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CASH:一种构建综合剪接位点的方法,用于检测可变剪接事件。

CASH: a constructing comprehensive splice site method for detecting alternative splicing events.

机构信息

The State Key Laboratory of Subtropical Silviculture, Zhejiang A & F University, Lin'an, Hangzhou, China.

Novel Bioinformatics Co., Ltd, Shanghai, China.

出版信息

Brief Bioinform. 2018 Sep 28;19(5):905-917. doi: 10.1093/bib/bbx034.

Abstract

RNA-sequencing (RNA-seq) can generate millions of reads to provide clues for analyzing novel or abnormal alternative splicing (AS) events in cells. However, current methods for exploring AS events are still far from being satisfactory. Here, we present Comprehensive AS Hunting (CASH), which constructs comprehensive splice sites including known and novel AS sites in cells, and identifies differentially AS events between cells. We illuminated the versatility of CASH on RNA-seq data from a wide range of species and also on simulated in silico data, validated the advantages of CASH over other AS predictors and exhibited novel differentially AS events. Moreover, we used CASH to identify SRSF10-regulated AS events and investigated the evolution of SRSF10-regulated splicing. The results showed that SRSF10-regulated splicing events are highly evolvable from chickens, mice to humans. However, SRSF10-regulated splicing model was observed to be immutable, in which SRSF10 binding to cassette exon promotes exon inclusion while binding to downstream exon induces exon skipping. Altogether, CASH can significantly improve the detection of AS events and facilitate the study of AS regulation and function in cells; the SRSF10 data first demonstrate a flexibility of SRSF10 with their regulated splicing events but an immutability of SRSF10-regulated splicing model to produce opposite AS outcomes in vertebrates.

摘要

RNA 测序(RNA-seq)可以产生数百万个读取,为分析细胞中新型或异常的选择性剪接(AS)事件提供线索。然而,目前探索 AS 事件的方法仍远未令人满意。在这里,我们提出了 Comprehensive AS Hunting(CASH),它构建了细胞中已知和新型 AS 位点的综合剪接位点,并识别了细胞间的差异 AS 事件。我们在来自广泛物种的 RNA-seq 数据和模拟的计算机数据上展示了 CASH 的多功能性,验证了 CASH 优于其他 AS 预测器的优势,并展示了新型差异 AS 事件。此外,我们使用 CASH 来识别 SRSF10 调节的 AS 事件,并研究了 SRSF10 调节剪接的进化。结果表明,SRSF10 调节的剪接事件从鸡、鼠到人具有高度的可进化性。然而,观察到 SRSF10 调节的剪接模型是不可变的,其中 SRSF10 与盒式外显子结合促进外显子包含,而与下游外显子结合则诱导外显子跳过。总之,CASH 可以显著提高 AS 事件的检测,并促进细胞中 AS 调控和功能的研究;SRSF10 数据首次证明了 SRSF10 及其调节的剪接事件的灵活性,但 SRSF10 调节的剪接模型的不变性导致了脊椎动物中相反的 AS 结果。

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