Title of article
New Evidence for the Role of Calpain 10 in Autosomal Recessive Intellectual Disability: Identification of Two Novel Nonsense Variants by Exome Sequencing in Iranian Families
Author/Authors
Oladnabi, Morteza Genetics Research Center - University of Social Welfare and Rehabilitation Sciences , Musante, Luciana Department of Human Molecular Genetics - Max Planck Institute for Molecular Genetics - Germany , Larti, Farzaneh Genetics Research Center - University of Social Welfare and Rehabilitation Sciences , Hu, Hao Department of Human Molecular Genetics - Max Planck Institute for Molecular Genetics - Germany , Abedini, Sedigheh Genetics Research Center - University of Social Welfare and Rehabilitation Sciences , Wienker, Thomas Department of Human Molecular Genetics - Max Planck Institute for Molecular Genetics - Germany , Hilger Ropers, Hans Department of Human Molecular Genetics - Max Planck Institute for Molecular Genetics - Germany , Kahrizi, Kimia Genetics Research Center - University of Social Welfare and Rehabilitation Sciences , Najmabadi, Hossein Genetics Research Center - University of Social Welfare and Rehabilitation Sciences
Pages
6
From page
179
To page
184
Abstract
Background
Knowledge of the genes responsible for intellectual disability, particularly autosomal recessive forms, is rapidly expanding. Increasing numbers of the gene show great heterogeneity and supports the hypothesis that human genome may contain over 2000 causative genes with a critical role in brain development.
Methods
Since 2004, we have applied genome-wide SNP genotyping and next-generation sequencing in large consanguineous Iranian families with intellectual disability, to identify the genes harboring disease-causing mutations. The current study paved the way for identification of responsible genes in two unrelated Iranian families.
Results
We found two novel nonsense mutations, p.C77* and p.Q115*, in the calpain catalytic domain of CAPN10, which is a cysteine protease known to be involved in pathogenesis of noninsulin-dependent diabetes mellitus. Another different mutation in this gene (p.S138_R139ins5) has previously been reported in an Iranian family. All of these patients have common clinical features in spite of specific brain structural abnormalities on MRI.
Conclusions
Different mutations in CAPN10 have already been found in three independent Iranian families. These results have strongly supported the possible role of CAPN10 in human brain development. Altogether, we proposed CAPN10 as a promising candidate gene for intellectual disability, which should be considered in diagnostic gene panels.
Keywords:
Keywords
Calpain 10 , intellectual disability , Iran , next generation sequencing
Journal title
Archives of Iranian Medicine
Serial Year
2015
Record number
2515539
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