4.7 Article

Identification of Mutations in TRAPPC9, which Encodes the NIK- and IKK-β-Binding Protein, in Nonsyndromic Autosornal-Recessive Mental Retardation

Journal

AMERICAN JOURNAL OF HUMAN GENETICS
Volume 85, Issue 6, Pages 909-915

Publisher

CELL PRESS
DOI: 10.1016/j.ajhg.2009.11.009

Keywords

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Funding

  1. Early Researcher Award from the Ontario provincial government
  2. NARSAD Independent Investigator Award

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Mental retardation/intellectual disability is a devastating neurodevelopmental disorder with serious impact oil affected individuals and their families, as well as on health and social services. It occurs with a prevalence of similar to 2%, is an etiologically heterogeneous condition, and is frequently the result of genetic aberrations. Autosomal-recessive forms of nonsyndromic MR (NS-ARMR) are believed to be common, yet only five genes have been identified. We have used homozygosity mapping to search for the gene responsible for NS-ARMR in a large Pakistani pedigree. Using Affymetrix 5.0 single nucleotide polymorphism (SNP) microarrays, we identified a 3.2 Mb region on 8q24 with a continuous run of 606 homozygous SNPs shared among all affected members of the family. Additional genotype data from microsatellite markers verified this, allowing Lis to calculate a two-point LOD score of 5.18. Within this region, we identified a truncating homozygous mutation, R47SX, in exon 7 of the gene TRAPPC9. In a second large NS-ARMR/ID family, previously linked to 8q24 in a study of Iranian families, we identified a 4 bp deletion within exon 14 of TRAPPC9, also segregating with the phenotype and truncating the protein. This gene encodes NIK- and IKK-beta-binding protein (NIBP), which is involved in the NF-kappa B signaling pathway and directly interacts with IKK-beta and MAP3K14. Brain magnetic resonance imaging of affected individuals indicates the presence of mild cerebral white matter hypoplasia. Microcephaly is present in some but not all affected individuals. Thus, to Our knowledge, this is the sixth gene for NS-ARMR to be discovered.

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