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Identification of a Novel Variant in CC2D1A Gene Linked to Autosomal Recessive Intellectual Disability 3 in an Iranian Family and Investigating the Structure and Pleiotropic Effects of this Gene.

Authors :
Rashvand Z
Najmabadi H
Kahrizi K
Mozhdehipanah H
Moradi M
Estaki Z
Taherkhani K
Nikzat N
Najafipour R
Omrani MD
Source :
Iranian journal of child neurology [Iran J Child Neurol] 2024 Winter; Vol. 18 (1), pp. 25-41. Date of Electronic Publication: 2024 Jan 18.
Publication Year :
2024

Abstract

Objectives: Intellectual disability (ID) represents a significant health challenge due to its diverse and intricate nature. A multitude of genes play a role in brain development and function, with defects in these genes potentially leading to ID. Considering that many of these genes have yet to be identified, and those identified have only been found in a small number of patients, no complete description of the phenotype created by these genes is available. CC2D1A is one of the genes whose loss-of-function mutation leads to a rare form of non-syndromic ID-3(OMIM*610055), and four pathogenic variants have been reported in this gene so far.<br />Materials & Methods: n the current study, two affected females were included with an initial diagnosis of ID who were from an Iranian family with consanguineous marriage. Whole-exome sequencing was used to identify the probable genetic defects. The Genotypic and phenotypic characteristics of the patients were compared with a mutation in the CC2D1A gene, and then the structure of the gene and its reported variants were investigated.<br />Results: The patients carried a novel homozygous splicing variant (NM_017721, c.1641+1G>A) in intron 14, which is pathogenic according to the ACMG guideline. Loss-of-function mutations in CC2D1A have severe phenotypic consequences such as ID, autism spectrum disorder (ASD), and seizures. However, missense mutations lead to ASD with or without ID, and in some patients, they cause ciliopathy.<br />Conclusion: This study reports the fifth novel, probably pathogenic variant in the CC2D1A gene. Comparing the clinical and molecular genetic features of the patients with loss-of-function mutation helped to describe the phenotype caused by this gene more precisely. Investigating the  CC2D1A  gene's mutations and structure revealed that it performs multiple functions. The DM14 domain appears more pivotal in triggering severe clinical symptoms, including ID, than the C2 domain.<br />Competing Interests: The authors have no conflicts of interest to declare.<br /> (© 2023 The Authors.)

Details

Language :
English
ISSN :
1735-4668
Volume :
18
Issue :
1
Database :
MEDLINE
Journal :
Iranian journal of child neurology
Publication Type :
Academic Journal
Accession number :
38375126
Full Text :
https://doi.org/10.22037/ijcn.v18i1.42188