Das A T, Klaver B, Berkhout B
Department of Human Retrovirology, University of Amsterdam, Academic Medical Center, Amsterdam, The Netherlands.
J Virol. 1998 Nov;72(11):9217-23. doi: 10.1128/JVI.72.11.9217-9223.1998.
The human immunodeficiency virus type 1 RNA genome contains a terminal repeat (R) sequence that encodes the TAR hairpin motif, which has been implicated in Tat-mediated activation of transcription. More recently, a variety of other functions have been proposed for this structured RNA element. To determine the replicative roles of the 5' and 3' TAR hairpins, we analyzed multiple steps in the life cycle of wild-type and mutant viruses. A structure-destabilizing mutation was introduced in either the 5', the 3', or both TAR motifs of the proviral genome. As expected, opening of the 5' TAR hairpin caused a transcription defect. Because the level of protein expression was not similarly reduced, the translation of this mRNA was improved. No effect of the 3' hairpin on transcription and translation was measured. Mutations of the 5' and 3' hairpin structures reduced the efficiency of RNA packaging to similar extents, and RNA packaging was further reduced in the 5' and 3' TAR double mutant. Upon infection of cells with these virions, a reduced amount of reverse transcription products was synthesized by the TAR mutant. However, no net reverse transcription defect was observed after correction for the reduced level of virion RNA. This result was confirmed in in vitro reverse transcription assays. These data indicate that the 5' and 3' TAR motifs play important roles in several steps of the replication cycle, but these structures have no significant effect on the mechanism of reverse transcription.
人类免疫缺陷病毒1型RNA基因组包含一个末端重复(R)序列,该序列编码TAR发夹基序,TAR发夹基序与Tat介导的转录激活有关。最近,有人提出这种结构化RNA元件具有多种其他功能。为了确定5'和3'TAR发夹的复制作用,我们分析了野生型和突变型病毒生命周期中的多个步骤。在原病毒基因组的5'、3'或两者的TAR基序中引入了一个使结构不稳定的突变。正如预期的那样,5'TAR发夹的打开导致了转录缺陷。由于蛋白质表达水平没有同样降低,这种mRNA的翻译得到了改善。未检测到3'发夹对转录和翻译的影响。5'和3'发夹结构的突变在相似程度上降低了RNA包装效率,并且在5'和3'TAR双突变体中RNA包装进一步降低。用这些病毒颗粒感染细胞后,TAR突变体合成的逆转录产物量减少。然而,在校正病毒颗粒RNA水平降低后,未观察到净逆转录缺陷。这一结果在体外逆转录试验中得到了证实。这些数据表明,5'和3'TAR基序在复制周期的几个步骤中发挥重要作用,但这些结构对逆转录机制没有显著影响。