| Literature DB >> 25312915 |
Virginie Kergourlay1, Ghadi Raï, Gaëlle Blandin, David Salgado, Christophe Béroud, Nicolas Lévy, Martin Krahn, Marc Bartoli.
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.Entities:
Keywords: DYSF; diagnostics tests; dysferlin; neuromuscular disease; splicing
Mesh:
Substances:
Year: 2014 PMID: 25312915 DOI: 10.1002/humu.22710
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878