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Mutant p53 Mediates Sensitivity to Cancer Treatment Agents in Oesophageal Adenocarcinoma Associated with MicroRNA and SLC7A11 Expression

Authors :
Ann-Kathrin Eichelmann
George C. Mayne
Karen Chiam
Steven L. Due
Isabell Bastian
Frederike Butz
Tingting Wang
Pamela J. Sykes
Nicholas J. Clemons
David S. Liu
Michael Z. Michael
Christos S. Karapetis
Richard Hummel
David I. Watson
Damian J. Hussey
Source :
International Journal of Molecular Sciences, Vol 22, Iss 11, p 5547 (2021)
Publication Year :
2021
Publisher :
MDPI AG, 2021.

Abstract

TP53 gene mutations occur in 70% of oesophageal adenocarcinomas (OACs). Given the central role of p53 in controlling cellular response to therapy we investigated the role of mutant (mut-) p53 and SLC7A11 in a CRISPR-mediated JH-EsoAd1 TP53 knockout model. Response to 2 Gy irradiation, cisplatin, 5-FU, 4-hydroxytamoxifen, and endoxifen was assessed, followed by a TaqMan OpenArray qPCR screening for differences in miRNA expression. Knockout of mut-p53 resulted in increased chemo- and radioresistance (2 Gy survival fraction: 38% vs. 56%, p < 0.0001) and in altered miRNA expression levels. Target mRNA pathways analyses indicated several potential mechanisms of treatment resistance. SLC7A11 knockdown restored radiosensitivity (2 Gy SF: 46% vs. 73%; p = 0.0239), possibly via enhanced sensitivity to oxidative stress. Pathway analysis of the mRNA targets of differentially expressed miRNAs indicated potential involvement in several pathways associated with apoptosis, ribosomes, and p53 signaling pathways. The data suggest that mut-p53 in JH-EsoAd1, despite being classified as non-functional, has some function related to radio- and chemoresistance. The results also highlight the important role of SLC7A11 in cancer metabolism and redox balance and the influence of p53 on these processes. Inhibition of the SLC7A11-glutathione axis may represent a promising approach to overcome resistance associated with mut-p53.

Details

Language :
English
ISSN :
14220067 and 16616596
Volume :
22
Issue :
11
Database :
Directory of Open Access Journals
Journal :
International Journal of Molecular Sciences
Publication Type :
Academic Journal
Accession number :
edsdoj.609fc2bdfc7340fb94ec2554489c1fac
Document Type :
article
Full Text :
https://doi.org/10.3390/ijms22115547