Increase in lamin B1 promotes telomere instability by disrupting the shelterin complex in human cells

Author:

Pennarun Gaëlle12ORCID,Picotto Julien12,Etourneaud Laure12,Redavid Anna-Rita12ORCID,Certain Anaïs12,Gauthier Laurent R13,Fontanilla-Ramirez Paula12,Busso Didier14,Chabance-Okumura Caroline12,Thézé Benoît12,Boussin François D13,Bertrand Pascale12

Affiliation:

1. Université de Paris and Université Paris-Saclay, INSERM, iRCM/IBFJ CEA, UMR Stabilité Génétique Cellules Souches et Radiations, F-92265 Fontenay-aux-Roses, France

2. “DNA Repair and Ageing” Team, iRCM/IBFJ, DRF, CEA, Fontenay-aux-Roses, France

3. “Radiopathology” Team, iRCM/IBFJ, DRF, CEA, Fontenay-aux-Roses, France

4. Genetic Engineering and Expression Platform (CIGEX), iRCM, DRF, CEA, Fontenay-aux-Roses, France

Abstract

Abstract Telomere maintenance is essential to preserve genomic stability and involves telomere-specific proteins, DNA replication and repair proteins. Lamins are key components of the nuclear envelope and play numerous roles, including maintenance of the nuclear integrity, regulation of transcription, and DNA replication. Elevated levels of lamin B1, one of the major lamins, have been observed in some human pathologies and several cancers. Yet, the effect of lamin B1 dysregulation on telomere maintenance remains unknown. Here, we unveil that lamin B1 overexpression drives telomere instability through the disruption of the shelterin complex. Indeed, lamin B1 dysregulation leads to an increase in telomere dysfunction-induced foci, telomeric fusions and telomere losses in human cells. Telomere aberrations were preceded by mislocalizations of TRF2 and its binding partner RAP1. Interestingly, we identified new interactions between lamin B1 and these shelterin proteins, which are strongly enhanced at the nuclear periphery upon lamin B1 overexpression. Importantly, chromosomal fusions induced by lamin B1 in excess were rescued by TRF2 overexpression. These data indicated that lamin B1 overexpression triggers telomere instability through a mislocalization of TRF2. Altogether our results point to lamin B1 as a new interacting partner of TRF2, that is involved in telomere stability.

Funder

Ligue Nationale Contre le Cancer

Association for Research against Cancer

AT Europe Association

CEA

INCA

Inserm

Ministry of Higher Education, Research and Innovation

University Paris-Saclay

Publisher

Oxford University Press (OUP)

Subject

Genetics

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