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Mutant p53 improves cancer cells’ resistance to endoplasmic reticulum stress by sustaining activation of the UPR regulator ATF6

Authors :
Marco Dal Ferro
Arianna Bellazzo
Daria Sicari
Silvio Bicciato
Elena Valentino
Giannino Del Sal
Mattia Apollonio
Licio Collavin
Marco Fantuz
Ilaria Pontisso
Francesca Di Cristino
Sicari, D.
Fantuz, M.
Bellazzo, A.
Valentino, E.
Apollonio, M.
Pontisso, I.
Di Cristino, F.
Dal Ferro, M.
Bicciato, S.
Del Sal, G.
Collavin, L.
Source :
Oncogene. 38:6184-6195
Publication Year :
2019
Publisher :
Springer Science and Business Media LLC, 2019.

Abstract

Missense mutations in the TP53 gene are frequent in human cancers, giving rise to mutant p53 proteins that can acquire oncogenic properties. Gain of function mutant p53 proteins can enhance tumour aggressiveness by promoting cell invasion, metastasis and chemoresistance. Accumulating evidences indicate that mutant p53 proteins can also modulate cell homeostatic processes, suggesting that missense p53 mutation may increase resistance of tumour cells to intrinsic and extrinsic cancer-related stress conditions, thus offering a selective advantage. Here we provide evidence that mutant p53 proteins can modulate the Unfolded Protein Response (UPR) to increase cell survival upon Endoplasmic Reticulum (ER) stress, a condition to which cancer cells are exposed during tumour formation and progression, as well as during therapy. Mechanistically, this action of mutant p53 is due to enhanced activation of the pro-survival UPR effector ATF6, coordinated with inhibition of the pro-apoptotic UPR effectors JNK and CHOP. In a triple-negative breast cancer cell model with missense TP53 mutation, we found that ATF6 activity is necessary for viability and invasion phenotypes. Together, these findings suggest that ATF6 inhibitors might be combined with mutant p53-targeting drugs to specifically sensitise cancer cells to endogenous or chemotherapy-induced ER stress.

Details

ISSN :
14765594 and 09509232
Volume :
38
Database :
OpenAIRE
Journal :
Oncogene
Accession number :
edsair.doi.dedup.....ef267d096d6cfd6464913a1ffc0646eb
Full Text :
https://doi.org/10.1038/s41388-019-0878-3