» Articles » PMID: 22761781

Peroxiredoxin 3 is a Redox-dependent Target of Thiostrepton in Malignant Mesothelioma Cells

Overview
Journal PLoS One
Date 2012 Jul 5
PMID 22761781
Citations 31
Authors
Affiliations
Soon will be listed here.
Abstract

Thiostrepton (TS) is a thiazole antibiotic that inhibits expression of FOXM1, an oncogenic transcription factor required for cell cycle progression and resistance to oncogene-induced oxidative stress. The mechanism of action of TS is unclear and strategies that enhance TS activity will improve its therapeutic potential. Analysis of human tumor specimens showed FOXM1 is broadly expressed in malignant mesothelioma (MM), an intractable tumor associated with asbestos exposure. The mechanism of action of TS was investigated in a cell culture model of human MM. As for other tumor cell types, TS inhibited expression of FOXM1 in MM cells in a dose-dependent manner. Suppression of FOXM1 expression and coincidental activation of ERK1/2 by TS were abrogated by pre-incubation of cells with the antioxidant N-acetyl-L-cysteine (NAC), indicating its mechanism of action in MM cells is redox-dependent. Examination of the mitochondrial thioredoxin reductase 2 (TR2)-thioredoxin 2 (TRX2)-peroxiredoxin 3 (PRX3) antioxidant network revealed that TS modifies the electrophoretic mobility of PRX3. Incubation of recombinant human PRX3 with TS in vitro also resulted in PRX3 with altered electrophoretic mobility. The cellular and recombinant species of modified PRX3 were resistant to dithiothreitol and SDS and suppressed by NAC, indicating that TS covalently adducts cysteine residues in PRX3. Reduction of endogenous mitochondrial TRX2 levels by the cationic triphenylmethane gentian violet (GV) promoted modification of PRX3 by TS and significantly enhanced its cytotoxic activity. Our results indicate TS covalently adducts PRX3, thereby disabling a major mitochondrial antioxidant network that counters chronic mitochondrial oxidative stress. Redox-active compounds like GV that modify the TR2/TRX2 network may significantly enhance the efficacy of TS, thereby providing a combinatorial approach for exploiting redox-dependent perturbations in mitochondrial function as a therapeutic approach in mesothelioma.

Citing Articles

Thiostrepton as a Potential Therapeutic Agent for Hepatocellular Carcinoma.

Su G, Yang Q, Zhou H, Huang Y, Nie S, Wang D Int J Mol Sci. 2024; 25(17).

PMID: 39273665 PMC: 11395809. DOI: 10.3390/ijms25179717.


Peroxiredoxin 3 regulates breast cancer progression via ERK-mediated MMP-1 expression.

Chua P, Ow S, Ng C, Huang W, Low J, Tan P Cancer Cell Int. 2024; 24(1):59.

PMID: 38321552 PMC: 10845805. DOI: 10.1186/s12935-024-03248-x.


Immunomodulation, Bioavailability and Safety of Bacteriocins.

Guryanova S Life (Basel). 2023; 13(7).

PMID: 37511896 PMC: 10381439. DOI: 10.3390/life13071521.


Leveraging genetic diversity to identify small molecules that reverse mouse skeletal muscle insulin resistance.

Masson S, Madsen S, Cooke K, Potter M, Vegas A, Carroll L Elife. 2023; 12.

PMID: 37494090 PMC: 10371229. DOI: 10.7554/eLife.86961.


Inhibition of Mitochondrial Antioxidant Defense and CDK4/6 in Mesothelioma.

Kratzke M, Scaria G, Porter S, Kren B, Klein M Molecules. 2023; 28(11).

PMID: 37298855 PMC: 10254447. DOI: 10.3390/molecules28114380.


References
1.
Laoukili J, Alvarez-Fernandez M, Stahl M, Medema R . FoxM1 is degraded at mitotic exit in a Cdh1-dependent manner. Cell Cycle. 2008; 7(17):2720-6. DOI: 10.4161/cc.7.17.6580. View

2.
Burch P, Yuan Z, Loonen A, Heintz N . An extracellular signal-regulated kinase 1- and 2-dependent program of chromatin trafficking of c-Fos and Fra-1 is required for cyclin D1 expression during cell cycle reentry. Mol Cell Biol. 2004; 24(11):4696-709. PMC: 416393. DOI: 10.1128/MCB.24.11.4696-4709.2004. View

3.
Pandit B, Gartel A . FoxM1 knockdown sensitizes human cancer cells to proteasome inhibitor-induced apoptosis but not to autophagy. Cell Cycle. 2011; 10(19):3269-73. PMC: 3233624. DOI: 10.4161/cc.10.19.17735. View

4.
Myatt S, Lam E . The emerging roles of forkhead box (Fox) proteins in cancer. Nat Rev Cancer. 2007; 7(11):847-59. DOI: 10.1038/nrc2223. View

5.
Kundu K, Knight S, Willett N, Lee S, Taylor W, Murthy N . Hydrocyanines: a class of fluorescent sensors that can image reactive oxygen species in cell culture, tissue, and in vivo. Angew Chem Int Ed Engl. 2008; 48(2):299-303. PMC: 5935505. DOI: 10.1002/anie.200804851. View