Badorrek Christopher S, Gherghe Costin M, Weeks Kevin M
Department of Chemistry, University of North Carolina, Chapel Hill, NC 27599-3290, USA.
Proc Natl Acad Sci U S A. 2006 Sep 12;103(37):13640-5. doi: 10.1073/pnas.0606156103. Epub 2006 Aug 31.
Retroviruses selectively package two copies of their RNA genomes in the context of a large excess of nongenomic RNA. Specific packaging of genomic RNA is achieved, in part, by recognizing RNAs that form a poorly understood dimeric structure at their 5' ends. We identify, quantify the stability of, and use extensive experimental constraints to calculate a 3D model for a tertiary structure domain that mediates specific interactions between RNA genomes in a gamma retrovirus. In an initial interaction, two stem-loop structures from one RNA form highly stringent cross-strand loop-loop base pairs with the same structures on a second genomic RNA. Upon subsequent folding to the final dimer state, these intergenomic RNA interactions convert to a high affinity and compact tertiary structure, stabilized by interdigitated interactions between U-shaped RNA units. This retroviral conformational switch model illustrates how two-step formation of an RNA tertiary structure yields a stringent molecular recognition event at early assembly steps that can be converted to the stable RNA architecture likely packaged into nascent virions.
逆转录病毒在大量非基因组RNA的背景下选择性地包装两份其RNA基因组。基因组RNA的特异性包装部分是通过识别在其5'端形成一种了解甚少的二聚体结构的RNA来实现的。我们鉴定了介导γ逆转录病毒中RNA基因组之间特异性相互作用的三级结构域,量化了其稳定性,并利用大量实验限制条件计算出一个三维模型。在初始相互作用中,一条RNA上的两个茎环结构与第二条基因组RNA上的相同结构形成高度严格的跨链环-环碱基对。在随后折叠成最终二聚体状态时,这些基因组间的RNA相互作用转变为高亲和力且紧密的三级结构,由U形RNA单元之间的相互穿插作用稳定。这种逆转录病毒构象转换模型说明了RNA三级结构的两步形成如何在早期组装步骤产生一个严格的分子识别事件,该事件可转变为可能被包装进新生病毒粒子的稳定RNA结构。