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A novel approach of homozygous haplotype sharing identifies candidate genes in autism spectrum disorder.

Jillian P Casey | Tiago Magalhaes | Judith M Conroy | Regina Regan | Naisha Shah | Richard Anney | Denis C Shields | Brett S Abrahams | Joana Almeida | Elena Bacchelli | Anthony J Bailey | Gillian Baird | Agatino Battaglia | Tom Berney | Nadia Bolshakova | Patrick F Bolton | Thomas Bourgeron | Sean Brennan | Phil Cali | Catarina Correia | Christina Corsello | Marc Coutanche | Geraldine Dawson | Maretha de Jonge | Richard Delorme | Eftichia Duketis | Frederico Duque | Annette Estes | Penny Farrar | Bridget A Fernandez | Susan E Folstein | Suzanne Foley | Eric Fombonne | Christine M Freitag | John Gilbert | Christopher Gillberg | Joseph T Glessner | Jonathan Green | Stephen J Guter | Hakon Hakonarson | Richard Holt | Gillian Hughes | Vanessa Hus | Roberta Igliozzi | Cecilia Kim | Sabine M Klauck | Alexander Kolevzon | Janine A Lamb | Marion Leboyer | Ann Le Couteur | Bennett L Leventhal | Catherine Lord | Sabata C Lund | Elena Maestrini | Carine Mantoulan | Christian R Marshall | Helen McConachie | Christopher J McDougle | Jane McGrath | William M McMahon | Alison Merikangas | Judith Miller | Fiorella Minopoli | Ghazala K Mirza | Jeff Munson | Stanley F Nelson | Gudrun Nygren | Guiomar Oliveira | Alistair T Pagnamenta | Katerina Papanikolaou | Jeremy R Parr | Barbara Parrini | Andrew Pickles | Dalila Pinto | Joseph Piven | David J Posey | Annemarie Poustka | Fritz Poustka | Jiannis Ragoussis | Bernadette Roge | Michael L Rutter | Ana F Sequeira | Latha Soorya | Inês Sousa | Nuala Sykes | Vera Stoppioni | Raffaella Tancredi | Maïté Tauber | Ann P Thompson | Susanne Thomson | John Tsiantis | Herman Van Engeland | John B Vincent | Fred Volkmar | Jacob A S Vorstman | Simon Wallace | Kai Wang | Thomas H Wassink | Kathy White | Kirsty Wing | Kerstin Wittemeyer | Brian L Yaspan | Lonnie Zwaigenbaum | Catalina Betancur | Joseph D Buxbaum | Rita M Cantor | Edwin H Cook | Hilary Coon | Michael L Cuccaro | Daniel H Geschwind | Jonathan L Haines | Joachim Hallmayer | Anthony P Monaco | John I Nurnberger | Margaret A Pericak-Vance | Gerard D Schellenberg | Stephen W Scherer | James S Sutcliffe | Peter Szatmari | Veronica J Vieland | Ellen M Wijsman | Andrew Green | Michael Gill | Louise Gallagher | Astrid Vicente | Sean Ennis
Human genetics | 2012

Autism spectrum disorder (ASD) is a highly heritable disorder of complex and heterogeneous aetiology. It is primarily characterized by altered cognitive ability including impaired language and communication skills and fundamental deficits in social reciprocity. Despite some notable successes in neuropsychiatric genetics, overall, the high heritability of ASD (~90%) remains poorly explained by common genetic risk variants. However, recent studies suggest that rare genomic variation, in particular copy number variation, may account for a significant proportion of the genetic basis of ASD. We present a large scale analysis to identify candidate genes which may contain low-frequency recessive variation contributing to ASD while taking into account the potential contribution of population differences to the genetic heterogeneity of ASD. Our strategy, homozygous haplotype (HH) mapping, aims to detect homozygous segments of identical haplotype structure that are shared at a higher frequency amongst ASD patients compared to parental controls. The analysis was performed on 1,402 Autism Genome Project trios genotyped for 1 million single nucleotide polymorphisms (SNPs). We identified 25 known and 1,218 novel ASD candidate genes in the discovery analysis including CADM2, ABHD14A, CHRFAM7A, GRIK2, GRM3, EPHA3, FGF10, KCND2, PDZK1, IMMP2L and FOXP2. Furthermore, 10 of the previously reported ASD genes and 300 of the novel candidates identified in the discovery analysis were replicated in an independent sample of 1,182 trios. Our results demonstrate that regions of HH are significantly enriched for previously reported ASD candidate genes and the observed association is independent of gene size (odds ratio 2.10). Our findings highlight the applicability of HH mapping in complex disorders such as ASD and offer an alternative approach to the analysis of genome-wide association data.

Pubmed ID: 21996756

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: NINDS NIH HHS, United States
    Id: R01 NS049261
  • Agency: NINDS NIH HHS, United States
    Id: NS049261
  • Agency: NINDS NIH HHS, United States
    Id: P01 NS026630
  • Agency: CIHR, Canada
  • Agency: NICHD NIH HHS, United States
    Id: P50 HD055751
  • Agency: NICHD NIH HHS, United States
    Id: P50 HD055784
  • Agency: Wellcome Trust, United Kingdom
    Id: 090532
  • Agency: NIMH NIH HHS, United States
    Id: MH06359
  • Agency: Wellcome Trust, United Kingdom
  • Agency: NIMH NIH HHS, United States
    Id: U54 MH066673
  • Agency: NICHD NIH HHS, United States
    Id: HD055751
  • Agency: NIMH NIH HHS, United States
    Id: MH57881
  • Agency: NICHD NIH HHS, United States
    Id: P50 HD055782
  • Agency: NIMH NIH HHS, United States
    Id: U24 MH081810
  • Agency: NICHD NIH HHS, United States
    Id: P01 HD035465
  • Agency: NIMH NIH HHS, United States
    Id: MH066673
  • Agency: NIMH NIH HHS, United States
    Id: R37 MH057881
  • Agency: Autism Speaks, United States
    Id: AS2482
  • Agency: Wellcome Trust, United Kingdom
    Id: 075491/Z/04
  • Agency: NIMH NIH HHS, United States
    Id: MH55284
  • Agency: NIMH NIH HHS, United States
    Id: MH080647
  • Agency: NIMH NIH HHS, United States
    Id: MH061009
  • Agency: NICHD NIH HHS, United States
    Id: HD055782
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH061009
  • Agency: NIMH NIH HHS, United States
    Id: MH081754
  • Agency: Medical Research Council, United Kingdom
    Id: G0601030
  • Agency: NIMH NIH HHS, United States
    Id: 1U24MH081810
  • Agency: NIMH NIH HHS, United States
    Id: U10 MH066766
  • Agency: NINDS NIH HHS, United States
    Id: R01 NS042165
  • Agency: NIMH NIH HHS, United States
    Id: MH66766
  • Agency: NIMH NIH HHS, United States
    Id: MH52708
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH057881
  • Agency: NINDS NIH HHS, United States
    Id: NS042165
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH080647
  • Agency: NICHD NIH HHS, United States
    Id: HD055784
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH081754
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH055284
  • Agency: NINDS NIH HHS, United States
    Id: NS026630
  • Agency: NICHD NIH HHS, United States
    Id: HD35465

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This is a list of tools and resources that we have found mentioned in this publication.


PLINK (tool)

RRID:SCR_001757

Open source whole genome association analysis toolset, designed to perform range of basic, large scale analyses in computationally efficient manner. Used for analysis of genotype/phenotype data. Through integration with gPLINK and Haploview, there is some support for subsequent visualization, annotation and storage of results. PLINK 1.9 is improved and second generation of the software.

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International HapMap Project (tool)

RRID:SCR_002846

THIS RESOURCE IS NO LONGER IN SERVICE, documented August 22, 2016. A multi-country collaboration among scientists and funding agencies to develop a public resource where genetic similarities and differences in human beings are identified and catalogued. Using this information, researchers will be able to find genes that affect health, disease, and individual responses to medications and environmental factors. All of the information generated by the Project will be released into the public domain. Their goal is to compare the genetic sequences of different individuals to identify chromosomal regions where genetic variants are shared. Public and private organizations in six countries are participating in the International HapMap Project. Data generated by the Project can be downloaded with minimal constraints. HapMap project related data, software, and documentation include: bulk data on genotypes, frequencies, LD data, phasing data, allocated SNPs, recombination rates and hotspots, SNP assays, Perlegen amplicons, raw data, inferred genotypes, and mitochondrial and chrY haplogroups; Generic Genome Browser software; protocols and information on assay design, genotyping and other protocols used in the project; and documentation of samples/individuals and the XML format used in the project.

View all literature mentions

Haploview (tool)

RRID:SCR_003076

A Java based software tool designed to simplify and expedite the process of haplotype analysis by providing a common interface to several tasks relating to such analyses. Haploview currently allows users to examine block structures, generate haplotypes in these blocks, run association tests, and save the data in a number of formats. All functionalities are highly customizable. (entry from Genetic Analysis Software) * LD & haplotype block analysis * haplotype population frequency estimation * single SNP and haplotype association tests * permutation testing for association significance * implementation of Paul de Bakker's Tagger tag SNP selection algorithm. * automatic download of phased genotype data from HapMap * visualization and plotting of PLINK whole genome association results including advanced filtering options Haploview is fully compatible with data dumps from the HapMap project and the Perlegen Genotype Browser. It can analyze thousands of SNPs (tens of thousands in command line mode) in thousands of individuals. Note: Haploview is currently on a development and support freeze. The team is currently looking at a variety of options in order to provide support for the software. Haploview is an open source project hosted by SourceForge. The source can be downloaded at the SourceForge project site.

View all literature mentions