Deletions in 16q24.2 are associated with autism spectrum disorder, intellectual disability and congenital renal malformation
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S. Scherer | J. Rosenfeld | L. Shaffer | B. Fernandez | A. C. Lionel | C. Marshall | D. Chitayat | D. Stavropoulos | N. Rosenblum | Luis Fernando González Escobar | M. Pinsk | R. Babul‐Hirji | A. Vaags | J. Hodge | J. Cain | Jennelle C Hodge | S. Dyack | G. R. Handrigan | V. Yiu | J. Stegman | McKinsey L. Goodenberger | G. Handrigan | Jennelle C. Hodge
[1] Janet B W Williams,et al. Diagnostic and Statistical Manual of Mental Disorders , 2013 .
[2] Daniele Merico,et al. Rare Copy Number Variations in Adults with Tetralogy of Fallot Implicate Novel Risk Gene Pathways , 2012, PLoS genetics.
[3] F. Rivier,et al. 14q12 and severe Rett-like phenotypes: new clinical insights and physical mapping of FOXG1-regulatory elements , 2012, European Journal of Human Genetics.
[4] M. Vikkula,et al. Microcephaly, intellectual impairment, bilateral vesicoureteral reflux, distichiasis, and glomuvenous malformations associated with a 16q24.3 contiguous gene deletion and a Glomulin mutation , 2012, American journal of medical genetics. Part A.
[5] M. Tekin,et al. Familial 16q24.3 microdeletion involving ANKRD11 causes a KBG‐like syndrome , 2012, American journal of medical genetics. Part A.
[6] H. Peeters,et al. Haploinsufficiency of ANKRD11 causes mild cognitive impairment, short stature and minor dysmorphisms , 2011, European Journal of Human Genetics.
[7] Mustafa Tekin,et al. Mutations in ANKRD11 cause KBG syndrome, characterized by intellectual disability, skeletal malformations, and macrodontia. , 2011, American journal of human genetics.
[8] John Wei,et al. Identify Risk Genes for ADHD Rare Copy Number Variation Discovery and Cross-Disorder Comparisons , 2011 .
[9] J. Hellings,et al. ANKRD11 gene deletion in a 17-year-old male. , 2011, Clinical Dysmorphology.
[10] R. Baldock,et al. The GUDMAP database – an online resource for genitourinary research , 2011, Development.
[11] Janan T. Eppig,et al. The mouse Gene Expression Database (GXD): 2011 update , 2010, Nucleic Acids Res..
[12] Sharon R Grossman,et al. Integrating common and rare genetic variation in diverse human populations , 2010, Nature.
[13] Gary D Bader,et al. Functional impact of global rare copy number variation in autism spectrum disorders , 2010, Nature.
[14] J. Rosenfeld,et al. Paternally inherited microdeletion at 15q11.2 confirms a significant role for the SNORD116 C/D box snoRNA cluster in Prader–Willi syndrome , 2010, European Journal of Human Genetics.
[15] Birgit Sikkema-Raddatz,et al. Identification of ANKRD11 and ZNF778 as candidate genes for autism and variable cognitive impairment in the novel 16q24.3 microdeletion syndrome , 2010, European Journal of Human Genetics.
[16] Jake K. Byrnes,et al. Genome-wide association study of copy number variation in 16,000 cases of eight common diseases and 3,000 shared controls , 2010 .
[17] Laura J. Bierut,et al. A genome-wide association study of alcohol dependence , 2010, Proceedings of the National Academy of Sciences.
[18] Jake K. Byrnes,et al. Genome-wide association study of copy number variation in 16,000 cases of eight common diseases and 3,000 shared controls , 2010, Nature.
[19] Tomas W. Fitzgerald,et al. Genomic and Genic Deletions of the FOX Gene Cluster on 16q24.1 and Inactivating Mutations of FOXF1 Cause Alveolar Capillary Dysplasia and Other Malformations , 2009, American journal of human genetics.
[20] R. McPherson,et al. Kinesin family member 6 variant Trp719Arg does not associate with angiographically defined coronary artery disease in the Ottawa Heart Genomics Study. , 2009, Journal of the American College of Cardiology.
[21] J. Lilien,et al. Alterations in CDH15 and KIRREL3 in patients with mild to severe intellectual disability. , 2008, American journal of human genetics.
[22] L. Shaffer,et al. Identification of a previously unrecognized microdeletion syndrome of 16q11.2q12.2 , 2008, Clinical genetics.
[23] Jamie A Davies,et al. GUDMAP: the genitourinary developmental molecular anatomy project. , 2008, Journal of the American Society of Nephrology : JASN.
[24] D. Pinto,et al. Structural variation of chromosomes in autism spectrum disorder. , 2008, American journal of human genetics.
[25] Bin Zhou,et al. Developmental expression of LC3α and β: Absence of fibronectin or autophagy phenotype in LC3β knockout mice , 2008 .
[26] Bin Zhou,et al. Developmental expression of LC3alpha and beta: absence of fibronectin or autophagy phenotype in LC3beta knockout mice. , 2008, Developmental dynamics : an official publication of the American Association of Anatomists.
[27] Gary D. Bader,et al. Germ-line DNA copy number variation frequencies in a large North American population , 2007, Human Genetics.
[28] A. Slavotinek,et al. KBG Syndrome: Report of Twins, Neurological Characteristics, and Delineation of Diagnostic Criteria , 2007 .
[29] Michael Krawczak,et al. PopGen: Population-Based Recruitment of Patients and Controls for the Analysis of Complex Genotype-Phenotype Relationships , 2006, Public Health Genomics.
[30] Bassem A Bejjani,et al. Use of targeted array‐based CGH for the clinical diagnosis of chromosomal imbalance: Is less more? , 2005, American journal of medical genetics. Part A.
[31] Jun O. Liu,et al. Post-translational Modifications of Three Members of the Human MAP1LC3 Family and Detection of a Novel Type of Modification for MAP1LC3B* , 2003, Journal of Biological Chemistry.
[32] H. Simmonds,et al. Combined adenine phosphoribosyltransferase and N-acetylgalactosamine-6-sulfate sulfatase deficiency. , 1999, Molecular genetics and metabolism.
[33] J. Rabe-Jabłońska,et al. [Affective disorders in the fourth edition of the classification of mental disorders prepared by the American Psychiatric Association -- diagnostic and statistical manual of mental disorders]. , 1993, Psychiatria polska.