McLaren Meredith, Cochrane Alan
Department of Molecular Genetics, University of Toronto, Ontario, Canada.
Virology. 2009 Mar 1;385(1):93-104. doi: 10.1016/j.virol.2008.10.049. Epub 2008 Dec 16.
Control of HIV-1 RNA processing is central to the replication of the virus. Previously, we demonstrated that the cellular protein Sam68 enhances HIV-1 structural protein expression and RNA 3' end processing. In this report, we show that Sam68 interacts with unspliced HIV-1 RNA and that other members of the STAR/GSG protein family also promote viral RNA 3' end processing. We define a portion of the GSG domain (Sam 97-255) as sufficient for enhancement of Rev-dependent expression. In contrast to Sam68, Sam 97-255 increases unspliced RNA processing only in the presence of Rev in 293T cells. In a different cell line, Sam 97-255 enhances HIV-1 gene expression without enhancing RNA 3' end processing, suggesting that stimulation of 3' end processing is not required for enhancement of HIV-1 gene expression. Overall, these results indicate that Sam68 and the mutants described affect the composition of the viral RNP to enhance viral protein synthesis.
对HIV-1 RNA加工的控制是该病毒复制的核心。此前,我们证明细胞蛋白Sam68可增强HIV-1结构蛋白的表达及RNA 3'末端加工。在本报告中,我们表明Sam68与未剪接的HIV-1 RNA相互作用,并且STAR/GSG蛋白家族的其他成员也促进病毒RNA 3'末端加工。我们确定GSG结构域的一部分(Sam 97-255)足以增强Rev依赖性表达。与Sam68不同,Sam 97-255仅在293T细胞中有Rev存在的情况下增加未剪接RNA的加工。在另一种细胞系中,Sam 97-255增强HIV-1基因表达而不增强RNA 3'末端加工,这表明增强HIV-1基因表达并不需要刺激3'末端加工。总体而言,这些结果表明Sam68及所描述的突变体影响病毒核糖核蛋白体的组成以增强病毒蛋白合成。