Fossé P, Motté N, Roumier A, Gabus C, Muriaux D, Darlix J L, Paoletti J
Unité de Biochimie-Enzymologie, Centre National de la Recherche Scientifique Unité de Recherche Associée 147, Institut Gustave Roussy, Villejuif, France.
Biochemistry. 1996 Dec 24;35(51):16601-9. doi: 10.1021/bi9613786.
Retroviral genomes consist of two identical RNA molecules joined noncovalently near their 5'-ends. Recently, two models have been proposed for RNA dimer formation on the basis of results obtained in vitro with human immunodeficiency virus type 1 RNA and Moloney murine leukemia virus RNA. It was first proposed that viral RNA dimerizes by forming an interstrand quadruple helix with purine tetrads. The second model postulates that RNA dimerization is initiated by a loop-loop interaction between the two RNA molecules. In order to better characterize the dimerization process of retroviral genomic RNA, we analyzed the in vitro dimerization of avian sarcoma-leukosis virus (ASLV) RNA using different transcripts. We determined the requirements for heterodimer formation, the thermal dissociation of RNA dimers, and the influence of antisense DNA oligonucleotides on dimer formation. Our results strongly suggest that purine tetrads are not involved in dimer formation. Data show that an autocomplementary sequence located upstream from the splice donor site and within a major packaging signal plays a crucial role in ASLV RNA dimer formation in vitro. This sequence is able to form a stem-loop structure, and phylogenetic analysis reveals that it is conserved in 28 different avian sarcoma and leukosis viruses. These results suggest that dimerization of ASLV RNA is initiated by a loop-loop interaction between two RNA molecules and provide an additional argument for the ubiquity of the dimerization process via loop-loop interaction.
逆转录病毒基因组由两个相同的RNA分子组成,它们在5'端附近通过非共价键连接。最近,基于用人免疫缺陷病毒1型RNA和莫洛尼鼠白血病病毒RNA在体外获得的结果,提出了两种RNA二聚体形成模型。最初提出病毒RNA通过形成带有嘌呤四联体的链间四重螺旋而二聚化。第二种模型假定RNA二聚化是由两个RNA分子之间的环-环相互作用引发的。为了更好地表征逆转录病毒基因组RNA的二聚化过程,我们使用不同的转录本分析了禽肉瘤-白血病病毒(ASLV)RNA的体外二聚化。我们确定了异源二聚体形成的要求、RNA二聚体的热解离以及反义DNA寡核苷酸对二聚体形成的影响。我们的结果强烈表明嘌呤四联体不参与二聚体形成。数据显示,位于剪接供体位点上游且在一个主要包装信号内的自互补序列在体外ASLV RNA二聚体形成中起关键作用。该序列能够形成茎环结构,系统发育分析表明它在28种不同的禽肉瘤和白血病病毒中保守。这些结果表明ASLV RNA的二聚化是由两个RNA分子之间的环-环相互作用引发的,并为通过环-环相互作用的二聚化过程的普遍性提供了额外的证据。