CRISPR/dCas9-VPR系统靶向HIV-1启动子揭示了潜伏前病毒激活的最佳区域。

Sarah Klinnert, Alex Chemnitzer, P. Rusert, K. Metzner
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引用次数: 2

摘要

基于CRISPR/ dcas9的激活系统(CRISPRa)能够激活序列特异性基因,因此对针对HIV-1感染的“休克和杀死”治疗方法特别感兴趣。这种方法旨在激活感染细胞中潜伏的HIV-1前病毒,随后杀死这些细胞。当靶向hiv - 15 ' ltr启动子时,一些CRISPRa系统已被证明能够特异性和有效地激活潜伏的HIV-1,使它们成为一种有希望的“冲击”策略。在这里,我们旨在评估dCas9-VPR系统在逆转HIV-1潜伏期方面的适用性,并确定hiv - 15 ' ltr启动子中的最佳gRNA靶点,从而使该系统能够最强地激活原病毒。我们通过选择14个特异性grna系统地筛选了HIV-1启动子,这些grna覆盖了几乎一半的HIV-1启动子,从U3的3'半部到R区域的开始。在几种潜伏性HIV-1感染细胞系中筛选表明,dCas9-VPR可导致HIV-1的高激活,而gRNA-V和-VII可诱导复制活性潜伏性原病毒的最强激活。这些数据表明,dCas9-VPR系统的HIV-1启动子的最佳激活区域位于转录起始位点-165至-106 bp处,这与其他CRISPRa系统报道的最佳激活区域一致。我们的数据表明,dCas9-VPR系统是HIV-1激活的强大工具,可以用于“休克和杀死”治疗方法。
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Systematic HIV-1 promoter targeting with CRISPR/dCas9-VPR reveals optimal region for activation of the latent provirus.
CRISPR/dCas9-based activation systems (CRISPRa) enable sequence-specific gene activation and are therefore of particular interest for the 'shock and kill' cure approach against HIV-1 infections. This approach aims to activate the latent HIV-1 proviruses in infected cells and subsequently kill these cells. Several CRISPRa systems have been shown to specifically and effectively activate latent HIV-1 when targeted to the HIV-1 5'LTR promoter, making them a promising 'shock' strategy. Here, we aimed to evaluate the dCas9-VPR system for its applicability in reversing HIV-1 latency and identify the optimal gRNA target site in the HIV-1 5'LTR promoter leading to the strongest activation of the provirus with this system. We systematically screened the HIV-1 promoter by selecting 14 specific gRNAs that cover almost half of the HIV-1 promoter from the 3' half of the U3 until the beginning of the R region. Screening in several latently HIV-1 infected cell lines showed that dCas9-VPR leads to a high activation of HIV-1 and that gRNA-V and -VII induce the strongest activation of replication competent latent provirus. This data indicates that the optimal activation region in the HIV-1 promoter for the dCas9-VPR system is located -165 to -106 bp from the transcription start site and that it is consistent with the optimal activation region reported for other CRISPRa systems. Our data demonstrates that the dCas9-VPR system is a powerful tool for HIV-1 activation and could be harnessed for the 'shock and kill' cure approach.
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