Kanevsky Igor, Vasilenko Natalya, Dumay-Odelot Hélène, Fossé Philippe
Unité Mixte de Recherche 8113 du CNRS, LBPA-Alembert, Ecole Normale Supérieure de Cachan, 94235 Cachan cedex, France.
Nucleic Acids Res. 2003 Dec 15;31(24):7070-82. doi: 10.1093/nar/gkg942.
The 5' leader region of avian sarcoma-leukosis viruses (ASLVs) folds into a series of RNA secondary structures which are involved in key steps in the viral replication cycle such as reverse transcription, dimerization and packaging of genomic RNA. The O3 stem and three stem-loops (O3SLa, O3SLb and O3SLc) form the minimal packaging signal that is located downstream of the primer binding site (PBS). The U5-PBS region contributes to packaging via a mechanism that remains unknown. In this in vitro study, we have investigated the possibility of interactions between the R-U5-PBS region and the minimal packaging signal using chemical and enzymatic probing, antisense oligonucleotides and site-directed mutagenesis. We have identified a base pairing interaction between the PBS sequence and the terminal loop of O3SLa. It was found that the PBS/O3SLa interaction was intramolecular since it occurred not only in dimeric RNA but also in monomeric RNA. This interaction probably corresponds to a pseudoknot interaction. The PBS/O3SLa interaction may be formed in vivo since the sequences are highly conserved in ASLV strains. The PBS/O3SLa interaction may regulate the processes of primer tRNA annealing, packaging and initiation of Gag translation through its involvement in leader tertiary structure. Interestingly, we found that in other retroviruses the PBS sequence can also base pair with a terminal loop of the stem-loops involved in RNA packaging.
禽肉瘤-白血病病毒(ASLVs)的5'前导区折叠成一系列RNA二级结构,这些结构参与病毒复制周期中的关键步骤,如逆转录、基因组RNA的二聚化和包装。O3茎和三个茎环(O3SLa、O3SLb和O3SLc)形成了位于引物结合位点(PBS)下游的最小包装信号。U5-PBS区域通过一种未知机制参与包装。在这项体外研究中,我们使用化学和酶促探针、反义寡核苷酸和定点诱变研究了R-U5-PBS区域与最小包装信号之间相互作用的可能性。我们确定了PBS序列与O3SLa末端环之间的碱基配对相互作用。发现PBS/O3SLa相互作用是分子内的,因为它不仅发生在二聚体RNA中,也发生在单体RNA中。这种相互作用可能对应于一种假结相互作用。PBS/O3SLa相互作用可能在体内形成,因为这些序列在ASLV毒株中高度保守。PBS/O3SLa相互作用可能通过参与前导三级结构来调节引物tRNA退火、包装和Gag翻译起始过程。有趣的是,我们发现在其他逆转录病毒中,PBS序列也可以与参与RNA包装的茎环的末端环进行碱基配对。