Compressive stress-mediated p38 activation required for ERα + phenotype in breast cancer
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Published:2021-11-29
Issue:1
Volume:12
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Munne Pauliina M.ORCID, Martikainen LahjaORCID, Räty IirisORCID, Bertula KiaORCID, Nonappa ORCID, Ruuska JanikaORCID, Ala-Hongisto HannaORCID, Peura AinoORCID, Hollmann Babette, Euro LilyaORCID, Yavuz KerimORCID, Patrikainen Linda, Salmela Maria, Pokki JuhoORCID, Kivento MikkoORCID, Väänänen JuhoORCID, Suomi TomiORCID, Nevalaita LiinaORCID, Mutka MinnaORCID, Kovanen PanuORCID, Leidenius Marjut, Meretoja Tuomo, Hukkinen Katja, Monni OutiORCID, Pouwels Jeroen, Sahu BiswajyotiORCID, Mattson JohannaORCID, Joensuu HeikkiORCID, Heikkilä Päivi, Elo Laura L.ORCID, Metcalfe Ciara, Junttila Melissa R., Ikkala OlliORCID, Klefström JuhaORCID
Abstract
AbstractBreast cancer is now globally the most frequent cancer and leading cause of women’s death. Two thirds of breast cancers express the luminal estrogen receptor-positive (ERα + ) phenotype that is initially responsive to antihormonal therapies, but drug resistance emerges. A major barrier to the understanding of the ERα-pathway biology and therapeutic discoveries is the restricted repertoire of luminal ERα + breast cancer models. The ERα + phenotype is not stable in cultured cells for reasons not fully understood. We examine 400 patient-derived breast epithelial and breast cancer explant cultures (PDECs) grown in various three-dimensional matrix scaffolds, finding that ERα is primarily regulated by the matrix stiffness. Matrix stiffness upregulates the ERα signaling via stress-mediated p38 activation and H3K27me3-mediated epigenetic regulation. The finding that the matrix stiffness is a central cue to the ERα phenotype reveals a mechanobiological component in breast tissue hormonal signaling and enables the development of novel therapeutic interventions. Subject terms: ER-positive (ER + ), breast cancer, ex vivo model, preclinical model, PDEC, stiffness, p38 SAPK.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
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