DNA methylation age of human tissues and cell types
Возраст тканей и типов клеток человека, определяемый по метилированию ДНК
2013-10-20
SCID: 54.1/9punub9j
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353 CpG sitesDNA methylation ageage accelerationepigenetic clockmulti-tissue age predictor
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Abstract (AI)
BACKGROUND: It is not yet known whether DNA methylation levels can be used to accurately predict age across a broad spectrum of human tissues and cell types, nor whether the resulting age prediction is a biologically meaningful measure. RESULTS: I developed a multi-tissue predictor of age that allows one to estimate the DNA methylation age of most tissues and cell types. The predictor, which is freely available, was developed using 8,000 samples from 82 Illumina DNA methylation array datasets, encompassing 51 healthy tissues and cell types. I found that DNA methylation age has the following properties: first, it is close to zero for embryonic and induced pluripotent stem cells; second, it correlates with cell passage number; third, it gives rise to a highly heritable measure of age acceleration; and, fourth, it is applicable to chimpanzee tissues. Analysis of 6,000 cancer samples from 32 datasets showed that all of the considered 20 cancer types exhibit significant age acceleration, with an average of 36 years. Low age-acceleration of cancer tissue is associated with a high number of somatic mutations and TP53 mutations, while mutations in steroid receptors greatly accelerate DNA methylation age in breast cancer. Finally, I characterize the 353 CpG sites that together form an aging clock in terms of chromatin states and tissue variance. CONCLUSIONS: I propose that DNA methylation age measures the cumulative effect of an epigenetic maintenance system. This novel epigenetic clock can be used to address a host of questions in developmental biology, cancer and aging research.
Key Findings
1
A multi-tissue DNA methylation age predictor was developed from 8,000 samples across 82 datasets, covering 51 healthy tissues and cell types.
2
All 20 examined cancer types showed significant DNA methylation age acceleration, averaging 36 years.
3
DNA methylation age is near zero in embryonic and induced pluripotent stem cells, correlates with cell passage number, and produces a highly heritable measure of age acceleration.
4
Lower cancer age acceleration was associated with more somatic mutations and TP53 mutations, whereas steroid receptor mutations markedly accelerated methylation age in breast cancer.
5
The 353 CpG sites comprising the aging clock were characterized by their chromatin states and tissue-specific variance, supporting DNA methylation age as a measure of cumulative epigenetic maintenance.
6
The methylation-based age predictor applies to chimpanzee tissues, indicating cross-species utility.
Research Object
DNA methylation age (the multi-tissue epigenetic age predictor based on 353 CpG sites)
Research Subject
The accuracy, biological meaning, age acceleration, and epigenetic-clock properties of DNA methylation age, including its associations with cell passage, cancer, mutations, and chromatin states
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2013-10-20
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