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Whole Genome Sequencing Revealed Mutations in Two Independent Genes as the Underlying Cause of Retinal Degeneration in an Ashkenazi Jewish Pedigree

机译:全基因组测序揭示了两个独立基因的突变是Ashkenazi犹太谱系中视网膜退化的根本原因。

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摘要

Retinitis pigmentosa (RP) causes progressive photoreceptor loss resulting from mutations in over 80 genes. This study identified the genetic cause of RP in three members of a non-consanguineous pedigree. Detailed ophthalmic evaluation was performed in the three affected family members. Whole exome sequencing (WES) and whole genome sequencing (WGS) were performed in the three affected and the two unaffected family members and variants were filtered to detect rare, potentially deleterious variants segregating with disease. WES and WGS did not identify potentially pathogenic variants shared by all three affected members. However, WES identified a previously reported homozygous nonsense mutation in KIZ (c.226C>T, p.Arg76*) in two affected sisters, but not in their affected second cousin. WGS revealed a novel 1.135 kb homozygous deletion in a retina transcript of C21orf2 and a novel 30.651 kb heterozygous deletion in CACNA2D4 in the affected second cousin. The sisters with the KIZ mutation carried no copies of the C21orf2 or CACNA2D4 deletions, while the second cousin with the C21orf2 and CACNA2D4 deletions carried no copies of the KIZ mutation. This study identified two independent, homozygous mutations in genes previously reported in autosomal recessive RP in a non-consanguineous family, and demonstrated the value of WGS when WES fails to identify likely disease-causing mutations.
机译:色素性视网膜炎(RP)会由于80多个基因的突变而导致进行性光感受器丧失。这项研究确定了非血缘谱系的三个成员中RP的遗传原因。在三个受影响的家庭成员中进行了详细的眼科评估。在三个受影响的地方进行了全外显子组测序(WES)和全基因组测序(WGS),并过滤了两个未受影响的家族成员和变异体,以检测与疾病分离的罕见,潜在有害的变异体。 WES和WGS并未确定所有三个受影响成员共有的潜在致病变异。但是,WES在两个受影响的姐妹中发现了先前报道的KIZ纯合性无义突变(c.226C> T,p.Arg76 *),但在其受影响的第二个表亲中却没有。 WGS在受影响的第二个表亲中揭示了C21orf2视网膜转录本中新的1.135 kb纯合缺失和CACNA2D4中新的30.651 kb杂合缺失。具有KIZ突变的姐妹不携带C21orf2或CACNA2D4缺失的拷贝,而具有C21orf2和CACNA2D4缺失的第二个堂兄则不携带KIZ突变的拷贝。这项研究确定了非亲缘家族常染色体隐性RP中先前报道的基因中的两个独立的纯合突变,并证明了当WES无法识别可能的致病突变时,WGS的价值。

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