Multi-omic rejuvenation of naturally aged tissues by a single cycle of transient reprogramming

Other authors

Institut Català de la Salut

[Chondronasiou D, Berenguer-Llergo A, Aguilera M] Institute for Research in Biomedicine (IRB Barcelona), Barcelona Institute of Science and Technology (BIST), Barcelona, Spain. [Gill D] Epigenetics Programme, Babraham Institute, Cambridge, UK. [Mosteiro L] Genentech, San Francisco, USA. [Urdinguio RG] Cancer Epigenetics and Nanomedicine Laboratory, Nanomaterials and Nanotechnology Research Center (CINN CSIC), Oviedo, Spain. Health Research Institute of Asturias (ISPA), Oviedo, Spain. Institute of Oncology of Asturias (IUOPA), University of Oviedo, Oviedo, Spain. Department of Organisms and Systems Biology (BOS), University of Oviedo, Oviedo, Spain. CIBER of Rare Diseases (CIBERER), Oviedo, Spain. [Abad M] Vall d'Hebron Institute of Oncology (VHIO), Barcelona, Spain

Vall d'Hebron Barcelona Hospital Campus

Publication date

2022-07-21T10:00:06Z

2022-07-21T10:00:06Z

2022-03



Abstract

Aging; Epigenetic clocks; Pluripotency


Envelliment; Rellotges epigenètics; Pluripotència


Envejecimiento; Relojes epigenéticos; Pluripotencia


The expression of the pluripotency factors OCT4, SOX2, KLF4, and MYC (OSKM) can convert somatic differentiated cells into pluripotent stem cells in a process known as reprogramming. Notably, partial and reversible reprogramming does not change cell identity but can reverse markers of aging in cells, improve the capacity of aged mice to repair tissue injuries, and extend longevity in progeroid mice. However, little is known about the mechanisms involved. Here, we have studied changes in the DNA methylome, transcriptome, and metabolome in naturally aged mice subject to a single period of transient OSKM expression. We found that this is sufficient to reverse DNA methylation changes that occur upon aging in the pancreas, liver, spleen, and blood. Similarly, we observed reversion of transcriptional changes, especially regarding biological processes known to change during aging. Finally, some serum metabolites and biomarkers altered with aging were also restored to young levels upon transient reprogramming. These observations indicate that a single period of OSKM expression can drive epigenetic, transcriptomic, and metabolomic changes toward a younger configuration in multiple tissues and in the serum.

Document Type

Article


Published version

Language

English

Publisher

Wiley

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https://doi.org/10.1111/acel.13578

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Rights

Attribution 4.0 International

http://creativecommons.org/licenses/by/4.0/

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