Genome-wide DNA methylation analysis of human brain tissue from schizophrenia patients

Полногеномный анализ метилирования ДНК в тканях головного мозга человека у пациентов с шизофренией
Leesa Wockner, Ernest P. Noble, Bruce R. Lawford, Ross McD. Young, C. Phillip Morris, Vicki Whitehall, Joanne Voisey
2014-01-07

Illumina HumanMethylation450 BeadChipdifferentially methylated genesgenome-wide DNA methylationpost-mortem human brain tissueschizophrenia
Recent studies suggest that genetic and environmental factors do not account for all the schizophrenia risk, and epigenetics also has a role in disease susceptibility. DNA methylation is a heritable epigenetic modification that can regulate gene expression. Genome-wide DNA methylation analysis was performed on post-mortem human brain tissue from 24 patients with schizophrenia and 24 unaffected controls. DNA methylation was assessed at over 485,000 CpG sites using the Illumina Infinium HumanMethylation450 Bead Chip. After adjusting for age and post-mortem interval, 4641 probes corresponding to 2929 unique genes were found to be differentially methylated. Of those genes, 1291 were located in a CpG island and 817 were in a promoter region. These include NOS1, AKT1, DTNBP1, DNMT1, PPP3CC and SOX10, which have previously been associated with schizophrenia. More than 100 of these genes overlap with a previous DNA methylation study of peripheral blood from schizophrenia patients in which 27,000 CpG sites were analysed. Unsupervised clustering analysis of the top 3000 most variable probes revealed two distinct groups with significantly more people with schizophrenia in cluster one compared with controls (P=1.74 × 10(-4)). The first cluster composed of 88% of patients with schizophrenia and only 12% controls, whereas the second cluster composed of 27% of patients with schizophrenia and 73% controls. These results strongly suggest that differential DNA methylation is important in schizophrenia etiology and add support for the use of DNA methylation profiles as a future prognostic indicator of schizophrenia.
1
Among differentially methylated genes, 1,291 were located in CpG islands and 817 in promoter regions, indicating potential regulatory effects on gene expression.
2
Differentially methylated genes included schizophrenia-associated genes such as NOS1, AKT1, DTNBP1, DNMT1, PPP3CC, and SOX10.
3
Genome-wide methylation profiling of post-mortem brain tissue identified 4,641 differentially methylated probes corresponding to 2,929 unique genes in schizophrenia patients versus controls.
4
More than 100 differentially methylated genes overlapped with findings from a previous peripheral-blood methylation study of schizophrenia.
5
Unsupervised clustering based on the 3,000 most variable probes separated samples into two groups, with schizophrenia cases enriched in cluster one (88% patients versus 12% controls; P=1.74 × 10^-4), supporting methylation profiles as potential prognostic indicators.

Post-mortem human brain tissue from patients with schizophrenia and unaffected controls

Genome-wide differential DNA methylation patterns and their association with schizophrenia etiology and classification

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2014-01-07
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Leesa Wockner
Ernest P. Noble
Bruce R. Lawford
Ross McD. Young
C. Phillip Morris
Vicki Whitehall
Joanne Voisey
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