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首页> 外文期刊>G3: Genes, Genomes, Genetics >Genome-Wide Analysis of Transposon and Retroviral Insertions Reveals Preferential Integrations in Regions of DNA Flexibility
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Genome-Wide Analysis of Transposon and Retroviral Insertions Reveals Preferential Integrations in Regions of DNA Flexibility

机译:转座子和逆转录病毒插入的全基因组分析揭示了DNA柔性区域中的优先整合。

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摘要

DNA transposons and retroviruses are important transgenic tools for genome engineering. An important consideration affecting the choice of transgenic vector is their insertion site preferences. Previous large-scale analyses of Ds transposon integration sites in plants were done on the basis of reporter gene expression or germ-line transmission, making it difficult to discern vertebrate integration preferences. Here, we compare over 1300 Ds transposon integration sites in zebrafish with Tol2 transposon and retroviral integration sites. Genome-wide analysis shows that Ds integration sites in the presence or absence of marker selection are remarkably similar and distributed throughout the genome. No strict motif was found, but a preference for structural features in the target DNA associated with DNA flexibility (Twist, Tilt, Rise, Roll, Shift, and Slide) was observed. Remarkably, this feature is also found in transposon and retroviral integrations in maize and mouse cells. Our findings show that structural features influence the integration of heterologous DNA in genomes, and have implications for targeted genome engineering.
机译:DNA转座子和逆转录病毒是用于基因组工程的重要转基因工具。影响转基因载体选择的重要考虑因素是它们的插入位点偏好。以前对植物中Ds转座子整合位点的大规模分析是基于报告基因表达或种系传递的,因此很难辨别脊椎动物的整合偏好。在这里,我们将斑马鱼中的1300多个Ds转座子整合位点与Tol2转座子和逆转录病毒整合位点进行了比较。全基因组分析表明,在存在或不存在标志物选择的情况下,Ds整合位点非常相似,并分布在整个基因组中。没有发现严格的基序,但是观察到对目标DNA中与DNA柔韧性相关的结构特征(扭曲,倾斜,上升,滚动,移位和滑动)的偏爱。值得注意的是,在玉米和小鼠细胞的转座子和逆转录病毒整合中也发现了此功能。我们的发现表明,结构特征影响基因组中异源DNA的整合,并且对目标基因组工程有影响。

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