Chatel-Chaix Laurent, Abrahamyan Levon, Fréchina Céline, Mouland Andrew J, DesGroseillers Luc
Département de biochimie, Université de Montréal, and HIV-1 RNA Trafficking Laboratory, Lady Davis Institute for Medical Research-Sir Mortimer B. Davis Jewish General Hospital, Montréal, QC, Canada H3C 3J7.
J Virol. 2007 Jun;81(12):6216-30. doi: 10.1128/JVI.00284-07. Epub 2007 Apr 11.
Human immunodeficiency virus type 1 (HIV-1) requires the sequential activities of virus-encoded proteins during replication. The activities of several host cell proteins and machineries are also critical to the completion of virus assembly and the release of infectious virus particles from cells. One of these proteins, the double-stranded RNA-binding protein Staufen1 (Stau1), selectively associates with the HIV-1 genomic RNA and the viral precursor Gag protein, pr55Gag. In this report, we tested whether Stau1 modulates pr55Gag assembly using a new and specific pr55Gag oligomerization assay based on bioluminescence resonance energy transfer (BRET) in both live cells and extracts after cell fractionation. Our results show that both the overexpression and knockdown of Stau1 increase the pr55Gag-pr55Gag BRET levels, suggesting a role for Stau1 in regulating pr55Gag oligomerization during assembly. This effect of Stau1 on pr55Gag oligomerization was observed only in membranes, a cellular compartment in which pr55Gag assembly primarily occurs. Consistently, expression of Stau1 harboring a vSrc myristylation signal led to a 6.5-fold enrichment of Stau1 in membranes and a corresponding enhancement in the Stau1-mediated effect on pr55Gag-pr55Gag BRET, demonstrating that Stau1 acts on assembly when targeted to membranes. A role for Stau1 in the formation of particles is further supported by the detection of membrane-associated detergent-resistant pr55Gag complexes and the increase of virus-like particle release when Stau1 expression levels are modulated. Our results indicate that Stau1 influences HIV-1 assembly by modulating pr55Gag-pr55Gag interactions, as shown in a live cell interaction assay. This likely occurs when Stau1 interacts with membrane-associated assembly intermediates.
1型人类免疫缺陷病毒(HIV-1)在复制过程中需要病毒编码蛋白的一系列活动。几种宿主细胞蛋白和机制的活动对于病毒组装的完成以及感染性病毒颗粒从细胞中的释放也至关重要。其中一种蛋白,双链RNA结合蛋白Staufen1(Stau1),选择性地与HIV-1基因组RNA和病毒前体Gag蛋白pr55Gag结合。在本报告中,我们使用基于生物发光共振能量转移(BRET)的新型特异性pr55Gag寡聚化测定法,在活细胞和细胞分级分离后的提取物中测试了Stau1是否调节pr55Gag组装。我们的结果表明,Stau1的过表达和敲低均增加了pr55Gag-pr55Gag的BRET水平,表明Stau1在组装过程中调节pr55Gag寡聚化中发挥作用。Stau1对pr55Gag寡聚化的这种作用仅在膜中观察到,膜是pr55Gag组装主要发生的细胞区室。一致地,携带vSrc肉豆蔻酰化信号的Stau1的表达导致Stau1在膜中的富集增加6.5倍,并且相应地增强了Stau1对pr55Gag-pr55Gag BRET的作用,表明当靶向膜时Stau1作用于组装。当调节Stau1表达水平时,膜相关的抗去污剂pr55Gag复合物的检测以及病毒样颗粒释放的增加进一步支持了Stau1在颗粒形成中的作用。我们的结果表明,如在活细胞相互作用测定中所示,Stau1通过调节pr55Gag-pr55Gag相互作用影响HIV-1组装。这可能发生在Stau1与膜相关的组装中间体相互作用时。