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Bidirectional Retroviral Integration Site PCR Methodology and Quantitative Data Analysis Workflow

机译:双向逆转录病毒整合位点PCR方法学和定量数据分析工作流程

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摘要

Integration Site (IS) assays are a critical component of the study of retroviral integration sites and their biological significance. In recent retroviral gene therapy studies, IS assays, in combination with next-generation sequencing, have been used as a cell-tracking tool to characterize clonal stem cell populations sharing the same IS. For the accurate comparison of repopulating stem cell clones within and across different samples, the detection sensitivity, data reproducibility, and high-throughput capacity of the assay are among the most important assay qualities. This work provides a detailed protocol and data analysis workflow for bidirectional IS analysis. The bidirectional assay can simultaneously sequence both upstream and downstream vector-host junctions. Compared to conventional unidirectional IS sequencing approaches, the bidirectional approach significantly improves IS detection rates and the characterization of integration events at both ends of the target DNA. The data analysis pipeline described here accurately identifies and enumerates identical IS sequences through multiple steps of comparison that map IS sequences onto the reference genome and determine sequencing errors. Using an optimized assay procedure, we have recently published the detailed repopulation patterns of thousands of Hematopoietic Stem Cell (HSC) clones following transplant in rhesus macaques, demonstrating for the first time the precise time point of HSC repopulation and the functional heterogeneity of HSCs in the primate system. The following protocol describes the step-by-step experimental procedure and data analysis workflow that accurately identifies and quantifies identical IS sequences.
机译:整合位点(IS)分析是逆转录病毒整合位点及其生物学意义研究的重要组成部分。在最近的逆转录病毒基因疗法研究中,IS分析与下一代测序相结合已被用作细胞跟踪工具,以表征共享相同IS的克隆干细胞群体。为了准确比较不同样品内部和不同样品之间的繁殖干细胞克隆,检测的灵敏度,数据可重复性和高通量是最重要的检测质量。这项工作为双向IS分析提供了详细的协议和数据分析工作流。双向测定可以同时对上游和下游载体-宿主连接点进行测序。与传统的单向IS测序方法相比,双向方法显着提高了IS检测率和靶DNA两端整合事件的表征。此处描述的数据分析管道通过多个比较步骤将IS序列映射到参考基因组并确定测序错误,从而准确地识别并枚举了相同的IS序列。通过优化的分析程序,我们最近发表了在恒河猴中移植后成千上万个造血干细胞(HSC)克隆的详细繁殖模式,这首次证明了HSC繁殖的准确时间点和HSC在功能性异质性中的作用。灵长类动物系统。以下协议描述了分步实验程序和数据分析工作流程,可准确识别和量化相同的IS序列。

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