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飞摩尔 SHAPE 揭示了真实 XMRV RNA 基因组中的调节结构。

Femtomole SHAPE reveals regulatory structures in the authentic XMRV RNA genome.

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.

出版信息

J Am Chem Soc. 2011 Dec 21;133(50):20326-34. doi: 10.1021/ja2070945. Epub 2011 Nov 29.

Abstract

Higher-order structure influences critical functions in nearly all noncoding and coding RNAs. Most single-nucleotide resolution RNA structure determination technologies cannot be used to analyze RNA from scarce biological samples, like viral genomes. To make quantitative RNA structure analysis applicable to a much wider array of RNA structure-function problems, we developed and applied high-sensitivity selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE) to structural analysis of authentic genomic RNA of the xenotropic murine leukemia virus-related virus (XMRV). For analysis of fluorescently labeled cDNAs generated in high-sensitivity SHAPE experiments, we developed a two-color capillary electrophoresis approach with zeptomole molecular detection limits and subfemtomole sensitivity for complete SHAPE experiments involving hundreds of individual RNA structure measurements. High-sensitivity SHAPE data correlated closely (R = 0.89) with data obtained by conventional capillary electrophoresis. Using high-sensitivity SHAPE, we determined the dimeric structure of the XMRV packaging domain, examined dynamic interactions between the packaging domain RNA and viral nucleocapsid protein inside virion particles, and identified the packaging signal for this virus. Despite extensive sequence differences between XMRV and the intensively studied Moloney murine leukemia virus, architectures of the regulatory domains are similar and reveal common principles of gammaretrovirus RNA genome packaging.

摘要

高级结构会影响几乎所有非编码和编码 RNA 的关键功能。大多数单核苷酸分辨率的 RNA 结构测定技术无法用于分析稀有生物样本中的 RNA,如病毒基因组。为了使定量 RNA 结构分析能够更广泛地应用于 RNA 结构-功能问题,我们开发并应用了高灵敏度选择性 2'-羟基酰化分析引物延伸(SHAPE)技术,对异嗜性鼠白血病病毒相关病毒(XMRV)的真实基因组 RNA 进行结构分析。为了分析高灵敏度 SHAPE 实验中标记的 cDNA,我们开发了一种双色毛细管电泳方法,具有兆分摩尔检测极限和亚皮摩尔灵敏度,适用于涉及数百个单个 RNA 结构测量的完整 SHAPE 实验。高灵敏度 SHAPE 数据与传统毛细管电泳获得的数据密切相关(R = 0.89)。利用高灵敏度 SHAPE,我们确定了 XMRV 包装结构域的二聚体结构,研究了包装结构域 RNA 与病毒衣壳蛋白在病毒粒子内部的动态相互作用,并鉴定了该病毒的包装信号。尽管 XMRV 和深入研究的莫洛尼鼠白血病病毒之间存在广泛的序列差异,但调节域的结构相似,揭示了γ逆转录病毒 RNA 基因组包装的共同原则。

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