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PMID: 25288738 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Autism spectrum disorder severity reflects the average contribution of de novo and familial influences.

Robinson EB, Samocha KE, Kosmicki JA, McGrath L, Neale BM, Perlis RH, Daly MJ

Abstract

Autism spectrum disorders (ASDs) are a highly heterogeneous group of conditions--phenotypically and genetically--although the link between phenotypic variation and differences in genetic architecture is unclear. This study aimed to determine whether differences in cognitive impairment and symptom severity reflect variation in the degree to which ASD cases reflect de novo or familial influences. Using data from more than 2,000 simplex cases of ASD, we examined the relationship between intelligence quotient (IQ), behavior and language assessments, and rate of de novo loss of function (LOF) mutations and family history of broadly defined psychiatric disease (depressive disorders, bipolar disorder, and schizophrenia; history of psychiatric hospitalization). Proband IQ was negatively associated with de novo LOF rate (P = 0.03) and positively associated with family history of psychiatric disease (P = 0.003). Female cases had a higher frequency of sporadic genetic events across the severity distribution (P = 0.01). High rates of LOF mutation and low frequencies of family history of psychiatric illness were seen in individuals who were unable to complete a traditional IQ test, a group with the greatest degree of language and behavioral impairment. These analyses provide strong evidence that familial risk for neuropsychiatric disease becomes more relevant to ASD etiology as cases become higher functioning. The findings of this study reinforce that there are many routes to the diagnostic category of autism and could lead to genetic studies with more specific insights into individual cases.

Keywords
epidemiology heterogeneity neuropsychiatric genetics phenotype
MeSH Terms
Behavior Bipolar Disorder/genetics Child Development Disorders, Pervasive/diagnosis,epidemiology,genetics Cognition Disorders Female Genetic Predisposition to Disease Humans Intelligence Tests Male Mutation Phenotype Regression Analysis Risk Factors Schizophrenia/genetics Seizures
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Robinson Elise B
Analytic and Translational Genetics Unit, Department of Medicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114; Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142; [email protected].
Samocha Kaitlin E
Analytic and Translational Genetics Unit, Department of Medicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114; Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142; Program in Genetics and Genomics, Biological and Biomedical Sciences, Harvard Medical School, Boston, MA 02114;
Kosmicki Jack A
Analytic and Translational Genetics Unit, Department of Medicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114; Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142; Center for Biomedical Informatics, Harvard Medical School, Boston, MA 02115;
McGrath Lauren
School of Education, Teaching, and Health, American University, Washington, DC 20016; and Psychiatric and Neurodevelopmental Genetics Unit, Center for Human Genetic Research and Department of Psychiatry, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114.
Neale Benjamin M
Analytic and Translational Genetics Unit, Department of Medicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114; Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142;
Perlis Roy H
Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142; Psychiatric and Neurodevelopmental Genetics Unit, Center for Human Genetic Research and Department of Psychiatry, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114.
Daly Mark J
Analytic and Translational Genetics Unit, Department of Medicine, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114; Stanley Center for Psychiatric Research and Program in Medical and Population Genetics, Broad Institute of Harvard and MIT, Cambridge, MA 02142;
References (38)
38 references, click to expand
  1. Sporadic autism exomes reveal a highly interconnected protein network of de novo mutations.
    Nature. 2012 Apr 04;485(7397):246-50 PMID: 22495309
  2. Patterns and rates of exonic de novo mutations in autism spectrum disorders.
    Nature. 2012 Apr 04;485(7397):242-5 PMID: 22495311
  3. Most genetic risk for autism resides with common variation.
    Nat Genet. 2014 Aug;46(8):881-5 PMID: 25038753
  4. Genetic relationship between five psychiatric disorders estimated from genome-wide SNPs.
    Nat Genet. 2013 Sep;45(9):984-94 PMID: 23933821
  5. Rare de novo and transmitted copy-number variation in autistic spectrum disorders.
    Neuron. 2011 Jun 9;70(5):886-97 PMID: 21658582
  6. DNA evidence for strong genetic stability and increasing heritability of intelligence from age 7 to 12.
    Mol Psychiatry. 2014 Mar;19(3):380-4 PMID: 23358157
  7. Defining the broader, medium and narrow autism phenotype among parents using the Autism Spectrum Quotient (AQ).
    Mol Autism. 2010 Jun 17;1(1):10 PMID: 20678260
  8. Identification of risk loci with shared effects on five major psychiatric disorders: a genome-wide analysis.
    Lancet. 2013 Apr 20;381(9875):1371-1379 PMID: 23453885
  9. De novo gene disruptions in children on the autistic spectrum.
    Neuron. 2012 Apr 26;74(2):285-99 PMID: 22542183
  10. Is autism really a coherent syndrome in boys, or girls?
    Br J Psychol. 2009 Feb;100(Pt 1):33-7 PMID: 19019279
  11. Prevalence of depression by race/ethnicity: findings from the National Health and Nutrition Examination Survey III.
    Am J Public Health. 2005 Jun;95(6):998-1000 PMID: 15914823
  12. Recurrence risk for autism spectrum disorders: a Baby Siblings Research Consortium study.
    Pediatrics. 2011 Sep;128(3):e488-95 PMID: 21844053
  13. De novo mutations in schizophrenia implicate synaptic networks.
    Nature. 2014 Feb 13;506(7487):179-84 PMID: 24463507
  14. The Simons Simplex Collection: a resource for identification of autism genetic risk factors.
    Neuron. 2010 Oct 21;68(2):192-5 PMID: 20955926
  15. Multiple recurrent de novo CNVs, including duplications of the 7q11.23 Williams syndrome region, are strongly associated with autism.
    Neuron. 2011 Jun 9;70(5):863-85 PMID: 21658581
  16. A framework for the interpretation of de novo mutation in human disease.
    Nat Genet. 2014 Sep;46(9):944-50 PMID: 25086666
  17. Epidemiology of autistic disorder and other pervasive developmental disorders.
    J Clin Psychiatry. 2005;66 Suppl 10:3-8 PMID: 16401144
  18. Individual common variants exert weak effects on the risk for autism spectrum disorders.
    Hum Mol Genet. 2012 Nov 1;21(21):4781-92 PMID: 22843504
  19. Genetic architectures of psychiatric disorders: the emerging picture and its implications.
    Nat Rev Genet. 2012 Jul 10;13(8):537-51 PMID: 22777127
  20. Examining and interpreting the female protective effect against autistic behavior.
    Proc Natl Acad Sci U S A. 2013 Mar 26;110(13):5258-62 PMID: 23431162
  21. Trajectories of autism severity in children using standardized ADOS scores.
    Pediatrics. 2012 Nov;130(5):e1278-84 PMID: 23090336
  22. Familial mental retardation.
    Behav Genet. 1984 May;14(3):161-70 PMID: 6487226
  23. A higher mutational burden in females supports a "female protective model" in neurodevelopmental disorders.
    Am J Hum Genet. 2014 Mar 6;94(3):415-25 PMID: 24581740
  24. Genome-wide association studies establish that human intelligence is highly heritable and polygenic.
    Mol Psychiatry. 2011 Oct;16(10):996-1005 PMID: 21826061
  25. Childhood intelligence is heritable, highly polygenic and associated with FNBP1L.
    Mol Psychiatry. 2014 Feb;19(2):253-8 PMID: 23358156
  26. Sibling recurrence and the genetic epidemiology of autism.
    Am J Psychiatry. 2010 Nov;167(11):1349-56 PMID: 20889652
  27. Family history of schizophrenia and bipolar disorder as risk factors for autism.
    Arch Gen Psychiatry. 2012 Nov;69(11):1099-1103 PMID: 22752149
  28. Optimal outcome in individuals with a history of autism.
    J Child Psychol Psychiatry. 2013 Feb;54(2):195-205 PMID: 23320807
  29. Genetic contributions to stability and change in intelligence from childhood to old age.
    Nature. 2012 Jan 18;482(7384):212-5 PMID: 22258510
  30. Autism genetics: searching for specificity and convergence.
    Genome Biol. 2012 Jul 31;13(7):247 PMID: 22849751
  31. Diagnostic exome sequencing in persons with severe intellectual disability.
    N Engl J Med. 2012 Nov 15;367(20):1921-9 PMID: 23033978
  32. Evidence that autistic traits show the same etiology in the general population and at the quantitative extremes (5%, 2.5%, and 1%).
    Arch Gen Psychiatry. 2011 Nov;68(11):1113-21 PMID: 22065527
  33. Rare inherited variation in autism: beginning to see the forest and a few trees.
    Neuron. 2013 Jan 23;77(2):209-11 PMID: 23352155
  34. Mood disorders in mothers of children on the autism spectrum are associated with higher functioning autism.
    Autism Res Treat. 2012;2012:435646 PMID: 22934172
  35. Autism spectrum disorders and autistic like traits: similar etiology in the extreme end and the normal variation.
    Arch Gen Psychiatry. 2012 Jan;69(1):46-52 PMID: 22213788
  36. The role of de novo mutations in the genetics of autism spectrum disorders.
    Nat Rev Genet. 2014 Feb;15(2):133-41 PMID: 24430941
  37. De novo mutations revealed by whole-exome sequencing are strongly associated with autism.
    Nature. 2012 Apr 04;485(7397):237-41 PMID: 22495306
  38. Range of genetic mutations associated with severe non-syndromic sporadic intellectual disability: an exome sequencing study.
    Lancet. 2012 Nov 10;380(9854):1674-82 PMID: 23020937
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2014-10-21
Epub
2014-00-06
Pages
15161-5
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC4210299
Subset
IM
Grants
Wellcome Trust · 102215 · United Kingdom
NIMH NIH HHS · K01 MH099286 · United States
NHGRI NIH HHS · T32 HG002295 · United States
NIMH NIH HHS · 1K01MH099286-01A1 · United States
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