Intellectual disability (ID) affects approximately 1-3% of the global population, with a higher prevalence reported in consanguineous populations due to autosomal recessive variants. The
C22orf31
gene is one of the important candidate genes that is expressed in the brain and is associated with global developmental delays and ID. We aimed to identify the genetic basis of ID, seizure, and microcephaly in a Saudi consanguineous family. Whole exome sequencing was performed on the affected individual from a consanguineous Saudi family, followed by Sanger validation and bioinformatics prediction. Our results showed a novel homozygous 5-base pair (bp) deletion NM_015370.1 (c.433-1_436delGAGTA; p.Ser145Lysfs*9) in the
C22orf31
gene. The gene is important and the identified mutation in the
C22orf31
gene may disrupt the canonical splice acceptor site and cause a frameshift, leading to a premature termination codon (PTC) that is predicted to trigger nonsense-mediated decay and complete protein loss. The patient manifested developmental delays and seizures along with microcephaly. In conclusion, we report a novel 5-bp deletion in the
C22orf31
gene in a Saudi patient. Functional studies and identification of additional families are needed to confirm the role of
C22orf31
in disease pathogenesis. This novel finding expands the mutational and clinical spectrum of
C22orf31
mutation-related neurodevelopmental disorders in Saudi Arabia.
Md. Safayet Hossain, O. Muthaffar, Angham Abdulrehman Abdulakreem et al.· Journal of Disability Resear...· 0 citations
The particular phenotype that was observed in the patient is comparable to the ones that are described in the KCTD7 related pathologies, combined with segregation analysis indicating both parents carried the variant heterogeneously present is a strong indication that the identified mutation consists of probably pathogenic mutation.
S. Alharazy, Peter Natesan Pushparaj, Rose Jelani et al.· Pakistan Journal of Medical...· 0 citations
This finding may represent the first reported Saudi family with a SYNE1 mutation associated with Autosomal Recessive Spinocerebellar Ataxia type 8 and Autosomal Recessive Cerebellar Ataxia type 1 and highlights the utility of molecular diagnostics.
A. Haque, M. Z. Alam, F. Bibi et al.· Pakistan Journal of Medical...· 0 citations