Maurel Stéphan, Houzet Laurent, Garcia Eric L, Telesnitsky Alice, Mougel Marylène
Centre d'Etudes d'Agents Pathogènes et Biotechnologies pour la Santé (CPBS), CNRS UMR5236, UMI, UMII, IFR122, CS 69033, 34965 Montpellier, France.
RNA. 2007 Dec;13(12):2266-76. doi: 10.1261/rna.713807. Epub 2007 Oct 10.
Murine leukemia virus (MLV) specifically packages both genomic RNA (FL RNA) and a subgenomic RNA, which we call SD'. SD' RNA results from alternative splicing of FL RNA. It is reverse-transcribed, and its DNA copy, integrated into the host genome, constitutes a splice donor-associated retroelement. FL and SD' RNAs share a common 5'-UTR that includes the packaging/dimerization signal (Psi). To investigate whether the mechanism of copackaging of these two RNAs involves RNA heterodimerization, we examined the spontaneous dimerization capacity of the two RNAs as large synthetic RNAs transcribed in vitro. We showed that SD' RNA not only formed homodimers with similar efficiency as the FL RNA, but that FL and SD' RNAs also formed FL/SD' heterodimers via Psi sequences. Comparison of the thermostabilities determined for these different dimeric species and competition experiments with Psi RNA fragments indicate the recruitment of similar dimer-linkage interactions within the Psi region. To validate these results, the dimeric state of the SD' RNA was analyzed in MLV particles. RNA capture assays performed with the FL RNA as bait revealed that SD', and not the host packageable U6 or 7SL RNAs, was associated with the FL RNA in virions. Heterodimerization of SD' RNA with FL RNA may argue for the recent concept of a nuclear dimerization at or near the site of transcription and raises the new hypothesis of RNA dimerization during splicing. Furthermore, FL/SD' heterodimerization may have leukemogenic consequences by influencing the pool of genomic dimers that will undergo recombinogenic template switching by reverse transcriptase.
鼠白血病病毒(MLV)特异性地包装基因组RNA(全长RNA,FL RNA)和一种亚基因组RNA,我们将其称为SD'。SD' RNA是FL RNA可变剪接的产物。它被逆转录,其DNA拷贝整合到宿主基因组中,构成一个与剪接受体相关的逆转录元件。FL和SD' RNA共享一个共同的5'-非翻译区(UTR),其中包括包装/二聚化信号(ψ)。为了研究这两种RNA共包装的机制是否涉及RNA异源二聚化,我们检测了这两种RNA作为体外转录的大的合成RNA的自发二聚化能力。我们发现,SD' RNA不仅能以与FL RNA相似的效率形成同源二聚体,而且FL和SD' RNA还能通过ψ序列形成FL/SD'异源二聚体。对这些不同二聚体物种的热稳定性进行比较以及与ψ RNA片段的竞争实验表明,在ψ区域内募集了相似的二聚体连接相互作用。为了验证这些结果,我们分析了MLV颗粒中SD' RNA的二聚体状态。以FL RNA为诱饵进行的RNA捕获分析表明,在病毒粒子中,与FL RNA相关的是SD' RNA,而不是宿主可包装的U6或7SL RNA。SD' RNA与FL RNA的异源二聚化可能支持转录位点或其附近发生核二聚化的最新概念,并提出了剪接过程中RNA二聚化的新假说。此外,FL/SD'异源二聚化可能通过影响将由逆转录酶进行重组模板转换的基因组二聚体库而产生致白血病后果。