top and bottom components have similar, T=4 structures that resemble those of other alphaviruses. The morphology of Aura virus glycoprotein spikes closely resembles that of Sindbis virus spikes and is detectably different from that of Ross River virus spikes. Thus, some aspects of the surface structure of members of the Sindbis virus lineage have been conserved, but other aspects have diverged from the Semliki Forest/Ross River virus lineage.

摘要

奥拉病毒和辛德毕斯病毒是密切相关的甲病毒。与其他甲病毒不同,奥拉病毒能有效地将基因组RNA(11.8 kb)和亚基因组RNA(4.2 kb)包装起来形成病毒颗粒。之前对经负染的奥拉病毒颗粒的研究预测,存在两种主要的大小类别,可能具有T = 3和T = 4的衣壳结构。我们利用冷冻电子显微镜和三维图像重建技术来研究在BHK细胞中产生的不同类别的奥拉病毒颗粒的天然形态。纯化后的颗粒在蔗糖梯度中分离成两个组分。对顶部和底部组分中的颗粒进行重建,分辨率分别达到17 Å和21 Å,并与辛德毕斯病毒和罗斯河病毒颗粒的重建结果进行比较。顶部和底部组分的奥拉病毒颗粒都具有相似的T = 4结构,与其他甲病毒的结构相似。奥拉病毒糖蛋白刺突的形态与辛德毕斯病毒的刺突非常相似,与罗斯河病毒的刺突明显不同。因此,辛德毕斯病毒谱系成员表面结构的某些方面得到了保留,但其他方面与塞姆利基森林病毒/罗斯河病毒谱系有所不同。

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