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Updated: Apr 18, 2026

Neuronal Nuclei Isolation from Human Postmortem Brain Tissue
Published on: October 1, 2008
Inter-individual variability contrasts with regional homogeneity in the human brain DNA methylome
Robert S Illingworth1, Ulrike Gruenewald-Schneider2, Dina De Sousa2
1Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh, Midlothian, EH9 3BF, UK robert.illingworth@igmm.ed.ac.uk.
Abstract:
The possibility that alterations in DNA methylation are mechanistic drivers of development, aging and susceptibility to disease is widely acknowledged, but evidence remains patchy or inconclusive. Of particular interest in this regard is the brain, where it has been reported that DNA methylation impacts on neuronal activity, learning and memory, drug addiction and neurodegeneration. Until recently, however, little was known about the 'landscape' of the human brain methylome. Here we assay 1.9 million CpGs in each of 43 brain samples representing different individuals and brain regions. The cerebellum was a consistent outlier compared to all other regions, and showed over 16 000 differentially methylated regions (DMRs). Unexpectedly, the sequence characteristics of hypo- and hypermethylated domains in cerebellum were distinct. In contrast, very few DMRs distinguished regions of the cortex, limbic system and brain stem. Inter-individual DMRs were readily detectable in these regions. These results lead to the surprising conclusion that, with the exception of cerebellum, DNA methylation patterns are more homogeneous between different brain regions from the same individual, than they are for a single brain region between different individuals. This finding suggests that DNA sequence composition, not developmental status, is the principal determinant of the human brain DNA methylome.
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