Compressive stress-mediated p38 activation required for ERα + phenotype in breast cancer
Munne, Pauliina M.; Martikainen, Lahja; Räty, Iiris; Bertula, Kia; Nonappa, Kia; Ruuska, Janika; Ala-Hongisto, Hanna; Peura, Aino; Hollmann, Babette; Euro, Lilya; Yavuz, Kerim; Patrikainen, Linda; Salmela, Maria; Pokki, Juho; Kivento, Mikko; Väänänen, Juho; Suomi, Tomi; Nevalaita, Liina; Mutka, Minna; Leidenius, Marjut; Meretoja, Tuomo; Hukkinen, Katja; Monni, Outi; Pouwels, Jeroen; Sahu, Biswajyoti; Mattson, Johanna; Joensuu, Heikki; Elo, Laura L.; Metcalfe, Ciara; Junttila, Melissa R.; Ikkala, Olli; Klefström, Juha (2021-12)
Munne, Pauliina M.
Martikainen, Lahja
Räty, Iiris
Bertula, Kia
Nonappa, Kia
Ruuska, Janika
Ala-Hongisto, Hanna
Peura, Aino
Hollmann, Babette
Euro, Lilya
Yavuz, Kerim
Patrikainen, Linda
Salmela, Maria
Pokki, Juho
Kivento, Mikko
Väänänen, Juho
Suomi, Tomi
Nevalaita, Liina
Mutka, Minna
Leidenius, Marjut
Meretoja, Tuomo
Hukkinen, Katja
Monni, Outi
Pouwels, Jeroen
Sahu, Biswajyoti
Mattson, Johanna
Joensuu, Heikki
Elo, Laura L.
Metcalfe, Ciara
Junttila, Melissa R.
Ikkala, Olli
Klefström, Juha
12 / 2021
Nature Communications
6967
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202112169290
https://urn.fi/URN:NBN:fi:tuni-202112169290
Kuvaus
Peer reviewed
Tiivistelmä
Breast 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.
Kokoelmat
- TUNICRIS-julkaisut [20583]