Whole Exome Sequencing Unveils Novel Pathogenic Variants in an Iranian Cohort with Retinal Dystrophies: Implications for Genetic Diagnosis and Counseling.
Aug 2026· Molecular and Cellular Probes· pp.
102084
· 0 citations· 15 references
Medicine
TL;DR
The findings have the potential to enhance genetic counseling and improve the classification of subtypes in RD, and demonstrate the utility of WES in the molecular diagnosis of retinal dystrophies, highlighting the importance of functional validation of newly identified variants.
Abstract
Background
Retinal dystrophies (RD) are a heterogeneous group of genetic disorders leading to progressive vision loss. The notable gap in the genetics of RD is primarily due to unidentified disease genes and variants. Advanced genotyping technologies present significant opportunities for the identification of causative variants, thereby contributing to improved disease management.
Methods
This study investigates the genetic basis of RD in 12 families from Iran. Comprehensive ophthalmic evaluations were conducted for each participant, including visual acuity testing, slit-lamp examinations, and optical coherence tomography (OCT). Whole exome sequencing (WES) and computer-assisted data analysis were utilized for genotyping and identifying DNA variants. Exome enrichment was achieved using the Illumina TruSeq kit, and sequencing was performed on the Illumina NextSeq500 platform. Bioinformatic analysis involved variant calling and annotation, with stringent filtering based on established criteria. Variants were prioritized according to the American College of Medical Genetics and Genomics (ACMG) guidelines, and pathogenic variants were validated through Sanger sequencing, achieving a 100% concordance rate.
Results
We identified variants in all the families, including significant pathogenic variants in genes such as EYS. Several novel variants were also discovered, contributing to the expanding genetic landscape of RD. Additionally, variants in syndromic RD genes were identified, emphasizing the need for comprehensive genetic screening.
Conclusions
Our findings demonstrate the utility of WES in the molecular diagnosis of retinal dystrophies, highlighting the importance of functional validation of newly identified variants. This study contributes valuable insights into the genetic basis of RD. Our findings have the potential to enhance genetic counseling and improve the classification of subtypes in RD.
This study expands the mutational spectrum of MDs in Iran and provides critical data for genetic counseling, prenatal diagnosis, and future therapeutic development, and underscores the importance of population‐specific genomic studies.
Nasibeh Soltani, Zahra Shahbazi, M. Fallah et al.· Human Mutation· 0 citations
Background Inherited ocular disorders are a leading cause of early-onset visual impairment, particularly in populations with high consanguinity such as Iran, where a substantial proportion of affected individuals remain without a molecular diagnosis after conventional evaluation. We aimed to determine the diagnostic yi...
Ali Asadi, Seyed Ataollah Sadat Shandiz, Amirhossein Ebrahimi et al.· Molecular Genetics and Metab...· 0 citations
The identification of novel variants enhances molecular understanding and facilitates more precise genotype-phenotype correlations, reinforcing the value of comprehensive genomic diagnostics in epilepsy management and demonstrating the clinical utility of gene panels and WES in complex phenotypes.
Renata Szalai, Á. Till, Krisztina Galimurka et al.· Human Genetics· 0 citations
Hereditary hemochromatosis (HH) is a genetic disorder of iron metabolism characterized by excessive iron accumulation and considerable phenotypic variability, often making diagnosis challenging. This study aimed to identify pathogenic variants associated with HH using targeted next-generation sequencing (NGS). In a...
V. Galani, Chrysoula Apostolou, F. Kalala et al.· Annals of Hematology· 0 citations
INTRODUCTION
Hypotrichosis with juvenile macular dystrophy (HJMD) is a rare autosomal recessive disorder caused by pathogenic variants in the CDH3 gene. Most reported cases have occurred in Middle Eastern and Asian populations, and individuals of African ancestry remain markedly underrepresented in inherited retinal di...
Vaidyanathan Arthi, Morales Moreno Paula, E. P. Cesar et al.· Ophthalmic Genetics· 0 citations
Background/Objectives: To describe the genetic resolution rate, molecular findings, and genotype–phenotype correlations of non-ABCA4 and non-BEST1 inherited macular dystrophies (IMDs) within an Irish inherited retinal disease (IRD) registry. Methods: Retrospective review of individuals with a clinical diagnosis of macu...
Deirdre A Harford, Marcus Conway, Bridget Moran et al.· Genes· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.