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CRISPR/Cas9-targeted removal of unwanted sequences from small-RNA sequencing libraries

机译:CRISPR / Cas9靶向从小RNA测序文库中去除不需要的序列

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摘要

In small RNA (smRNA) sequencing studies, highly abundant molecules such as adapter dimer products and tissue-specific microRNAs (miRNAs) inhibit accurate quantification of lowly expressed species. We previously developed a method to selectively deplete highly abundant miRNAs. However, this method does not deplete adapter dimer ligation products that, unless removed by gel-separation, comprise most of the library. Here, we have adapted and modified recently described methods for CRISPR/Cas9–based Depletion of Abundant Species by Hybridization (‘DASH’) to smRNA-seq, which we have termed miRNA and Adapter Dimer—DASH (MAD-DASH). In MAD-DASH, Cas9 is complexed with single guide RNAs (sgRNAs) targeting adapter dimer ligation products, alongside highly expressed tissue-specific smRNAs, for cleavage in vitro. This process dramatically reduces adapter dimer and targeted smRNA sequences, can be multiplexed, shows minimal off-target effects, improves the quantification of lowly expressed miRNAs from human plasma and tissue derived RNA, and obviates the need for gel-separation, greatly increasing sample throughput. Additionally, the method is fully customizable to other smRNA-seq preparation methods. Like depletion of ribosomal RNA for mRNA-seq and mitochondrial DNA for ATAC-seq, our method allows for greater proportional read-depth of non-targeted sequences.
机译:在小RNA(smRNA)测序研究中,高度丰富的分子,例如衔接子二聚体产物和组织特异性microRNA(miRNA)会抑制低表达物种的准确定量。我们之前开发了一种方法,可以选择性地消耗高度丰富的miRNA。但是,这种方法不会耗尽衔接子二聚体连接产物,除非通过凝胶分离将其除去,否则它会构成大多数文库。在这里,我们已对最近描述的基于CRISPR / Cas9的通过杂交与smRNA-seq杂交('DASH')耗尽大量物种的方法进行了修改和改进,我们将其称为miRNA和衔接子二聚体-DASH(MAD-DASH)。在MAD-DASH中,Cas9与靶向接头二聚体连接产物的单向导RNA(sgRNA)以及高度表达的组织特异性smRNA复合在一起,可在体外裂解。此过程可显着减少衔接子二聚体和靶向的smRNA序列,可进行多重处理,显示出最小的脱靶效应,改善了来自人血浆和组织来源的RNA中低表达miRNA的定量,并且无需进行凝胶分离,从而大大提高了样品通量。另外,该方法可完全定制为其他smRNA-seq制备方法。就像mRNA序列的核糖体RNA耗竭和ATAC序列的线粒体DNA耗竭一样,我们的方法可实现非目标序列更大比例的读取深度。

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