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高亲和力核衣壳蛋白与劳氏肉瘤病毒的μPsi RNA包装信号结合。

High affinity nucleocapsid protein binding to the muPsi RNA packaging signal of Rous sarcoma virus.

作者信息

Zhou Jing, McAllen John K, Tailor Yogita, Summers Michael F

机构信息

Howard Hughes Medical Institute, Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

J Mol Biol. 2005 Jun 24;349(5):976-88. doi: 10.1016/j.jmb.2005.04.046.

Abstract

The genomes of all retroviruses contain sequences near their 5' ends that interact with the nucleocapsid domains (NC) of assembling Gag proteins and direct their packaging into virus particles. Retroviral packaging signals often occur in non-contiguous segments spanning several hundred nucleotides of the RNA genome, confounding structural and mechanistic studies of genome packaging. Recently, a relatively short, 82 nucleotide region of the Rous sarcoma virus (RSV) genome, called muPsi, was shown to be sufficient to direct efficient packaging of heterologous RNAs into RSV-like particles. We have developed a method for the preparation and purification of large quantities of recombinant RSV NC protein, and have studied its interactions with native and mutant forms of the muPsi encapsidation element. NC does not bind with significant affinity to truncated forms of muPsi, consistent with earlier packaging and mutagenesis studies. Surprisingly, NC binds to the native muPsi RNA with affinity that is approximately 100 times greater than that observed for other previously characterized retroviral NC-RNA complexes (extrapolated dissociation constant K(d)=1.9 nM). Tight binding with 1:1 NC-muPsi stoichiometry is dependent on a conserved UGCG tetraloop in one of three predicted stem loops, and an AUG initiation codon controvertibly implicated in genome packaging and translational control. Loop nucleotides of other stem loops do not contribute to NC binding. Our findings indicate that the structural determinants of RSV genome recognition and NC-RNA binding differ considerably from those observed for other retroviruses.

摘要

所有逆转录病毒的基因组在其5'端附近都含有一些序列,这些序列与正在组装的Gag蛋白的核衣壳结构域(NC)相互作用,并指导它们包装进病毒颗粒中。逆转录病毒包装信号通常出现在跨越RNA基因组数百个核苷酸的非连续片段中,这给基因组包装的结构和机制研究带来了困扰。最近,劳斯肉瘤病毒(RSV)基因组中一个相对较短的82个核苷酸区域,称为μΨ,被证明足以指导将异源RNA高效包装进RSV样颗粒中。我们开发了一种制备和纯化大量重组RSV NC蛋白的方法,并研究了它与μΨ包装元件的天然形式和突变形式的相互作用。NC与截短形式的μΨ没有显著亲和力结合,这与早期的包装和诱变研究一致。令人惊讶的是,NC与天然μΨ RNA的结合亲和力比其他先前表征的逆转录病毒NC-RNA复合物所观察到的亲和力大约高100倍(外推解离常数K(d)=1.9 nM)。以1:1的NC-μΨ化学计量比紧密结合取决于三个预测茎环之一中一个保守的UGCG四环,以及一个有争议地涉及基因组包装和翻译控制的AUG起始密码子。其他茎环的环核苷酸对NC结合没有贡献。我们的研究结果表明,RSV基因组识别和NC-RNA结合的结构决定因素与其他逆转录病毒所观察到的有很大不同。

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