Epigenomic signature of accelerated ageing in progeroid Cockayne syndrome

Author:

Crochemore Clément123ORCID,Chica Claudia4ORCID,Garagnani Paolo56ORCID,Lattanzi Giovanna78ORCID,Horvath Steve910ORCID,Sarasin Alain11ORCID,Franceschi Claudio12ORCID,Bacalini Maria Giulia13ORCID,Ricchetti Miria12ORCID

Affiliation:

1. Institut Pasteur, Université Paris Cité, Molecular Mechanisms of Pathological and Physiological Ageing Unit, UMR3738 CNRS Paris France

2. Institut Pasteur, Team Stability of Nuclear and Mitochondrial DNA, Stem Cells and Development, UMR3738 CNRS Paris France

3. Sup'Biotech Villejuif France

4. Institut Pasteur, Université Paris Cité, Bioinformatics and Biostatistics Hub Paris France

5. IRCCS Azienda Ospedaliero‐Universitaria di Bologna Bologna Italy

6. Department of Medical and Surgical Sciences (DIMEC) University of Bologna Bologna Italy

7. CNR Institute of Molecular Genetics “Luigi Luca Cavalli‐Sforza”, Unit of Bologna Bologna Italy

8. IRCCS Istituto Ortopedico Rizzoli Bologna Italy

9. Department of Human Genetics, David Geffen School of Medicine University of California Los Angeles USA

10. Department of Biostatistics Fielding School of Public Health University of California Los Angeles USA

11. Laboratory of Genetic Stability and Oncogenesis, Institut de Cancérologie Gustave Roussy University Paris‐Sud Villejuif France

12. Institute of Information Technologies, Mathematics and Mechanics Lobachevsky University Nizhniy Novgorod Russia

13. IRCCS Istituto delle Scienze Neurologiche di Bologna Bologna Italy

Abstract

AbstractCockayne syndrome (CS) and UV‐sensitive syndrome (UVSS) are rare genetic disorders caused by mutation of the DNA repair and multifunctional CSA or CSB protein, but only CS patients display a progeroid and neurodegenerative phenotype, providing a unique conceptual and experimental paradigm. As DNA methylation (DNAm) remodelling is a major ageing marker, we performed genome‐wide analysis of DNAm of fibroblasts from healthy, UVSS and CS individuals. Differential analysis highlighted a CS‐specific epigenomic signature (progeroid‐related; not present in UVSS) enriched in three categories: developmental transcription factors, ion/neurotransmitter membrane transporters and synaptic neuro‐developmental genes. A large fraction of CS‐specific DNAm changes were associated with expression changes in CS samples, including in previously reported post‐mortem cerebella. The progeroid phenotype of CS was further supported by epigenomic hallmarks of ageing: the prediction of DNAm of repetitive elements suggested an hypomethylation of Alu sequences in CS, and the epigenetic clock returned a marked increase in CS biological age respect to healthy and UVSS cells. The epigenomic remodelling of accelerated ageing in CS displayed both commonalities and differences with other progeroid diseases and regular ageing. CS shared DNAm changes with normal ageing more than other progeroid diseases do, and included genes functionally validated for regular ageing. Collectively, our results support the existence of an epigenomic basis of accelerated ageing in CS and unveil new genes and pathways that are potentially associated with the progeroid/degenerative phenotype.

Funder

Agence Nationale de la Recherche

Publisher

Wiley

Subject

Cell Biology,Aging

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