外显子
生物
遗传学
突变
异位表达
剪接位点突变
RNA剪接
内含子
剪接
刺猬
分子生物学
等位基因
选择性拼接
基因
核糖核酸
作者
Eulalia Valencia,Pablo Lapunzina,Derek Lim,Raffaella Zannolli,Deborah Bartholdi,Bernd Wollnik,Othman Al-Ajlouni,Suhair S Eid,Helen Cox,Sabrina Buoni,Joussef Hayek,María Luisa Martínez‐Frías,Antonio Pérez Aytés,Samia A. Temtamy,Mona Aglan,Judith A. Goodship,Víctor L. Ruiz‐Pérez
出处
期刊:Human Mutation
[Wiley]
日期:2009-09-02
卷期号:30 (12): 1667-1675
被引量:61
摘要
Autosomal recessive Ellis-van Creveld syndrome and autosomal dominant Weyer acrodental dysostosis are allelic conditions caused by mutations in EVC or EVC2. We performed a mutation screening study in 36 EvC cases and 3 cases of Weyer acrodental dysostosis, and identified pathogenic changes either in EVC or in EVC2 in all cases. We detected 40 independent EVC/EVC2 mutations of which 29 were novel changes in Ellis-van Creveld cases and 2 were novel mutations identified in Weyer pedigrees. Of interest one EvC patient had a T>G nucleotide substitution in intron 7 of EVC (c.940-150T>G), which creates a new donor splice site and results in the inclusion of a new exon. The T>G substitution is at nucleotide +5 of the novel 5' splice site. The three Weyer mutations occurred in the final exon of EVC2 (exon 22), suggesting that specific residues encoded by this exon are a key part of the protein. Using murine versions of EVC2 exon 22 mutations we demonstrate that the expression of a Weyer variant, but not the expression of a truncated protein that mimics an Ellis-van Creveld syndrome mutation, impairs Hedgehog signal transduction in NIH 3T3 cells in keeping with its dominant effect.
科研通智能强力驱动
Strongly Powered by AbleSci AI