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Infection with a newly designed dual fluorescent reporter HIV-1 effectively identifies latently infected CD4

机译:用新设计的双荧光报道者HIV-1感染有效地识别潜在感染的CD4

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摘要

The major barrier to curing HIV-1 infection is a small pool of latently infected cells that harbor replication-competent viruses, which are widely considered the origin of viral rebound when antiretroviral therapy (ART) is interrupted. The difficulty in distinguishing latently infected cells from the vast majority of uninfected cells has represented a significant bottleneck precluding comprehensive understandings of HIV-1 latency. Here we reported and validated a newly designed dual fluorescent reporter virus, DFV-B, infection with which primary CD4+ T cells can directly label latently infected cells and generate a latency model that was highly physiological relevant. Applying DFV-B infection in Jurkat T cells, we generated a stable cell line model of HIV-1 latency with diverse viral integration sites. High-throughput compound screening with this model identified ACY-1215 as a potent latency reversing agent, which could be verified in other cell models and in primary CD4+ T cells from ART-suppressed individuals ex vivo. In summary, we have generated a meaningful and feasible model to directly study latently infected cells, which could open up new avenues to explore the critical events of HIV-1 latency and become a valuable tool for the research of AIDS functional cure.
机译:固化HIV-1感染的主要屏障是一种小型潜伏期潜伏的细胞,其含有复制态病毒的病毒,这些病毒被广泛地认为当抗逆转录病毒治疗(ART)中断时的病毒反弹起源。区分潜伏受感染的细胞从绝大多数未感染的细胞中区分潜伏的细胞已经代表了对HIV-1潜伏期的全面谅解的显着瓶颈。在这里,我们报告并验证了一种新设计的双荧光报道病毒,DFV-B,主要CD4 + T细胞可以直接标记潜在感染的细胞并产生高度生理相关的潜伏期模型。应用DFV-B感染在Jurkat T细胞中,我们产生了一种稳定的HIV-1潜伏细胞系模型,与不同的病毒整合位点。具有该模型的高通量化合物筛选鉴定了ACY-1215作为有效的等待时间倒逆剂,其可以在其他细胞模型和原发性CD4 + T细胞中验证,从艺术 - 抑制的个体离体中验证。总之,我们已经产生了有意义和可行的模型,直接研究潜伏的细胞,这可能开辟了新的途径,以探索HIV-1潜伏期的关键事件,并成为艾滋病功能治疗的有价值的工具。

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