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由dysferlin基因突变引起的剪接缺陷的鉴定。

Identification of splicing defects caused by mutations in the dysferlin gene.

作者信息

Kergourlay Virginie, Raï Ghadi, Blandin Gaëlle, Salgado David, Béroud Christophe, Lévy Nicolas, Krahn Martin, Bartoli Marc

机构信息

Aix Marseille Université, GMGF, Marseille, 13385, France; Inserm, UMR_S 910, Marseille, 13385, France.

出版信息

Hum Mutat. 2014 Dec;35(12):1532-41. doi: 10.1002/humu.22710.

Abstract

Missense, iso-semantic, and intronic mutations are challenging for interpretation, in particular for their impact in mRNA. Various tools such as the Human Splicing Finder (HSF) system could be used to predict the impact on splicing; however, no diagnosis result could rely on predictions alone, but requires functional testing. Here, we report an in vitro approach to study the impact of DYSF mutations on splicing. It was evaluated on a series of 45 DYSF mutations, both intronic and exonic. We confirmed splicing alterations for all intronic mutations localized in 5' or 3' splice sites. Then, we showed that DYSF missense mutations could also result in splicing defects: mutations c.463G>A and c.2641A>C abolished ESEs and led to exon skipping; mutations c.565C>G and c.1555G>A disrupted Exonic Splicing Enhancer (ESE), while concomitantly creating new 5' or 3' splice site leading to exonic out of frame deletions. We demonstrated that 20% of DYSF missense mutations have a strong impact on splicing. This minigene strategy is an efficient tool for the detection of splicing defects in dysferlinopathies, which could allow for a better comprehension of splicing defects due to mutations and could improve prediction tools evaluating splicing defects.

摘要

错义突变、同义突变和内含子突变在解读方面具有挑战性,尤其是它们对信使核糖核酸(mRNA)的影响。可以使用各种工具,如人类剪接查找器(HSF)系统来预测对剪接的影响;然而,没有诊断结果可以仅依赖预测,而是需要功能测试。在这里,我们报告一种体外方法来研究dysferlin(DYSF)突变对剪接的影响。它在一系列45个DYSF突变(包括内含子和外显子突变)上进行了评估。我们证实了所有位于5'或3'剪接位点的内含子突变的剪接改变。然后,我们表明DYSF错义突变也可能导致剪接缺陷:c.463G>A和c.2641A>C突变消除了外显子剪接增强子(ESE)并导致外显子跳跃;c.565C>G和c.1555G>A突变破坏了外显子剪接增强子(ESE),同时产生新的5'或3'剪接位点,导致外显子移码缺失。我们证明20%的DYSF错义突变对剪接有强烈影响。这种小基因策略是检测dysferlinopathy中剪接缺陷的有效工具,它可以更好地理解由突变引起的剪接缺陷,并可以改进评估剪接缺陷的预测工具。

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