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

Επιστημονική δημοσίευση - Άρθρο Περιοδικού uoadl:3089135 93 Αναγνώσεις

Μονάδα:
Ερευνητικό υλικό ΕΚΠΑ
Τίτλος:
A novel approach of homozygous haplotype sharing identifies candidate genes in autism spectrum disorder
Γλώσσες Τεκμηρίου:
Αγγλικά
Περίληψη:
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. © The Author(s) 2011.
Έτος δημοσίευσης:
2012
Συγγραφείς:
Casey, J.P.
Magalhaes, T.
Conroy, J.M.
Regan, R.
Shah, N.
Anney, R.
Shields, D.C.
Abrahams, B.S.
Almeida, J.
Bacchelli, E.
Bailey, A.J.
Baird, G.
Battaglia, A.
Berney, T.
Bolshakova, N.
Bolton, P.F.
Bourgeron, T.
Brennan, S.
Cali, P.
Correia, C.
Corsello, C.
Coutanche, M.
Dawson, G.
De Jonge, M.
Delorme, R.
Duketis, E.
Duque, F.
Estes, A.
Farrar, P.
Fernandez, B.A.
Folstein, S.E.
Foley, S.
Fombonne, E.
Freitag, C.M.
Gilbert, J.
Gillberg, C.
Glessner, J.T.
Green, J.
Guter, S.J.
Hakonarson, H.
Holt, R.
Hughes, G.
Hus, V.
Igliozzi, R.
Kim, C.
Klauck, S.M.
Kolevzon, A.
Lamb, J.A.
Leboyer, M.
Couteur, A.L.
Leventhal, B.L.
Lord, C.
Lund, S.C.
Maestrini, E.
Mantoulan, C.
Marshall, C.R.
McConachie, H.
McDougle, C.J.
McGrath, J.
McMahon, W.M.
Merikangas, A.
Miller, J.
Minopoli, F.
Mirza, G.K.
Munson, J.
Nelson, S.F.
Nygren, G.
Oliveira, G.
Pagnamenta, A.T.
Papanikolaou, K.
Parr, J.R.
Parrini, B.
Pickles, A.
Pinto, D.
Piven, J.
Posey, D.J.
Poustka, A.
Poustka, F.
Ragoussis, J.
Roge, B.
Rutter, M.L.
Sequeira, A.F.
Soorya, L.
Sousa, I.
Sykes, N.
Stoppioni, V.
Tancredi, R.
Tauber, M.
Thompson, A.P.
Thomson, S.
Tsiantis, J.
Van Engeland, H.
Vincent, J.B.
Volkmar, F.
Vorstman, J.A.S.
Wallace, S.
Wang, K.
Wassink, T.H.
White, K.
Wing, K.
Wittemeyer, K.
Yaspan, B.L.
Zwaigenbaum, L.
Betancur, C.
Buxbaum, J.D.
Cantor, R.M.
Cook, E.H.
Coon, H.
Cuccaro, M.L.
Geschwind, D.H.
Haines, J.L.
Hallmayer, J.
Monaco, A.P.
Nurnberger Jr., J.I.
Pericak-Vance, M.A.
Schellenberg, G.D.
Scherer, S.W.
Sutcliffe, J.S.
Szatmari, P.
Vieland, V.J.
Wijsman, E.M.
Green, A.
Gill, M.
Gallagher, L.
Vicente, A.
Ennis, S.
Περιοδικό:
Human Genetics
Τόμος:
131
Αριθμός / τεύχος:
4
Σελίδες:
565-579
Λέξεις-κλειδιά:
ephrin receptor A3; fibroblast growth factor 10; Shal potassium channel; Shal potassium channel 2; unclassified drug, ABHD14A gene; article; autism; CADM2 gene; child; CHRFAM7A gene; cognition; comparative study; controlled study; disease association; gene frequency; gene identification; gene mapping; gene structure; genetic association; genetic heterogeneity; genetic variability; genotype; GRIK2 gene; GRM3 gene; haplotype; homozygosity; homozygous haplotype; human; human genome project; IMMP2L gene; large scale production; major clinical study; pdzk1 gene; priority journal; single nucleotide polymorphism; adult; autism; cluster analysis; cohort analysis; copy number variation; female; gene linkage disequilibrium; genetic association; genetic predisposition; genetics; homozygote; male; methodology; middle aged; nuclear family, Adult; Child; Child Development Disorders, Pervasive; Cluster Analysis; Cohort Studies; DNA Copy Number Variations; Female; Genetic Predisposition to Disease; Genome-Wide Association Study; Genotype; Haplotypes; Homozygote; Humans; Linkage Disequilibrium; Male; Middle Aged; Nuclear Family; Polymorphism, Single Nucleotide
Επίσημο URL (Εκδότης):
DOI:
10.1007/s00439-011-1094-6
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