Social responsiveness scale-aided analysis of the clinical impact of copy number variations in autism

被引:0
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作者
Emma van Daalen
Chantal Kemner
Nienke E. Verbeek
Bert van der Zwaag
Trijnie Dijkhuizen
Patrick Rump
Renske Houben
Ruben van ‘t Slot
Maretha V. de Jonge
Wouter G. Staal
Frits A. Beemer
Jacob A. S. Vorstman
J. Peter H. Burbach
Hans Kristian Ploos van Amstel
Ron Hochstenbach
Eva H. Brilstra
Martin Poot
机构
[1] University Medical Centre,Department of Child and Adolescent Psychiatry
[2] University Medical Centre,Department of Developmental Psychology
[3] University Medical Centre,Department of Medical Genetics
[4] University of Groningen,Department of Genetics, University Medical Centre Groningen
[5] University Medical Centre,Department of Neuroscience and Pharmacology, Rudolf Magnus Institute of Neuroscience
[6] Radboud University,Department of Child and Adolescent Psychiatry
来源
neurogenetics | 2011年 / 12卷
关键词
Autism; Social Responsiveness Scale (SRS); SNP array-based CNV profiling; Gene prioritization; Phosphoinositol signaling; Contactin genes;
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学科分类号
摘要
Recent array-based studies have detected a wealth of copy number variations (CNVs) in patients with autism spectrum disorders (ASD). Since CNVs also occur in healthy individuals, their contributions to the patient’s phenotype remain largely unclear. In a cohort of children with symptoms of ASD, diagnosis of the index patient using ADOS-G and ADI-R was performed, and the Social Responsiveness Scale (SRS) was administered to the index patients, both parents, and all available siblings. CNVs were identified using SNP arrays and confirmed by FISH or array CGH. To evaluate the clinical significance of CNVs, we analyzed three families with multiple affected children (multiplex) and six families with a single affected child (simplex) in which at least one child carried a CNV with a brain-transcribed gene. CNVs containing genes that participate in pathways previously implicated in ASD, such as the phosphoinositol signaling pathway (PIK3CA, GIRDIN), contactin-based networks of cell communication (CNTN6), and microcephalin (MCPH1) were found not to co-segregate with ASD phenotypes. In one family, a loss of CNTN5 co-segregated with disease. This indicates that most CNVs may by themselves not be sufficient to cause ASD, but still may contribute to the phenotype by additive or epistatic interactions with inherited (transmitted) mutations or non-genetic factors. Our study extends the scope of genome-wide CNV profiling beyond de novo CNVs in sporadic patients and may aid in uncovering missing heritability in genome-wide screening studies of complex psychiatric disorders.
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页码:315 / 323
页数:8
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