Dzhivhuho Godfrey A, Jackson Patrick E H, Honeycutt Ethan S, Mesquita Flavio da Silva, Huang Jing, Hammarskjold Marie-Louise, Rekosh David
Department of Microbiology, Immunology, and Cancer Biology, School of Medicine, University of Virginia, Charlottesville, Virginia, United States of America.
Myles H. Thaler Center for HIV and Human Retrovirus Research, University of Virginia, Charlottesville, Virginia, United States of America.
PLoS Pathog. 2025 May 15;21(5):e1012885. doi: 10.1371/journal.ppat.1012885. eCollection 2025 May.
The HIV-1 Rev-RRE regulatory axis plays a crucial role in viral replication by facilitating the nucleo-cytoplasmic export and expression of viral mRNAs with retained introns. In this study, we investigated the impact of variation in Rev-RRE functional activity on HIV-1 replication kinetics and reactivation from latency. Using a novel HIV-1 viral vector with an interchangeable Rev cassette, we engineered viruses with two diverse Rev functional activities and demonstrated that higher Rev-RRE activity confers greater viral replication capacity while maintaining a constant level of Nef expression. In addition, a low Rev activity virus rapidly acquired a compensatory mutation in the RRE that significantly increased Rev-RRE activity and replication. In a latency model, proviruses with differing Rev-RRE activity levels varied in the efficiency of viral reactivation, affecting both initial viral release and subsequent replication kinetics. These results demonstrate that activity differences in the Rev-RRE axis among different viral isolates have important implications for HIV replication dynamics and persistence. Importantly, our findings indicate that bolstering Rev/RRE activity could be explored as part of latency reversal strategies in HIV cure efforts.
HIV-1 Rev-RRE调控轴通过促进具有保留内含子的病毒mRNA的核质输出和表达,在病毒复制中发挥关键作用。在本研究中,我们调查了Rev-RRE功能活性的变化对HIV-1复制动力学和潜伏激活的影响。使用一种具有可互换Rev盒的新型HIV-1病毒载体,我们构建了具有两种不同Rev功能活性的病毒,并证明更高的Rev-RRE活性赋予更大的病毒复制能力,同时维持Nef表达水平恒定。此外,一种低Rev活性病毒在RRE中迅速获得了一个补偿性突变,该突变显著增加了Rev-RRE活性和复制。在潜伏模型中,具有不同Rev-RRE活性水平的原病毒在病毒激活效率上存在差异,这影响了初始病毒释放和随后的复制动力学。这些结果表明,不同病毒分离株之间Rev-RRE轴的活性差异对HIV复制动态和持续性具有重要意义。重要的是,我们的研究结果表明,增强Rev/RRE活性可作为HIV治愈努力中潜伏逆转策略的一部分进行探索。