无虹膜
6号乘客
生物
遗传学
桑格测序
选择性拼接
外显子捕获
基因
外显子
RNA剪接
内含子
突变
核糖核酸
转录因子
作者
Maria Tarilonte,Patrícia Ramos,Jennifer Moya,Guilermo Fernandez-Sanz,Fiona Blanco-Kelly,Saoud Tahsin-Swafiri,Cristina Villaverde,Raquel Barragán Sánchez,Alejandra Tamayo,Blanca Gener,Patrick Calvas,Carmen Ayuso,Carmen Ayuso
标识
DOI:10.1136/jmedgenet-2020-106932
摘要
The paired-domain transcription factor paired box gene 6 (PAX6) causes a wide spectrum of ocular developmental anomalies, including congenital aniridia, Peters anomaly and microphthalmia. Here, we aimed to functionally assess the involvement of seven potentially non-canonical splicing variants on missplicing of exon 6, which represents the main hotspot region for loss-of-function PAX6 variants.By locus-specific analysis of PAX6 using Sanger and/or targeted next-generation sequencing, we screened a Spanish cohort of 106 patients with PAX6-related diseases. Functional splicing assays were performed by in vitro minigene approaches or directly in RNA from patient-derived lymphocytes cell line, when available.Five out seven variants, including three synonymous changes, one small exonic deletion and one non-canonical splice variant, showed anomalous splicing patterns yielding partial exon skipping and/or elongation.We describe new spliceogenic mechanisms for PAX6 variants mediated by creating or strengthening five different cryptic donor sites at exon 6. Our work revealed that the activation of cryptic PAX6 splicing sites seems to be a recurrent and underestimated cause of aniridia. Our findings pointed out the importance of functional assessment of apparently silent PAX6 variants to uncover hidden genetic alterations and to improve variant interpretation for genetic counselling in aniridia.
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