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轮状病毒中有序基因组RNA的可视化及转录复合物的定位

Visualization of ordered genomic RNA and localization of transcriptional complexes in rotavirus.

作者信息

Prasad B V, Rothnagel R, Zeng C Q, Jakana J, Lawton J A, Chiu W, Estes M K

机构信息

Verna and Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Nature. 1996 Aug 1;382(6590):471-3. doi: 10.1038/382471a0.

Abstract

In double-stranded-RNA (dsRNA) viruses found in animals, bacteria and yeast, the genome is transcribed within the structurally intact core of the virion with extraordinary efficiency. The structural organization of the genome and the enzymes involved in the transcription inside any of these viruses, critical for understanding this process, is not known. Here we report what we believe is the first three-dimensional characterization of the viral genome and the transcription complex in a prototypical dsRNA virus. Rotavirus is a large (diameter 1,000 A) icosahedral virus composed of three capsid protein layers and 11 dsRNA segments. It is the most important cause of gastroenteritis in children, accounting for over a million deaths annually. We show that viral dsRNA forms a dodecahedral structure in which the RNA double helices, interacting closely with the inner capsid layer, are packed around the enzyme complex located at the icosahedral 5-fold axes. The ordered RNA accounts for about 4,500 out of a total 18,525 base pairs in the genome, the largest amount of icosahedrally ordered RNA observed in any virus structure to date. We propose that the observed organization of the dsRNA is conducive for an orchestrated movement of the RNA relative to the enzyme complex during transcription.

摘要

在动物、细菌和酵母中发现的双链RNA(dsRNA)病毒中,基因组在病毒粒子结构完整的核心内以极高的效率进行转录。对于理解这一过程至关重要的是,这些病毒中任何一种病毒内部基因组的结构组织以及参与转录的酶尚不清楚。在此,我们报告了我们认为是对一种典型dsRNA病毒的病毒基因组和转录复合体的首次三维特征描述。轮状病毒是一种大型(直径1000埃)二十面体病毒,由三层衣壳蛋白和11个dsRNA片段组成。它是儿童肠胃炎的最重要病因,每年导致超过100万人死亡。我们发现病毒dsRNA形成一种十二面体结构,其中RNA双螺旋与内壳层紧密相互作用,围绕位于二十面体5重轴上的酶复合体堆积。在基因组总共18525个碱基对中,有序RNA约占4500个,这是迄今为止在任何病毒结构中观察到的二十面体有序RNA的最大量。我们提出,观察到的dsRNA组织有利于转录过程中RNA相对于酶复合体的协调移动。

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