Bieth E, Gabus C, Darlix J L
LaboRetro, Centre de Recherches de Biochimie et de Génétique Cellulaires du CNRS, Toulouse, France.
Nucleic Acids Res. 1990 Jan 11;18(1):119-27. doi: 10.1093/nar/18.1.119.
The genetic material of all retroviruses examined so far is an RNA dimer where two identical RNA subunits are joined at their 5' ends by a structure named dimer linkage structure (DLS). Since the precise location and structure of the DLS as well as the mechanism and role(s) of RNA dimerization remain unclear, we analysed the dimerization process of Rous sarcoma virus (RSV) RNA. For this purpose we set up an in vitro model for RSV RNA dimerization. Using this model RSV RNA was shown to form dimeric molecules and this dimerization process was greatly activated by nucleocapsid protein (NCp12) of RSV. Furthermore, RSV RNA dimerization was performed in the presence of complementary 5'32P-DNA oligomers in order to probe the monomer and dimer forms of RSV RNA. Data indicated that the DLS of RSV RNA probably maps between positions 544-564 from the 5' end. In an attempt to define sequences needed for the dimerization of RSV RNA, deletion mutageneses were generated in the 5' 600 nt. The results showed that the dimer promoting sequences probably are located within positions 208-270 and 400-600 from the 5' end and hence possibly encompassing the cis-acting elements needed for the specific encapsidation of RSV genomic RNA. Also it is reported that synthesis of the polyprotein precursor Pr76gag is inhibited upon dimerization of RSV RNA. These results suggest that dimerization and encapsidation of genome length RSV RNA might be linked in the course of virion formation since they appear to be under the control of the same cis elements, E and DLS, and the trans-acting factor nucleocapsid protein NCp12.
迄今为止,所有已检测的逆转录病毒的遗传物质都是一种RNA二聚体,其中两个相同的RNA亚基在其5'端通过一种名为二聚体连接结构(DLS)的结构相连。由于DLS的精确位置和结构以及RNA二聚化的机制和作用仍不清楚,我们分析了劳氏肉瘤病毒(RSV)RNA的二聚化过程。为此,我们建立了一个RSV RNA二聚化的体外模型。利用该模型,RSV RNA被证明能形成二聚体分子,并且该二聚化过程被RSV的核衣壳蛋白(NCp12)极大地激活。此外,在互补的5'32P-DNA寡聚物存在的情况下进行RSV RNA二聚化,以探测RSV RNA的单体和二聚体形式。数据表明,RSV RNA的DLS可能定位在从5'端起的544 - 564位之间。为了确定RSV RNA二聚化所需的序列,在5' 600 nt区域进行了缺失诱变。结果表明,二聚体促进序列可能位于从5'端起的208 - 270位和400 - 600位之间,因此可能包含RSV基因组RNA特异性包装所需的顺式作用元件。另外,据报道,RSV RNA二聚化时多蛋白前体Pr76gag的合成受到抑制。这些结果表明,在病毒粒子形成过程中,基因组长度的RSV RNA的二聚化和包装可能是相关联的,因为它们似乎受相同的顺式元件E和DLS以及反式作用因子核衣壳蛋白NCp12的控制。