Making sense of the ageing methylome.

Kirsten Seale, Steve Horvath, Andrew Teschendorff, Nir Eynon, Sarah Voisin

Journal: Nature reviews. Genetics 2022;23(10):585-605

PMID: 35501397

Abstract

Over time, the human DNA methylation landscape accrues substantial damage, which has been associated with a broad range of age-related diseases, including cardiovascular disease and cancer. Various age-related DNA methylation changes have been described, including at the level of individual CpGs, such as differential and variable methylation, and at the level of the whole methylome, including entropy and correlation networks. Here, we review these changes in the ageing methylome as well as the statistical tools that can be used to quantify them. We detail the evidence linking DNA methylation to ageing phenotypes and the longevity strategies aimed at altering both DNA methylation patterns and machinery to extend healthspan and lifespan. Lastly, we discuss theories on the mechanistic causes of epigenetic ageing.

© 2022. Springer Nature Limited.

Address: Institute for Health and Sport (iHeS), Victoria University, Footscray, Melbourne, Victoria, Australia.; Department of Human Genetics, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA, USA.; Altos Labs, San Diego, CA, USA.; CAS Key Laboratory of Computational Biology, Shanghai Institute of Nutrition and Health, Chinese Academy of Sciences, Shanghai, China.; UCL Cancer Institute, University College London, London, UK.; Institute for Health and Sport (iHeS), Victoria University, Footscray, Melbourne, Victoria, Australia. [email protected].; Institute for Health and Sport (iHeS), Victoria University, Footscray, Melbourne, Victoria, Australia. [email protected].

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