破译RNA异构体组合从miniigene剪接分析和大量平行测序与MAGIC。

IF 5.4
Camille Aucouturier, Nicolas Goardon, Laurent Castéra, Alexandre Atkinson, Thibaut Lavolé, Angélina Legros, Agathe Ricou, Flavie Boulouard, Sophie Krieger, Raphaël Leman
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引用次数: 0

摘要

摘要:利用小基因剪接试验对RNA进行功能测试,以证明变体对剪接的影响,这一点越来越被实现。在复杂的病例中,变异致病性是通过Sanger测序来评估的,这可能是耗时的,可能被短读测序所取代。此外,基于扩增的迷你基因结构的长读序列的策略是有希望的,并允许完全表征同种异构体。我们介绍MAGIC,这是一个用户友好的工具,它首先生成人工构建基因组文件,然后对通过短或长读miniigene剪接测定测序获得的同种异构体进行比对、组装和注释。可用性和实现:MAGIC可在https://github.com/LBGC-CFB/MAGIC上获得。Zenodo DOI: 10.5281/ Zenodo .17052752。补充信息:补充数据可在生物信息学在线获取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Decipher RNA isoform combinations from minigene splicing assays and massive parallel sequencing with MAGIC.

Decipher RNA isoform combinations from minigene splicing assays and massive parallel sequencing with MAGIC.

Summary: Functional testing of RNA using minigene splicing assays is increasingly being realized to demonstrate the effects of variants on splicing. In complex cases, variant pathogenicity is assessed by Sanger sequencing, which can be time consuming and may be replaced by short read sequencing. Moreover, strategies based on long read sequencing of the amplified minigene construct are promising and allow the isoforms to be fully characterized. We introduce MAGIC, a user-friendly tool that first generates the artificial construction genome files required to then perform alignment, assembly and annotation of the isoforms obtained by either short or long read minigene splicing assay sequencing.

Availability and implementation: MAGIC is available at https://github.com/LBGC-CFB/MAGIC. Zenodo DOI: 10.5281/zenodo.17052752.

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