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LUMI-PCR: an Illumina platform ligation-mediated PCR protocol for integration site cloning, provides molecular quantitation of integration sites

机译:Lumi-PCR:Illumina平台连接介导的用于整合位点克隆的PCR方案,提供了集成位点的分子定量

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Ligation-mediated PCR protocols have diverse uses including the identification of integration sites of insertional mutagens, integrating vectors and naturally occurring mobile genetic elements. For approaches that employ NGS sequencing, the relative abundance of integrations within a complex mixture is typically determined through the use of read counts or unique fragment lengths from a ligation of sheared DNA; however, these estimates may be skewed by PCR amplification biases and saturation of sequencing coverage. Here we describe a modification of our previous splinkerette based ligation-mediated PCR using a novel Illumina-compatible adapter design that prevents amplification of non-target DNA and incorporates unique molecular identifiers. This design reduces the number of PCR cycles required and improves relative quantitation of integration abundance for saturating sequencing coverage. By inverting the forked adapter strands from a standard orientation, the integration-genome junction can be sequenced without affecting the sequence diversity required for cluster generation on the flow cell. Replicate libraries of murine leukemia virus-infected spleen samples yielded highly reproducible quantitation of clonal integrations as well as a deep coverage of subclonal integrations. A dilution series of DNAs bearing integrations of MuLV or piggyBac transposon shows linearity of the quantitation over a range of concentrations. Merging ligation and library generation steps can reduce total PCR amplification cycles without sacrificing coverage or fidelity. The protocol is robust enough for use in a 96 well format using an automated liquid handler and we include programs for use of a Beckman Biomek liquid handling workstation. We also include an informatics pipeline that maps reads, builds integration contigs and quantitates integration abundance using both fragment lengths and unique molecular identifiers. Suggestions for optimizing the protocol to other target DNA sequences are included. The reproducible distinction of clonal and subclonal integration sites from each other allows for analysis of populations of cells undergoing selection, such as those found in insertional mutagenesis screens.
机译:结扎介导的PCR方案具有多样的用途,包括鉴定插入诱变诱变的诱导位点,整合载体和天然存在的移动遗传元件。对于采用NGS测序的方法,通常通过使用读数或独特的片段长度来确定复合混合物内的相对丰度,从剪切的DNA连接;然而,这些估计可以通过PCR扩增偏差和测序覆盖的饱和度来倾斜。在这里,我们描述了使用新的illumina兼容的适配器设计来修饰我们先前的Splinkerette的连接介导的PCR,其防止扩增非靶DNA并包含独特的分子标识符。该设计减少了所需的PCR循环的数量,提高了积分丰富的相对定量,以饱和测序覆盖范围。通过从标准取向反射分叉的适配器股线,可以在不影响流动单元上的集群生成所需的序列分集的情况下进行测序。鼠白血病病毒感染脾样品的复制文库产生了克隆集成的高度可重复定量以及亚克隆整合的深度覆盖。 Mulv或Piggybac转基因的稀释系列DNAS轴承集成显示了一系列浓度的定量线性。合并连接和库生成步骤可以减少总PCR扩增循环,而不会牺牲覆盖或保真度。该协议具有足够强大的是,使用自动化液体处理程序以96孔格式使用,并且我们包括用于使用Beckman Biomek液体处理工作站的程序。我们还包括映射读取的信息管道,使用片段长度和独特的分子标识符来构建集成Contigs并定量积分丰富。包括用于优化对其他目标DNA序列的协议的建议。克隆和亚基整合位点彼此的可重复区分允许分析经历选择的细胞的群体,例如在插入诱变屏幕中发现的那些。

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