外显子
外显子剪接增强剂
RNA剪接
小基因
生物
遗传学
内含子
外显子捕获
选择性拼接
外显子跳跃
外显子洗牌
剪接位点突变
突变
拼接因子
基因
核糖核酸
作者
Lise L. Christensen,Thomas Koed Doktor,Michael Birkerod Hansen,Ulrika Simone Spangsberg Petersen,Brage Storstein Andresen
摘要
It is now widely accepted that aberrant splicing of constitutive exons is often caused by mutations affecting cis-acting splicing regulatory elements, but there is a misconception that all exons have an equal dependency on splicing regulatory elements and thus a similar susceptibility to aberrant splicing. We investigated exonic mutations in ACADM exon 5 to experimentally examine their effect on splicing and found that 7 out of 11 tested mutations affected exon inclusion, demonstrating that this constitutive exon is particularly vulnerable to exonic splicing mutations. Employing ACADM exon 5 and 6 as models, we demonstrate that the balance between splicing enhancers and silencers, flanking intron length, and flanking splice site strength are important factors that determine exon definition and splicing efficiency of the exon in question. Our study shows that two constitutive exons in ACADM have different inherent vulnerabilities to exonic splicing mutations. This suggests that in silico prediction of potential pathogenic effects on splicing from exonic mutations may be improved by also considering the inherent vulnerability of the exon. Moreover, we show that single nucleotide polymorphism that affect either of two different exonic splicing silencers, located far apart in exon 5, all protect against both immediately flanking and more distant exonic splicing mutations.
科研通智能强力驱动
Strongly Powered by AbleSci AI