Selective pericentromeric heterochromatin dismantling caused by TP53 activation during senescence

Author:

Mendez-Bermudez Aaron12,Lototska Liudmyla2,Pousse Melanie2,Tessier Florent2,Croce Oliver2ORCID,Latrick Chrysa M2,Cherdyntseva Veronica3,Nassour Joe4,Xiaohua Jiang5,Lu Yiming1,Abbadie Corinne4,Gagos Sarantis3,Ye Jing1,Gilson Eric126ORCID

Affiliation:

1. Department of Geriatrics, Medical center on Aging of Shanghai Ruijin Hospital, Shanghai Jiaotong University school of Medicine; International laboratory in Hematology, Cancer and Aging, Pôle Sino-Français de Recherches en Sciences du Vivant et Génomique, Rui Jin Hospital, Shanghai Jiao Tong University School of Medicine , Shanghai, China ; CNRS/INSERM/University Côte d’Azur

2. Université Côte d’Azur, CNRS, INSERM, IRCAN, Faculty of Medicine Nice , France

3. Laboratory of Genetics, Center of Experimental Medicine and Translational Research, Biomedical Research Foundation of the Academy of Athens , Greece

4. Univ. Lille, CNRS, Inserm, CHU Lille, Institut Pasteur de Lille , UMR9020-U1277, CANTHER, Cancer Heterogeneity Plasticity and Resistance to Therapies, F-59000 Lille, France

5. School of Biomedical Sciences , The Chinese University of Hong Kong

6. Department of medical genetics , CHU, Nice, France

Abstract

Abstract Cellular senescence triggers various types of heterochromatin remodeling that contribute to aging. However, the age-related mechanisms that lead to these epigenetic alterations remain elusive. Here, we asked how two key aging hallmarks, telomere shortening and constitutive heterochromatin loss, are mechanistically connected during senescence. We show that, at the onset of senescence, pericentromeric heterochromatin is specifically dismantled consisting of chromatin decondensation, accumulation of DNA breakages, illegitimate recombination and loss of DNA. This process is caused by telomere shortening or genotoxic stress by a sequence of events starting from TP53-dependent downregulation of the telomere protective protein TRF2. The resulting loss of TRF2 at pericentromeres triggers DNA breaks activating ATM, which in turn leads to heterochromatin decondensation by releasing KAP1 and Lamin B1, recombination and satellite DNA excision found in the cytosol associated with cGAS. This TP53–TRF2 axis activates the interferon response and the formation of chromosome rearrangements when the cells escape the senescent growth arrest. Overall, these results reveal the role of TP53 as pericentromeric disassembler and define the basic principles of how a TP53-dependent senescence inducer hierarchically leads to selective pericentromeric dismantling through the downregulation of TRF2.

Funder

Inserm

INCA

ANR

National Natural Science Foundation of China

Program of Shanghai Academic/Technology Research Leader

Shanghai Municipal Education Commission

Publisher

Oxford University Press (OUP)

Subject

Genetics

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