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CReVIS-Seq: A highly accurate and multiplexable method for genome-wide mapping of lentiviral integration sites

机译:Crevis-SEQ:一种高精度和多功能的慢病毒集成站点的基因组测绘方法

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摘要

Lentiviruses have been widely used as a means of transferring exogenous DNAs into human cells to treat various genetic diseases. Lentiviral vectors are fundamentally integrated into the host genome, but their integration sites are generally unpredictable, which may increase the uncertainty for their use in therapeutics. To determine the viral integration sites in the host genome, several PCR-based methods have been developed. However, the sensitivities of the PCR-based methods are highly dependent on the primer sequences, and optimized primer design is required for individual target sites. In order to address this issue, we developed an alternative method for genome-wide mapping of viral insertion sites, named CReVIS-seq (CRISPR-enhanced Viral Integration Site Sequencing). The method is based on the sequential steps: fragmentation of genomic DNAs, in vitro circularization, cleavage of target sequence in a CRISPR guide RNA-specific manner, high-throughput sequencing of the linearized DNA fragments in an unbiased manner, and identification of viral insertion sites via sequence analysis. By design, CReVIS-seq is not affected by biases that could be introduced during the target enrichment step via PCR amplification using site specific primers. Furthermore, we found that multiplexed CReVIS-seq, using collections of different single-guide RNAs (sgRNAs), enables simultaneous identification of multiple target sites and structural variations (i.e., circularized viral genome), in both single cell clones and heterogeneous cell populations.
机译:慢病毒已被广泛用作将外源DNA转移到人细胞中以治疗各种遗传疾病的手段。慢病毒载体从根本上集成到宿主基因组中,但它们的整合位点通常是不可预测的,这可能会增加其在治疗剂中使用的不确定性。为了确定宿主基因组中的病毒积分位点,已经开发了几种基于PCR的方法。然而,基于PCR的方法的敏感性高度依赖于引物序列,并且各个靶位位点需要优化的引物设计。为了解决这一问题,我们开发了一种替代方法,用于病毒插入位点的基因组映射,命名为Crevis-SEQ(CrispRup-增强病毒集成站点测序)。该方法基于顺序步骤:基因组DNA的碎片化,体外圆形化,以CRISPR引导RNA特异性的方式切割靶序列,以无偏见的方式的线性化DNA片段的高通量测序,以及病毒插入的鉴定网站通过序列分析。通过设计,Crevis-SEQ不受偏差的影响,所述偏差可以通过使用位点特异性引物通过PCR扩增在靶富集步骤中引入的偏差。此外,我们发现,使用不同单引导RNA(SGRNA)的集合,多路复用的Crevis-SEQ能够在单细胞克隆和异质细胞群中同时鉴定多个靶位点和结构变化(即圆形化病毒基因组)。

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