Display Settings:

Format

Send to:

Choose Destination
Accession: PRJNA345217 ID: 345217

Homo sapiens (human)

Continuous Aging of the Human DNA Methylome Throughout the Human Lifespan

See Genome Information for Homo sapiens
DNA methylation plays an important role in development of disease and the process of aging. In this study we examine DNA methylation at 476,366 sites throughout the genome of white blood cells from a population cohort (N = 421) ranging in age from 14 to 94 years old. Age affects DNA methylation at almost one third (29%) of the sites (Bonferroni adjusted P-value <0.05), of which 60.5% becomes hypomethylated and 39.5% hypermethylated with increasing age. DNA methylation sites that are located within CpG islands (CGIs) more often become hypermethylated compared to sites outside an island. CpG sites in promoters are more unaffected by age, whereas sites in enhancers more often becomes hypo- or hypermethylated. Hypermethylated sites are overrepresented among genes that are involved in DNA binding, transcription regulation, processes of anatomical structure and developmental process and cortex neuron differentiation (P-value down to P = 9.14*10−67). By contrast, hypomethylated sites are not strongly overrepresented among any biological function or process. Our results indicate that the 23% of the variation in DNA methylation is attributed chronological age, and that hypermethylation is more site-specific than hypomethylation. It appears that the change in DNA methylation partly overlap with regions that change histone modifications with age, indicating an interaction between the two major epigenetic mechanisms. Epigenetic modifications and change in gene expression over time most likely reflects the natural process of aging and variation between individuals might contribute to the development of age-related phenotypes and diseases such as type II diabetes, autoimmune and cardiovascular disease. Overall design: Bisulphite converted DNA from 732 samples were hybridized to the Illumina Infinium 450K Human Methylation Beadchip
AccessionPRJNA345217; GEO: GSE87571
Data TypeEpigenomics
ScopeMultiisolate
OrganismHomo sapiens[Taxonomy ID: 9606]
Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Mammalia; Eutheria; Euarchontoglires; Primates; Haplorrhini; Catarrhini; Hominidae; Homo; Homo sapiens
PublicationsJohansson A et al., "Continuous Aging of the Human DNA Methylome Throughout the Human Lifespan.", PLoS One, 2013;8(6):e67378
SubmissionRegistration date: 3-Oct-2016
IGP, Uppsala University
RelevanceMedical
Project Data:
Resource NameNumber
of Links
Publications
PubMed1
PMC1
Other datasets
GEO DataSets1
GEO Data Details
ParameterValue
Data volume, Supplementary Mbytes8866

Supplemental Content

Recent activity

  • Homo sapiens
    Homo sapiens
    Continuous Aging of the Human DNA Methylome Throughout the Human Lifespan
    BioProject
  • Scaling Law
    Scaling Law
    Combinatorial genetics reveals a scaling law for the effects of mutations on splicing
    BioProject
  • Salinispora arenicola DSM 45545 strain:CNS-991
    Salinispora arenicola DSM 45545 strain:CNS-991
    Salinispora arenicola DSM 45545 strain:CNS-991 Genome sequencing and assembly
    BioProject
  • Bosea sp. TND4EK4
    Bosea sp. TND4EK4
    Bosea sp. TND4EK4 Genome sequencing
    BioProject
  • subsurface metagenome
    subsurface metagenome
    subsurface metagenome Metagenome
    BioProject

Your browsing activity is empty.

Activity recording is turned off.

Turn recording back on

See more...
Support Center