Mantovani Julie, Holic Nathalie, Martinez Kelly, Danos Olivier, Perea Javier
Genethon-CNRS-Université d'Evry Val d'Essonne, UMR 8115, Evry, France.
Nucleic Acids Res. 2006;34(19):e134. doi: 10.1093/nar/gkl716. Epub 2006 Oct 5.
Retroviral and lentiviral vectors integrate their DNA into the host cell genome leading to stable transgene expression. Integration preferentially occurs in the proximity of active genes, and may in some case disturb their activity, with adverse toxic consequences. To efficiently analyze high numbers of lentiviral insertion sites in the DNA of transduced cells, we developed an improved high-throughput method called vector integration tag analysis (VITA). VITA is based on the identification of Genomic Tags associated to the insertion sites, which are used as signatures of the integration events. We use the capacity of MmeI to cleave DNA at a defined distance of its recognition site, in order to generate 21 bp long tags from libraries of junction fragments between vector and cellular DNA. The length of the tags is sufficient in most cases, to identify without ambiguity an unique position in the human genome. Concatenation, cloning and sequencing of the tags allow to obtain information about 20-25 insertion sites in a single sequencing reaction. As a validation of this method, we have characterized 1349 different lentiviral vector insertion sites in transduced HeLa cells, from only 487 sequencing reactions, with a background of <2% false positive tags.
逆转录病毒和慢病毒载体将其DNA整合到宿主细胞基因组中,导致转基因稳定表达。整合优先发生在活跃基因附近,在某些情况下可能会干扰其活性,产生不良毒性后果。为了有效地分析转导细胞DNA中大量的慢病毒插入位点,我们开发了一种改进的高通量方法,称为载体整合标签分析(VITA)。VITA基于与插入位点相关的基因组标签的鉴定,这些标签用作整合事件的特征。我们利用MmeI在其识别位点特定距离处切割DNA的能力,从载体与细胞DNA之间的连接片段文库中生成21bp长的标签。在大多数情况下,标签的长度足以明确识别其在人类基因组中的唯一位置。标签的串联、克隆和测序使得在单个测序反应中能够获得约20 - 25个插入位点的信息。作为该方法的验证,我们仅通过487次测序反应,就在转导的HeLa细胞中鉴定了1349个不同的慢病毒载体插入位点,假阳性标签背景小于2%。