D'Souza Victoria, Summers Michael F
Howard Hughes Medical Institute and Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, Maryland 21250, USA.
Nature. 2004 Sep 30;431(7008):586-90. doi: 10.1038/nature02944.
All retroviruses specifically package two copies of their genomes during virus assembly, a requirement for strand-transfer-mediated recombination during reverse transcription. Genomic RNA exists in virions as dimers, and the overlap of RNA elements that promote dimerization and encapsidation suggests that these processes may be coupled. Both processes are mediated by the nucleocapsid domain (NC) of the retroviral Gag polyprotein. Here we show that dimerization-induced register shifts in base pairing within the Psi-RNA packaging signal of Moloney murine leukaemia virus (MoMuLV) expose conserved UCUG elements that bind NC with high affinity (dissociation constant = 75 +/- 12 nM). These elements are base-paired and do not bind NC in the monomeric RNA. The structure of the NC complex with a 101-nucleotide 'core encapsidation' segment of the MoMuLV Psi site reveals a network of interactions that promote sequence- and structure-specific binding by NC's single CCHC zinc knuckle. Our findings support a structural RNA switch mechanism for genome encapsidation, in which protein binding sites are sequestered by base pairing in the monomeric RNA and become exposed upon dimerization to promote packaging of a diploid genome.
所有逆转录病毒在病毒组装过程中都会特异性地包装两份其基因组,这是逆转录过程中链转移介导的重组所必需的。基因组RNA以二聚体形式存在于病毒粒子中,促进二聚化和衣壳化的RNA元件的重叠表明这些过程可能是相互关联的。这两个过程均由逆转录病毒Gag多聚蛋白的核衣壳结构域(NC)介导。在此,我们表明,莫洛尼氏鼠白血病病毒(MoMuLV)的Ψ-RNA包装信号内碱基配对中由二聚化诱导的配准移位会暴露出保守的UCUG元件,这些元件以高亲和力(解离常数 = 75 ± 12 nM)结合NC。这些元件是碱基配对的,并且在单体RNA中不结合NC。NC与MoMuLV Ψ位点的101个核苷酸“核心衣壳化”片段形成的复合物结构揭示了一个相互作用网络,该网络促进了NC的单个CCHC锌指进行序列和结构特异性结合。我们的研究结果支持一种用于基因组衣壳化的结构性RNA开关机制,其中蛋白质结合位点在单体RNA中通过碱基配对被隔离,而在二聚化时暴露出来以促进二倍体基因组的包装。