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Comprehensive profiling of L1 retrotransposons in mouse

机译:小鼠 L1 反转录转座子的全面分析

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摘要

L1 elements are retrotransposons currently active in mammals. Although L1s are typically silenced in most normal tissues, elevated L1 expression is associated with a variety of conditions, including cancer, aging, infertility and neurological disease. These associations have raised interest in the mapping of human endogenous de novo L1 insertions, and a variety of methods have been developed for this purpose. Adapting these methods to mouse genomes would allow us to monitor endogenous in vivo L1 activity in controlled, experimental conditions using mouse disease models. Here, we use a modified version of transposon insertion profiling, called nanoTIPseq, to selectively enrich young mouse L1s. By linking this amplification step with nanopore sequencing, we identified >95% annotated L1s from C57BL/6 genomic DNA using only 200 000 sequencing reads. In the process, we discovered 82 unannotated L1 insertions from a single C57BL/6 genome. Most of these unannotated L1s were near repetitive sequence and were not found with short-read TIPseq. We used nanoTIPseq on individual mouse breast cancer cells and were able to identify the annotated and unannotated L1s, as well as new insertions specific to individual cells, providing proof of principle for using nanoTIPseq to interrogate retrotransposition activity at the single-cell level in vivo.
机译:L1 元件是目前活跃在哺乳动物中的反转录转座子。尽管 L1 通常在大多数正常组织中被沉默,但 L1 表达升高与多种疾病有关,包括癌症、衰老、不孕症和神经系统疾病。这些关联引起了人们对人类内源性从头 L1 插入进行标测的兴趣,并为此开发了多种方法。将这些方法应用于小鼠基因组将使我们能够使用小鼠疾病模型在受控的实验条件下监测内源性体内 L1 活性。在这里,我们使用转座子插入分析的修改版本,称为 nanoTIPseq,选择性地富集年轻小鼠 L1。通过将该扩增步骤与纳米孔测序联系起来,我们只用了 200 000 个测序读数就从 C57BL/6 基因组 DNA 中鉴定了 >95% 的注释 L1。在此过程中,我们从单个 C57BL/6 基因组中发现了 82 个未注释的 L1 插入。这些未注释的 L1 中的大多数几乎是重复序列,并且在短读 TIPseq 中没有发现。我们对单个小鼠乳腺癌细胞使用了 nanoTIPseq,并能够识别带注释和未带注释的 L1,以及特定于单个细胞的新插入,为使用 nanoTIPseq 在体内单细胞水平询问逆转录转座活性提供了原理证明。

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