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  • Expression of thimet oligop...
    Neves, Raquel Leão; Marem, Alyne; Carmona, Bruno; Arata, Júlia Galanakis; Cyrillo Ramos, Marcos Paulo; Justo, Giselle Zenker; Machado de Melo, Fabiana Henriques; Oliveira, Vitor; Icimoto, Marcelo Yudi

    Biochimie, September 2023, 2023-Sep, 2023-09-00, 20230901, Letnik: 212
    Journal Article

    Thimet oligopeptidase (THOP) is a cytosolic metallopeptidase known to regulate the fate of post-proteasomal peptides, protein turnover and peptide selection in the antigen presentation machinery (APM) system. Oxidative stress influences THOP expression and regulates its proteolytic activity, generating variable cytosolic peptide levels, possibly affecting the immune evasion of tumor cells. In the present work, we examined the association between THOP expression/activity and stress oxidative resistance in human leukemia cells using the K562 cell line, a chronic myeloid leukemia (CML), and the multidrug-resistant (MDR) Lucena 1 (K562-derived MDR cell line) as model. The Lucena 1 phenotype was validated under vincristine treatment and the relative THOP1 mRNA levels and protein expression compared to K562 cell line. Our data demonstrated increased THOP1 gene and protein levels in K562 cells in contrast to the oxidative-resistant Lucena 1, even after H2O2 treatment, suggesting an oxidative stress dependence in THOP regulation. Further, it was observed higher basal levels of reactive oxygen species (ROS) in K562 compared to Lucena 1 cell line using DHE fluorescent probe. Since THOP activity is dependent on its oligomeric state, we also compared its proteolytic activity under reducing agent treatment, which demonstrated that its function modulation with respect to changes in redox state. Finally, the mRNA expression and FACS analyses demonstrated a reduced expression of MHC I only in K562 cell line. In conclusion, our results highlight THOP redox modulation, which could influence antigen presentation in multidrug resistant leukemia cells. •High THOP levels were detected in K562 human leukemia cell line.•Multidrug (MDR) Lucena 1 cells is an important redox model to study THOP expression.•Reactive oxygen species increase THOP expression in non-MDR K562 leukemia cell line.•THOP expression in MDR leukemia cells is unaffected by hydrogen peroxide treatment.•ROS treatment affected differently MHC I and THOP expression in non-MDR K562 cells.