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Published on: August 15, 2019
CC2D2A, encoding a coiled-coil and C2 domain protein, causes autosomal-recessive mental retardation with retinitis
Abdul Noor1, Christian Windpassinger, Megha Patel
1Neurogenetics Section, Centre for Addiction and Mental Health, Toronto, ON M5T 1R8, Canada.
Abstract:
Autosomal-recessive inheritance is believed to be relatively common in mental retardation (MR), although only four genes for nonsyndromic autosomal-recessive mental retardation (ARMR) have been reported. In this study, we ascertained a consanguineous Pakistani family with ARMR in four living individuals from three branches of the family, plus an additional affected individual later identified as a phenocopy. Retinitis pigmentosa was present in affected individuals, but no other features suggestive of a syndromic form of MR were found. We used Affymetrix 500K microarrays to perform homozygosity mapping and identified a homozygous and haploidentical region of 11.2 Mb on chromosome 4p15.33-p15.2. Linkage analysis across this region produced a maximum two-point LOD score of 3.59. We sequenced genes within the critical region and identified a homozygous splice-site mutation segregating in the family, within a coiled-coil and C2 domain-containing gene, CC2D2A. This mutation leads to the skipping of exon 19, resulting in a frameshift and a truncated protein lacking the C2 domain. Conservation analysis for CC2D2A suggests a functional domain near the C terminus as well as the C2 domain. Preliminary functional studies of CC2D2A suggest a possible role in Ca(2+)-dependent signal transduction. Identifying the function of CC2D2A, and a possible common pathway with CC2D1A, in correct neuronal development and functioning may help identify possible therapeutic targets for MR.
Insights
Researchers identified a novel gene mutation, CC2D2A, responsible for autosomal-recessive mental retardation (ARMR) in a Pakistani family. This discovery advances understanding of ARMR genetics and potential therapeutic targets for neurodevelopmental disorders.
Area of Science:
- Genetics
- Neuroscience
- Molecular Biology
Background:
- Autosomal-recessive inheritance is a significant factor in mental retardation (MR), yet few genes for nonsyndromic forms (ARMR) are identified.
- Only four genes for ARMR have been previously reported, highlighting a gap in understanding its genetic basis.
Purpose of the Study:
- To identify the genetic cause of autosomal-recessive mental retardation in a consanguineous Pakistani family.
- To investigate the role of the identified gene in neuronal development and function.
Main Methods:
- Homozygosity mapping using Affymetrix 500K microarrays to pinpoint a shared region of homozygosity on chromosome 4p15.33-p15.2.
- Linkage analysis to confirm genetic linkage within the critical region.
- Sequencing of candidate genes within the critical region to identify the causative mutation.
Main Results:
- A homozygous splice-site mutation in the CC2D2A gene was identified, segregating with ARMR in the family.
- The mutation causes exon 19 skipping, leading to a frameshift and a truncated CC2D2A protein lacking the C2 domain.
- CC2D2A conservation analysis suggests functional importance of its C-terminal and C2 domains; preliminary studies indicate a role in Ca(2+)-dependent signal transduction.
Conclusions:
- The CC2D2A gene is implicated in autosomal-recessive mental retardation.
- Understanding CC2D2A's function in neuronal development may reveal therapeutic targets for MR and related neurodevelopmental disorders.
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