Mutation screening and transmission disequilibrium study of ATP10C in autism
- 8 March 2002
- journal article
- research article
- Published by Wiley in American Journal of Medical Genetics
- Vol. 114 (2) , 137-143
- https://doi.org/10.1002/ajmg.10238
Abstract
Autism is a complex genetic disorder. Chromosome 15 is of particular interest in this disorder, because of previous reports of individuals with autism with chromosomal abnormalities in the 15q11‐q13 region. Transmission disequilibrium between polymorphisms in this region and autism has been also been reported in some, but not all studies. Recently, a novel maternally expressed gene, ATP10C, was characterized and mapped to the chromosome 15q11‐q13 region, 200 kb distal to UBE3A. It encodes a putative aminophospholipid translocase likely to be involved in the asymmetric distribution of proteins in the cell membrane. Preferential maternal expression has been demonstrated in fibroblasts and brain. Because of its physical location and imprinting pattern, ATP10C was considered to be a candidate gene for chromosome 15‐associated autism. In an effort to find the genes responsible for autism in this chromosomal region, 1.5 kb of the 5′ flanking region, as well as the coding and splicing regions of ATP10C, were screened for sequence variants. Several polymorphic markers including five nonsynonymous SNPs were identified. To investigate transmission disequilibrium between ATP10C and autism, a family‐based association study was conducted for 14 markers in 115 autism trios. No significant transmission disequilibrium was found, suggesting ATP10C is unlikely to contribute strongly to susceptibility to autism in these families. However, due to limited power to detect genes of modest effect, the possible functional role of the nonsynonymous SNPs and the functional implications of the SNPs identified from 5′ flanking region and intron 2 splicing region may be evaluated in further studies.Keywords
This publication has 30 references indexed in Scilit:
- Linkage Disequilibrium at the Angelman Syndrome Gene UBE3A in Autism FamiliesGenomics, 2001
- A Genomewide Screen for Autism: Strong Evidence for Linkage to Chromosomes 2q, 7q, and 16pAmerican Journal of Human Genetics, 2001
- Evidence for a Susceptibility Gene for Autism on Chromosome 2 and for Genetic HeterogeneityAmerican Journal of Human Genetics, 2001
- Genetic studies in autistic disorder and chromosome 15neurogenetics, 2000
- Autistic Disorder and Chromosome 15q11–q13: Construction and Analysis of a BAC/PAC ContigGenomics, 1999
- Genetic Studies of Autistic Disorder and Chromosome 7Genomics, 1999
- A Genomic Screen of Autism: Evidence for a Multilocus EtiologyAmerican Journal of Human Genetics, 1999
- Mutation screening of the UBE3A /E6-AP gene in autistic disorderMolecular Psychiatry, 1999
- Linkage-Disequilibrium Mapping of Autistic Disorder, with 15q11-13 MarkersAmerican Journal of Human Genetics, 1998
- A full genome screen for autism with evidence for linkage to a region on chromosome 7q. International Molecular Genetic Study of Autism ConsortiumHuman Molecular Genetics, 1998