Next-generation sequencing to genetically diagnose a diverse range of inherited eye disorders in 15 consanguineous families from Pakistan

遗传学 航程(航空) 生物 血缘关系 DNA测序 谱系学 基因 历史 工程类 航空航天工程
作者
Rabia Basharat,Suzanne E. de Bruijn,Muhammad Zahid,Kim Rodenburg,Rebekkah J. Hitti‐Malin,María Rodríguez-Hidalgo,Erica G. M. Boonen,Afeefa Jarral,Arif Mahmood,Jordi Corominas,Sharqa Khalil,Jawaid Ahmed Zai,Ghazanfar Ali,Javier Ruiz‐Ederra,Christian Gilissen,Frans P.M. Cremers,Muhammad Ansar,Daan M. Panneman,Susanne Roosing
出处
期刊:Experimental Eye Research [Elsevier BV]
卷期号:244: 109945-109945 被引量:2
标识
DOI:10.1016/j.exer.2024.109945
摘要

Inherited retinal dystrophies (IRDs) are characterized by photoreceptor dysfunction or degeneration. Clinical and phenotypic overlap between IRDs makes the genetic diagnosis very challenging and comprehensive genomic approaches for accurate diagnosis are frequently required. While there are previous studies on IRDs in Pakistan, causative genes and variants are still unknown for a significant portion of patients. Therefore, there is a need to expand the knowledge of the genetic spectrum of IRDs in Pakistan. Here, we recruited 52 affected and 53 normal individuals from 15 consanguineous Pakistani families presenting non-syndromic and syndromic forms of IRDs. We employed single molecule Molecular Inversion Probes (smMIPs) based panel sequencing and whole genome sequencing to identify the probable disease-causing variants in these families. Using this approach, we obtained a 93% genetic solve rate and identified 16 (likely) causative variants in 14 families, of which seven novel variants were identified in ATOH7, COL18A1, MERTK, NDP, PROM1, PRPF8 and USH2A while nine recurrent variants were identified in CNGA3, CNGB1, HGSNAT, NMNAT1, SIX6 and TULP1. The novel MERTK variant and one recurrent TULP1 variant explained the intra-familial locus heterogeneity in one of the screened families while two recurrent CNGA3 variants explained compound heterozygosity in another family. The identification of variants in known disease-associated genes emphasizes the utilization of time and cost-effective screening approaches for rapid diagnosis. The timely genetic diagnosis will not only identify any associated systemic issues in case of syndromic IRDs, but will also aid in the acceleration of personalized medicine for patients affected with IRDs.
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