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Telescope: Characterization of the retrotranscriptome by accurate estimation of transposable element expression

机译:望远镜:通过准确估计转座子表达来表征逆转录组

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摘要

Characterization of Human Endogenous Retrovirus (HERV) expression within the transcriptomic landscape using RNA-seq is complicated by uncertainty in fragment assignment because of sequence similarity. We present Telescope, a computational software tool that provides accurate estimation of transposable element expression (retrotranscriptome) resolved to specific genomic locations. Telescope directly addresses uncertainty in fragment assignment by reassigning ambiguously mapped fragments to the most probable source transcript as determined within a Bayesian statistical model. We demonstrate the utility of our approach through single locus analysis of HERV expression in 13 ENCODE cell types. When examined at this resolution, we find that the magnitude and breadth of the retrotranscriptome can be vastly different among cell types. Furthermore, our approach is robust to differences in sequencing technology and demonstrates that the retrotranscriptome has potential to be used for cell type identification. We compared our tool with other approaches for quantifying transposable element (TE) expression, and found that Telescope has the greatest resolution, as it estimates expression at specific TE insertions rather than at the TE subfamily level. Telescope performs highly accurate quantification of the retrotranscriptomic landscape in RNA-seq experiments, revealing a differential complexity in the transposable element biology of complex systems not previously observed. Telescope is available at .
机译:由于序列相似性,片段分配的不确定性使利用转录组序列在转录组范围内人类内源性逆转录病毒(HERV)表达的表征变得复杂。我们介绍了Telescope,这是一种计算软件工具,可提供准确的解析为特定基因组位置的转座子表达(逆转录组)信息。望远镜通过将模糊映射的片段重新分配给贝叶斯统计模型中确定的最可能的源转录本来直接解决片段分配中的不确定性。我们通过对13种ENCODE细胞类型中HERV表达的单基因座分析证明了我们方法的实用性。当以此分辨率检查时,我们发现逆转录组的大小和广度在细胞类型之间可能有很大差异。此外,我们的方法对测序技术的差异具有鲁棒性,并证明逆转录组具有潜力用于细胞类型识别。我们将我们的工具与其他用于量化转座因子(TE)表达的方法进行了比较,发现Telescope具有最高的分辨率,因为它可以估计特定TE插入而不是TE亚家族水平的表达。望远镜在RNA序列实验中对逆转录组学景观进行了高度精确的定量,揭示了以前未观察到的复杂系统的转座子生物学中的不同复杂性。望远镜可在上找到。

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