Recurrent copy number changes in mentally retarded children harbour genes involved in cellular localization and the glutamate receptor complex

被引:38
作者
Poot, Martin [1 ]
Eleveld, Marc J. [1 ]
van't Slot, Ruben [1 ]
van Amstel, Hans Kristian Ploos [1 ]
Hochstenbach, Ron [1 ]
机构
[1] Univ Med Ctr Utrecht, Dept Med Genet, NL-3508 AB Utrecht, Netherlands
关键词
segmental aneuploidy profiling; BAC-based array-CGH; MCAMR; CNCs; COMPARATIVE GENOMIC HYBRIDIZATION; CHROMOSOME-ABNORMALITIES; SEGMENTAL DUPLICATIONS; STRUCTURAL VARIATION; MB DELETION; REARRANGEMENTS; MICRODELETION; RETARDATION; ARCHITECTURE; POLYMORPHISM;
D O I
10.1038/ejhg.2009.120
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To determine the phenotypic significance of copy number changes (CNCs) in the human genome, we performed genome-wide segmental aneuploidy profiling by BAC-based array-CGH of 278 unrelated patients with multiple congenital abnormalities and mental retardation (MCAMR) and in 48 unaffected family members. In 20 patients, we found de novo CNCs composed of multiple consecutive probes. Of the 125 probes making up these probably pathogenic CNCs, 14 were also found as single CNCs in other patients and 5 in healthy individuals. Thus, these CNCs are not by themselves pathogenic. Almost one out of five patients and almost one out of six healthy individuals in our study cohort carried a gain or a loss for any one of the recently discovered microdeletion/microduplication loci, whereas seven patients and one healthy individual showed losses or gains for at least two different loci. The pathogenic burden resulting from these CNCs may be limited as they were found with similar frequencies among patients and healthy individuals (P = 0.165; Fischer's exact test), and several individuals showed CNCs at multiple loci. CNCs occurring specifically in our study cohort were enriched for components of the glutamate receptor family (GRIA2, GRIA4, GRIK2 and GRIK4) and genes encoding proteins involved in guiding cell localization during development (ATP1A2, GIRK3, GRIA2, KCNJ3, KCNJ10, KCNK17 and KCNK5). This indicates that disease cohort-specific compilations of CNCs may aid in identifying loci, genes and biological processes that contribute to the phenotype of patients. European Journal of Human Genetics (2010) 18, 39-46; doi:10.1038/ejhg.2009.120; published online 22 July 2009
引用
收藏
页码:39 / 46
页数:8
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