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MAFG is a potential therapeutic target to restore chemosensitivity in cisplatin-resistant cancer cells by increasing reactive oxygen species.

Authors :
Vera-Puente, Olga
Rodriguez-Antolin, Carlos
Salgado-Figueroa, Ana
Michalska, Patrycja
Pernia, Olga
Reid, Brett M.
Rosas, RocÍo
Garcia-Guede, Alvaro
SacristÁn, Silvia
Jimenez, Julia
Esteban-Rodriguez, Isabel
Martin, M. Elena
Sellers, Thomas A.
León, Rafael
Gonzalez, VÍctor M.
De Castro, Javier
Ibanez de Caceres, Inmaculada
Source :
Translational Research: The Journal of Laboratory & Clinical Medicine; Oct2018, Vol. 200, p1-17, 17p
Publication Year :
2018

Abstract

Adjuvant chemotherapy for solid tumors based on platinum-derived compounds such as cisplatin is the treatment of choice in most cases. Cisplatin triggers signaling pathways that lead to cell death, but it also induces changes in tumor cells that modify the therapeutic response, thereby leading to cisplatin resistance. We have recently reported that microRNA-7 is silenced by DNA methylation and is involved in the resistance to platinum in cancer cells through the action of the musculoaponeurotic fibrosarcoma oncogene family, protein G (MAFG). In the present study, we first confirm the miR-7 epigenetic regulation of MAFG in 44 normal- and/or tumor-paired samples in non-small-cell lung cancer (NSCLC). We also provide translational evidence of the role of MAFG and the clinical outcome in NSCLC by the interrogation of two extensive in silico databases of 2019 patients. Moreover, we propose that MAFG-mediated resistance could be conferred due to lower reactive oxygen species production after cisplatin exposure. We developed specifically selected aptamers against MAFG, with high sensitivity to detect the protein at a nuclear level probed by aptacytochemistry and histochemistry analyses. The inhibition of MAFG activity through the action of the specific aptamer apMAFG6F increased the levels of reactive oxygen species production and the sensitivity to cisplatin. We report first the specific nuclear identification of MAFG as a novel detection method for diagnosis in NSCLC, and then we report that MAFG modulates the redox response and confers cell protection against free radicals generated after platinum administration, thus also being a promising therapeutic target. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19315244
Volume :
200
Database :
Supplemental Index
Journal :
Translational Research: The Journal of Laboratory & Clinical Medicine
Publication Type :
Academic Journal
Accession number :
131970965
Full Text :
https://doi.org/10.1016/j.trsl.2018.06.005