Oteiza Alexandra, Mechti Nadir
CNRS UMR5235, DIMNP, Université de Montpellier, Bat 24, CC107, Place Eugène Bataillon, 34095 Montpellier Cedex 5, France.
J Gen Virol. 2017 Jul;98(7):1864-1878. doi: 10.1099/jgv.0.000837. Epub 2017 Jul 12.
The connection between the repression of human immunodeficiency virus type 1(HIV-1) transcription and the resting CD4+ T cell state suggests that the host transcription factors involved in the active maintenance of lymphocyte quiescence are likely to repress the viral transactivator, Tat, thereby restricting HIV-1 transcription. In this study, we analysed the interplay between Tat and the forkhead box transcription factors, FoxO1 and FoxO4. We show that FoxO1 and FoxO4 antagonize Tat-mediated transactivation of HIV-1 promoter through the repression of Tat protein expression. No effect was observed on the expression of two HIV-1 accessory proteins, Vif and Vpr. Unexpectedly, we found that FoxO1 and FoxO4 expression causes a strong dose-dependent post-transcriptional suppression of Tat mRNA, indicating that FoxO should effectively inhibit HIV-1 replication by destabilizing Tat mRNA and suppressing Tat-mediated HIV-1 transcription. In accordance with this, we observed that the Tat mRNA half-life is reduced by FoxO4 expression. The physiological relevance of our findings was validated using the J-Lat 10.6 model of latently infected cells. We demonstrated that the overexpression of a constitutively active FoxO4-TM mutant antagonized HIV-1 transcription reactivation in response to T cell activators, such as TNF-α or PMA. Altogether, our findings demonstrate that FoxO factors can control HIV-1 transcription and provide new insights into their potential role during the establishment of HIV-1 latency.
人类免疫缺陷病毒1型(HIV-1)转录抑制与静息CD4+ T细胞状态之间的联系表明,参与淋巴细胞静止状态主动维持的宿主转录因子可能会抑制病毒反式激活因子Tat,从而限制HIV-1转录。在本研究中,我们分析了Tat与叉头框转录因子FoxO1和FoxO4之间的相互作用。我们发现,FoxO1和FoxO4通过抑制Tat蛋白表达来拮抗Tat介导的HIV-1启动子反式激活。未观察到对两种HIV-1辅助蛋白Vif和Vpr表达的影响。出乎意料的是,我们发现FoxO1和FoxO4的表达会导致Tat mRNA出现强烈的剂量依赖性转录后抑制,这表明FoxO应该通过使Tat mRNA不稳定并抑制Tat介导的HIV-1转录来有效抑制HIV-1复制。与此相符的是,我们观察到FoxO4的表达会缩短Tat mRNA的半衰期。我们使用潜伏感染细胞的J-Lat 10.6模型验证了我们研究结果的生理相关性。我们证明,组成型活性FoxO4-TM突变体的过表达可拮抗HIV-1转录因T细胞激活剂(如TNF-α或PMA)而重新激活。总之,我们的研究结果表明,FoxO因子可以控制HIV-1转录,并为它们在HIV-1潜伏建立过程中的潜在作用提供了新的见解。