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Disruption of the ASTN2 / TRIM32 locus at 9q33.1 is a risk factor in males for Autism Spectrum Disorders, ADHD and other neurodevelopmental phenotypes
- Source :
- Lionel, A C, Tammimies, K, Vaags, A K, Rosenfeld, J A, Ahn, J W, Merico, D, Noor, A, Runke, C K, Pillalamarri, V K, Carter, M T, Gazzellone, M J, Thiruvahindrapuram, B, Fagerberg, C R, Laulund, L W, Pellecchia, G, Lamoureux, S, Deshpande, C, Clayton-Smith, J, White, A C, Leather, S, Trounce, J, Bedford, H M, Hatchwell, E, Eis, P S, Yuen, R K C, Walker, S, Uddin, M, Geraghty, M T, Nikkel, S M, Tomiak, E M, Fernandez, B A, Soreni, N, Crosbie, J, Arnold, P D, Schachar, R J, Roberts, W, Paterson, A D, So, J, Szatmari, P, Chrysler, C, Woodbury-Smith, M, Lowry, R B, Zwaigenbaum, L, Mandyam, D, Wei, J, Macdonald, J R, Howe, J L, Nalpathamkalam, T, Wang, Z, Tolson, D, Cobb, D S, Wilks, T M, Sorensen, M J, Bader, P I, An, Y, Wu, B-L, Musumeci, S A, Romano, C, Postorivo, D, Nardone, A M, Della Monica, M, Scarano, G, Zoccante, L, Novara, F, Zuffardi, O, Ciccone, R, Antona, V, Carella, M, Zelante, L, Cavalli, P, Poggiani, C, Cavallari, U, Argiropoulos, B, Chernos, J, Brasch-Andersen, C, Speevak, M, Fichera, M, Ogilvie, C M, Shen, Y, Hodge, J C, Talkowski, M E, Stavropoulos, D J, Marshall, C R & Scherer, S W 2014, ' Disruption of the ASTN2 / TRIM32 locus at 9q33.1 is a risk factor in males for Autism Spectrum Disorders, ADHD and other neurodevelopmental phenotypes ', Human Molecular Genetics, vol. 23, no. 10, ddt669, pp. 2752-2768 . https://doi.org/10.1093/hmg/ddt669, Human molecular genetics, vol 23, iss 10
- Publication Year :
- 2014
-
Abstract
- Rare copy number variants (CNVs) disrupting ASTN2 or both ASTN2 and TRIM32 have been reported at 9q33.1 by genome-wide studies in a few individuals with neurodevelopmental disorders (NDDs). The vertebrate-specific astrotactins, ASTN2 and its paralog ASTN1, have key roles in glial-guided neuronal migration during brain development. To determine the prevalence of astrotactin mutations and delineate their associated phenotypic spectrum, we screened ASTN2/TRIM32 and ASTN1 (1q25.2) for exonic CNVs in clinical microarray data from 89 985 individuals across 10 sites, including 64 114 NDD subjects. In this clinical dataset, we identified 46 deletions and 12 duplications affecting ASTN2. Deletions of ASTN1 were much rarer. Deletions near the 3' terminus of ASTN2, which would disrupt all transcript isoforms (a subset of these deletions also included TRIM32), were significantly enriched in the NDD subjects (P = 0.002) compared with 44 085 population-based controls. Frequent phenotypes observed in individuals with such deletions include autism spectrum disorder (ASD), attention deficit hyperactivity disorder (ADHD), speech delay, anxiety and obsessive compulsive disorder (OCD). The 3'-terminal ASTN2 deletions were significantly enriched compared with controls in males with NDDs, but not in females. Upon quantifying ASTN2 human brain RNA, we observed shorter isoforms expressed from an alternative transcription start site of recent evolutionary origin near the 3' end. Spatiotemporal expression profiling in the human brain revealed consistently high ASTN1 expression while ASTN2 expression peaked in the early embryonic neocortex and postnatal cerebellar cortex. Our findings shed new light on the role of the astrotactins in psychopathology and their interplay in human neurodevelopment.
- Subjects :
- Male
Receptors, Cell Surface/genetics
Autism
Child Development Disorders, Pervasive/genetics
Gene Expression
Genome-wide association study
Medical and Health Sciences
Tripartite Motif Proteins
Risk Factors
Receptors
2.1 Biological and endogenous factors
Protein Isoforms
Nerve Tissue Proteins/genetics
Copy-number variation
Aetiology
Child
Genetics (clinical)
Sequence Deletion
Pediatric
Genetics & Heredity
Genetics
education.field_of_study
Single Nucleotide
Articles
General Medicine
Exons
Biological Sciences
Mental Health
Phenotype
Autism spectrum disorder
Organ Specificity
Cerebellar cortex
Child, Preschool
Cell Surface
Speech delay
Female
medicine.symptom
Transcription Initiation Site
Attention Deficit Disorder with Hyperactivity/genetics
Chromosomes, Human, Pair 9
Human
Pair 9
Adult
Pediatric Research Initiative
Child Development Disorders
Adolescent
DNA Copy Number Variations
Intellectual and Developmental Disabilities (IDD)
Ubiquitin-Protein Ligases
Population
Transcription Factors/genetics
Nerve Tissue Proteins
Receptors, Cell Surface
Biology
Polymorphism, Single Nucleotide
Chromosomes
Young Adult
Clinical Research
Protein Isoforms/genetics
Behavioral and Social Science
medicine
Attention deficit hyperactivity disorder
Humans
Genetic Predisposition to Disease
Polymorphism
Preschool
education
Molecular Biology
Genetic Association Studies
Pervasive
Glycoproteins
Human Genome
Neurosciences
Infant, Newborn
Glycoproteins/genetics
Infant
Newborn
medicine.disease
Brain Disorders
Attention Deficit Disorder with Hyperactivity
Child Development Disorders, Pervasive
Case-Control Studies
Transcription Factors
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Lionel, A C, Tammimies, K, Vaags, A K, Rosenfeld, J A, Ahn, J W, Merico, D, Noor, A, Runke, C K, Pillalamarri, V K, Carter, M T, Gazzellone, M J, Thiruvahindrapuram, B, Fagerberg, C R, Laulund, L W, Pellecchia, G, Lamoureux, S, Deshpande, C, Clayton-Smith, J, White, A C, Leather, S, Trounce, J, Bedford, H M, Hatchwell, E, Eis, P S, Yuen, R K C, Walker, S, Uddin, M, Geraghty, M T, Nikkel, S M, Tomiak, E M, Fernandez, B A, Soreni, N, Crosbie, J, Arnold, P D, Schachar, R J, Roberts, W, Paterson, A D, So, J, Szatmari, P, Chrysler, C, Woodbury-Smith, M, Lowry, R B, Zwaigenbaum, L, Mandyam, D, Wei, J, Macdonald, J R, Howe, J L, Nalpathamkalam, T, Wang, Z, Tolson, D, Cobb, D S, Wilks, T M, Sorensen, M J, Bader, P I, An, Y, Wu, B-L, Musumeci, S A, Romano, C, Postorivo, D, Nardone, A M, Della Monica, M, Scarano, G, Zoccante, L, Novara, F, Zuffardi, O, Ciccone, R, Antona, V, Carella, M, Zelante, L, Cavalli, P, Poggiani, C, Cavallari, U, Argiropoulos, B, Chernos, J, Brasch-Andersen, C, Speevak, M, Fichera, M, Ogilvie, C M, Shen, Y, Hodge, J C, Talkowski, M E, Stavropoulos, D J, Marshall, C R & Scherer, S W 2014, ' Disruption of the ASTN2 / TRIM32 locus at 9q33.1 is a risk factor in males for Autism Spectrum Disorders, ADHD and other neurodevelopmental phenotypes ', Human Molecular Genetics, vol. 23, no. 10, ddt669, pp. 2752-2768 . https://doi.org/10.1093/hmg/ddt669, Human molecular genetics, vol 23, iss 10
- Accession number :
- edsair.doi.dedup.....8bfeae936d3d7f9ee8d7af79c0056ff4
- Full Text :
- https://doi.org/10.1093/hmg/ddt669