Nesprins are mechanotransducers that discriminate epithelial–mesenchymal transition programs

Author:

Déjardin Théophile1ORCID,Carollo Pietro Salvatore1ORCID,Sipieter François1ORCID,Davidson Patricia M.2ORCID,Seiler Cynthia1,Cuvelier Damien3,Cadot Bruno4ORCID,Sykes Cecile2ORCID,Gomes Edgar R.456ORCID,Borghi Nicolas1ORCID

Affiliation:

1. Université de Paris, Centre National de la Recherche Scientifique, Institut Jacques Monod, Paris, France

2. Laboratoire Physico-Chimie Curie, Institut Curie, Centre National de la Recherche Scientifique Unité Mixte de Recherche 168, Sorbonne Universités, Université Paris Sciences et Lettres, Paris, France

3. Institut Curie and Institut Pierre Gilles de Gennes, Université Paris Sciences et Lettres, Centre National de la Recherche Scientifique Unité Mixte de Rercherche 144, Paris, France

4. Center for Research in Myology, Institut National de la Santé et de la Recherche Médicale Unité Mixte de Recherche 974, Sorbonne Universités, Paris, France

5. Instituto de Medecina Molecular, Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal

6. Instituto de Histologia e Biologia do Desenvolvimento, Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal

Abstract

LINC complexes are transmembrane protein assemblies that physically connect the nucleoskeleton and cytoskeleton through the nuclear envelope. Dysfunctions of LINC complexes are associated with pathologies such as cancer and muscular disorders. The mechanical roles of LINC complexes are poorly understood. To address this, we used genetically encoded FRET biosensors of molecular tension in a nesprin protein of the LINC complex of fibroblastic and epithelial cells in culture. We exposed cells to mechanical, genetic, and pharmacological perturbations, mimicking a range of physiological and pathological situations. We show that nesprin experiences tension generated by the cytoskeleton and acts as a mechanical sensor of cell packing. Moreover, nesprin discriminates between inductions of partial and complete epithelial–mesenchymal transitions. We identify the implicated mechanisms, which involve α-catenin capture at the nuclear envelope by nesprin upon its relaxation, thereby regulating β-catenin transcription. Our data thus implicate LINC complex proteins as mechanotransducers that fine-tune β-catenin signaling in a manner dependent on the epithelial–mesenchymal transition program.

Funder

Centre national de la recherche scientifique

Agence nationale de la recherche

France BioImaging

Ligue contre le Cancer

Fondation ARC pour la Recherche sur le Cancer

Horizon 2020 Framework Programme for Research and Innovation

Ecole Doctorale Frontières de l'Innovation en Recherche et Éducation

Programme Bettencourt

European Research Council

France-BioImaging

Publisher

Rockefeller University Press

Subject

Cell Biology

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