Functional DNA methylation signatures for autism spectrum disorder genomic risk loci: 16p11.2 deletions and CHD8 variants

被引:54
作者
Siu, M. T. [1 ]
Butcher, D. T. [1 ]
Turinsky, A. L. [1 ,2 ]
Cytrynbaum, C. [1 ,3 ,4 ]
Stavropoulos, D. J. [5 ,6 ]
Walker, S. [7 ]
Caluseriu, O. [8 ]
Carter, M. [9 ]
Lou, Y. [1 ]
Nicolson, R. [10 ]
Georgiades, S. [11 ]
Szatmari, P. [12 ,13 ]
Anagnostou, E. [4 ,14 ,15 ]
Scherer, S. W. [4 ,7 ]
Choufani, S. [1 ]
Brudno, M. [2 ,16 ]
Weksberg, R. [1 ,3 ,4 ,13 ,17 ]
机构
[1] Hosp Sick Children, Program Genet & Genome Biol, Toronto, ON, Canada
[2] Hosp Sick Children, Ctr Computat Med, Toronto, ON, Canada
[3] Hosp Sick Children, Div Clin & Metab Genet, 555 Univ Ave, Toronto, ON M5G 1X8, Canada
[4] Univ Toronto, Dept Mol Genet, Toronto, ON, Canada
[5] Hosp Sick Children, Pediat Lab Med, Toronto, ON, Canada
[6] Univ Toronto, Lab Med & Pathobiol, Toronto, ON, Canada
[7] Hosp Sick Children, Ctr Appl Genom, Toronto, ON, Canada
[8] Univ Alberta, Dept Med Genet, Edmonton, AB, Canada
[9] Childrens Hosp Eastern Ontario, Dept Genet, Ottawa, ON, Canada
[10] Univ Western Ontario, Dept Psychiat, London, ON, Canada
[11] McMaster Univ, Offord Ctr Child Studies, Dept Psychiat & Behav Neurosci, Hamilton, ON, Canada
[12] Hosp Sick Children, Ctr Addict & Mental Hlth, Child & Youth Mental Hlth Collaborat, Toronto, ON, Canada
[13] Univ Toronto, Dept Psychiat, Toronto, ON, Canada
[14] Holland Bloorview Kids Rehabil Hosp, Toronto, ON, Canada
[15] Univ Toronto, Dept Pediat, Toronto, ON, Canada
[16] Univ Toronto, Dept Comp Sci, Toronto, ON, Canada
[17] Univ Toronto, Sch Grad Studies, Inst Med Sci, Toronto, ON, Canada
基金
加拿大健康研究院;
关键词
Epigenetics; DNA methylation; Autism spectrum disorder; Genomic variants; Genetic stratification; Heterogeneity; IMMUNE DYSREGULATION; VALPROIC ACID; GENES; 5-HYDROXYMETHYLCYTOSINE; ABNORMALITIES; ASSOCIATION; DISRUPTION; MUTATIONS; PHENOTYPE; GENETICS;
D O I
10.1186/s13148-019-0684-3
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
BackgroundAutism spectrum disorder (ASD) is a common and etiologically heterogeneous neurodevelopmental disorder. Although many genetic causes have been identified (> 200 ASD-risk genes), no single gene variant accounts for > 1% of all ASD cases. A role for epigenetic mechanisms in ASD etiology is supported by the fact that many ASD-risk genes function as epigenetic regulators and evidence that epigenetic dysregulation can interrupt normal brain development. Gene-specific DNAm profiles have been shown to assist in the interpretation of variants of unknown significance. Therefore, we investigated the epigenome in patients with ASD or two of the most common genomic variants conferring increased risk for ASD. Genome-wide DNA methylation (DNAm) was assessed using the Illumina Infinium HumanMethylation450 and MethylationEPIC arrays in blood from individuals with ASD of heterogeneous, undefined etiology (n = 52), and individuals with 16p11.2 deletions (16p11.2del, n = 9) or pathogenic variants in the chromatin modifier CHD8 (CHD8(+/-), n = 7).ResultsDNAm patterns did not clearly distinguish heterogeneous ASD cases from controls. However, the homogeneous genetically-defined 16p11.2del and CHD8(+/-) subgroups each exhibited unique DNAm signatures that distinguished 16p11.2del or CHD8(+/-) individuals from each other and from heterogeneous ASD and control groups with high sensitivity and specificity. These signatures also classified additional 16p11.2del (n = 9) and CHD8 (n = 13) variants as pathogenic or benign. Our findings that DNAm alterations in each signature target unique genes in relevant biological pathways including neural development support their functional relevance. Furthermore, genes identified in our CHD8(+/-) DNAm signature in blood overlapped differentially expressed genes in CHD8(+/-) human-induced pluripotent cell-derived neurons and cerebral organoids from independent studies.ConclusionsDNAm signatures can provide clinical utility complementary to next-generation sequencing in the interpretation of variants of unknown significance. Our study constitutes a novel approach for ASD risk-associated molecular classification that elucidates the vital cross-talk between genetics and epigenetics in the etiology of ASD.
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页数:19
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