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From benchmarking HITS-CLIP peak detection programs to a new method for identification of miRNA-binding sites from Ago2-CLIP data

机译:从基准测试率 - 剪辑峰值检测程序到识别MiRNA绑定站点的新方法2-Clip数据

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摘要

Experimental evidence indicates that about 60% of miRNA-binding activity does not follow the canonical rule about the seed matching between miRNA and target mRNAs, but rather a non-canonical miRNA targeting activity outside the seed or with a seed-like motifs. Here, we propose a new unbiased method to identify canonical and non-canonical miRNA-binding sites from peaks identified by Ago2 Cross-Linked ImmunoPrecipitation associated to high-throughput sequencing (CLIP-seq). Since the quality of peaks is of pivotal importance for the final output of the proposed method, we provide a comprehensive bench-marking of four peak detection programs, namely CIMS, PIPE-CLIP, Piranha and Pyicoclip, on four publicly available Ago2-HITS-CLIP datasets and one unpublished in-house Ago2-dataset in stem cells. We measured the sensitivity, the specificity and the position accuracy toward miRNA binding sites identification, and the agreement with TargetScan. Secondly, we developed a new pipeline, called miRBShunter, to identify canonical and non-canonical miRNA-binding sites based on de novo motif identification from Ago2 peaks and prediction of miRNA:: RNA heteroduplexes. miRBShunter was tested and experimentally validated on the in-house Ago2-dataset and on an Ago2-PAR-CLIP dataset in human stem cells. Overall, we provide guidelines to choose a suitable peak detection program and a new method for miRNA-target identification.
机译:实验证据表明,大约60%的miRNA结合活性不会遵循关于miRNA和靶mRNA之间的种子匹配的规范规则,而是靶向种子外或种子般的基序外的非规范miRNA靶向活性。在这里,我们提出了一种新的无偏见方法,用于从征鉴定的峰值鉴定到以前22与高通量测序相关的交联免疫沉淀(剪辑-SEQ)。由于峰的质量是宗旨的最终输出的宗旨,我们提供了四个峰值检测程序的全面代码标记,即CIMS,PIPE-CLIP,Piranha和PyicoClip,四次公开可用,前往2-hits-剪辑数据集和一个未发布的内部内部2-DataSet在Stew Cells中。我们测量了miRNA结合地点识别的敏感性,特异性和位置准确性,以及与目标扫描的协议。其次,我们开发了一种名为MirbShunter的新管道,以鉴定基于De Novo Motif识别的规范和非规范miRNA结合位点,从Ago222峰值和预测MiRNA :: RNA异熔性的预测。 MirbShunter在内的In-House2-DataSet上进行了测试并在实验上验证,并在人类干细胞的前一个PAR-CLIP DataSet上。总体而言,我们提供了选择合适的峰值检测程序的指导方针和MiRNA-Target识别的新方法。

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