Shiley Eye Institute, University of California San Diego, La Jolla, CA, USA.
National Centre of Excellence in Molecular Biology, University of the Punjab, Lahore, Pakistan.
Adv Exp Med Biol. 2018;1074:219-228. doi: 10.1007/978-3-319-75402-4_27.
To identify the molecular basis of inherited retinal degeneration (IRD) in a familial case of Pakistani origin using whole-exome sequencing.
A thorough ophthalmic examination was completed, and genomic DNA was extracted using standard protocols. Whole exome(s) were captured with Agilent V5 + UTRs probes and sequenced on Illumina HiSeq genome analyzer. The exomeSuite software was used to filter variants, and the candidate causal variants were prioritized, examining their allele frequency and PolyPhen2, SIFT, and MutationTaster predictions. Sanger dideoxy sequencing was performed to confirm the segregation with disease phenotype and absence in ethnicity-matched control chromosomes.
Ophthalmic examination confirmed retinal degeneration in all affected individuals that segregated as an autosomal recessive trait in the family. Whole-exome sequencing identified two homozygous missense variants: c.1304G > A; p.Arg435Gln in ZNF408 (NM_024741) and c.902G > A; p.Gly301Asp in C1QTNF4 (NM_031909). Both variants segregated with the retinal phenotype in the PKRD320 and were absent in ethnically matched control chromosomes.
Whole-exome sequencing coupled with bioinformatics analysis identified potential novel variants that might be responsible for IRD.
通过全外显子组测序,确定巴基斯坦血统的家族性遗传性视网膜变性(IRD)的分子基础。
进行全面的眼科检查,并使用标准方案提取基因组 DNA。使用 Agilent V5+UTRs 探针捕获整个外显子组,并在 Illumina HiSeq 基因组分析仪上进行测序。使用 exomeSuite 软件过滤变异体,并对候选因果变异体进行优先级排序,检查其等位基因频率和 PolyPhen2、SIFT 和 MutationTaster 预测。进行 Sanger 双脱氧测序以确认与疾病表型的分离以及在与种族匹配的对照染色体中的缺失。
眼科检查证实所有受影响个体的视网膜变性,该疾病在家族中呈常染色体隐性遗传特征。全外显子组测序鉴定出两个纯合错义变异:c.1304G>A;p.Arg435Gln 在 ZNF408(NM_024741)和 c.902G>A;p.Gly301Asp 在 C1QTNF4(NM_031909)中。这两个变异在 PKRD320 中与视网膜表型分离,并且在与种族匹配的对照染色体中不存在。
全外显子组测序结合生物信息学分析确定了可能导致 IRD 的潜在新变异体。