使用对端读取方向来评估捕获Hi-C的技术偏差。

IF 4 Q1 GENETICS & HEREDITY NAR Genomics and Bioinformatics Pub Date : 2024-12-04 eCollection Date: 2024-12-01 DOI:10.1093/nargab/lqae156
Peter Hansen, Hannah Blau, Jochen Hecht, Guy Karlebach, Alexander Krannich, Robin Steinhaus, Matthias Truss, Peter N Robinson
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引用次数: 0

摘要

Hi-C和捕获Hi-C (CHi-C)都利用嵌合片段的配对端测序来衡量相互作用的强度,这是基于映射到共同限制性片段对的成对端读取的总数。根据基因组的位置和两条reads的链,配对末端reads可以有四个相对的方向。我们为两个给定的限制性片段之间可能发生的四种可能的重新连接分别指定了一个成对端读取向。在一个大型造血细胞数据集中,我们分别确定了每个方向的相互作用的读对计数。对Hi-C和CHi-C来说,计数不平衡的相互作用比预期的偶然性要频繁得多。基于这种不平衡,我们确定了只在一端而不是两端富集的目标限制片段。通过将它们与实验中使用的诱饵进行匹配,我们确认了配对端读取方向的分配,并获得了可以为诱饵设计提供信息的见解。对未投饵碎片的分析表明,除了诱饵效应之外,计数不平衡还反映了其他已知类型的技术偏差。利用距离依赖的接触频率,我们评估了这种偏差的影响。我们的结果有可能改善CHi-C实验的设计和解释。
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Using paired-end read orientations to assess technical biases in capture Hi-C.

Hi-C and capture Hi-C (CHi-C) both leverage paired-end sequencing of chimeric fragments to gauge the strength of interactions based on the total number of paired-end reads mapped to a common pair of restriction fragments. Mapped paired-end reads can have four relative orientations, depending on the genomic positions and strands of the two reads. We assigned one paired-end read orientation to each of the four possible re-ligations that can occur between two given restriction fragments. In a large hematopoietic cell dataset, we determined the read pair counts of interactions separately for each orientation. Interactions with imbalances in the counts occur much more often than expected by chance for both Hi-C and CHi-C. Based on such imbalances, we identified target restriction fragments enriched at only one instead of both ends. By matching them to the baits used for the experiments, we confirmed our assignment of paired-end read orientations and gained insights that can inform bait design. An analysis of unbaited fragments shows that, beyond bait effects, other known types of technical biases are reflected in count imbalances. Taking advantage of distance-dependent contact frequencies, we assessed the impact of such biases. Our results have the potential to improve the design and interpretation of CHi-C experiments.

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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
95
审稿时长
15 weeks
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