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Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells

Although the antineoplastic activity of metformin (MET) is well established, the underlying mechanism of the activity is not understood. Since MET activates AMP kinase (AMPK) and proline dehydrogenase/proline oxidase (PRODH/POX) is stimulated by AMPK ligands (implicated in the regulation of cancer c...

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Autores principales: Huynh, Thi Yen Ly, Oscilowska, Ilona, Szoka, Lukasz, Piktel, Ewelina, Baszanowska, Weronika, Bielawska, Katarzyna, Bucki, Robert, Miltyk, Wojciech, Palka, Jerzy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9207455/
https://www.ncbi.nlm.nih.gov/pubmed/35733940
http://dx.doi.org/10.3389/fmolb.2022.869413
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author Huynh, Thi Yen Ly
Oscilowska, Ilona
Szoka, Lukasz
Piktel, Ewelina
Baszanowska, Weronika
Bielawska, Katarzyna
Bucki, Robert
Miltyk, Wojciech
Palka, Jerzy
author_facet Huynh, Thi Yen Ly
Oscilowska, Ilona
Szoka, Lukasz
Piktel, Ewelina
Baszanowska, Weronika
Bielawska, Katarzyna
Bucki, Robert
Miltyk, Wojciech
Palka, Jerzy
author_sort Huynh, Thi Yen Ly
collection PubMed
description Although the antineoplastic activity of metformin (MET) is well established, the underlying mechanism of the activity is not understood. Since MET activates AMP kinase (AMPK) and proline dehydrogenase/proline oxidase (PRODH/POX) is stimulated by AMPK ligands (implicated in the regulation of cancer cell survival/apoptosis), the effect of MET on PRODH/POX-dependent apoptosis in wild-type MCF-7 cells (MCF-7(WT)) and POX knockdown MCF-7 cells (MCF-7(crPOX) cells) was studied. PRODH/POX catalyzes proline degradation generating ROS-induced apoptosis or autophagy. Availability of proline for PRODH/POX functions is regulated by the activity of prolidase (enzyme releasing proline from imidodipeptides), collagen biosynthesis (process consuming proline), and metabolism of proline, ornithine, and glutamic acid. We have found that MET is cytotoxic for MCF-7 cells (IC50∼17 mM), and to the lower extent for MCF-7(crPOX) cells (IC50∼28 mM). In MCF-7(WT) cells, the effect was accompanied by the inhibition of DNA biosynthesis, collagen biosynthesis, stimulation of ROS formation, AMPKα phosphorylation, and expression of prolidase, p53, caspase 8, caspase 9, and cleaved PARP. In MET-treated MCF-7(crPOX) cells, the processes were less affected than in MCF-7(WT) cells and the expression of caspase 9 was decreased, while cleaved caspase 8 and cleaved PARP were not detected. The effects were accompanied by an increase in the prolidase activity and proline concentration. The mechanism for MET-induced apoptosis involves the up-regulation of prolidase activity and a decrease in collagen biosynthesis contributing to an increase in the concentration of substrate (proline) for PRODH/POX-dependent ROS formation and activation of caspases −9 and −8. The data suggest that PRODH/POX participates in the MET-induced intrinsic and extrinsic apoptosis in MCF-7 cells.
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spelling pubmed-92074552022-06-21 Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells Huynh, Thi Yen Ly Oscilowska, Ilona Szoka, Lukasz Piktel, Ewelina Baszanowska, Weronika Bielawska, Katarzyna Bucki, Robert Miltyk, Wojciech Palka, Jerzy Front Mol Biosci Molecular Biosciences Although the antineoplastic activity of metformin (MET) is well established, the underlying mechanism of the activity is not understood. Since MET activates AMP kinase (AMPK) and proline dehydrogenase/proline oxidase (PRODH/POX) is stimulated by AMPK ligands (implicated in the regulation of cancer cell survival/apoptosis), the effect of MET on PRODH/POX-dependent apoptosis in wild-type MCF-7 cells (MCF-7(WT)) and POX knockdown MCF-7 cells (MCF-7(crPOX) cells) was studied. PRODH/POX catalyzes proline degradation generating ROS-induced apoptosis or autophagy. Availability of proline for PRODH/POX functions is regulated by the activity of prolidase (enzyme releasing proline from imidodipeptides), collagen biosynthesis (process consuming proline), and metabolism of proline, ornithine, and glutamic acid. We have found that MET is cytotoxic for MCF-7 cells (IC50∼17 mM), and to the lower extent for MCF-7(crPOX) cells (IC50∼28 mM). In MCF-7(WT) cells, the effect was accompanied by the inhibition of DNA biosynthesis, collagen biosynthesis, stimulation of ROS formation, AMPKα phosphorylation, and expression of prolidase, p53, caspase 8, caspase 9, and cleaved PARP. In MET-treated MCF-7(crPOX) cells, the processes were less affected than in MCF-7(WT) cells and the expression of caspase 9 was decreased, while cleaved caspase 8 and cleaved PARP were not detected. The effects were accompanied by an increase in the prolidase activity and proline concentration. The mechanism for MET-induced apoptosis involves the up-regulation of prolidase activity and a decrease in collagen biosynthesis contributing to an increase in the concentration of substrate (proline) for PRODH/POX-dependent ROS formation and activation of caspases −9 and −8. The data suggest that PRODH/POX participates in the MET-induced intrinsic and extrinsic apoptosis in MCF-7 cells. Frontiers Media S.A. 2022-06-06 /pmc/articles/PMC9207455/ /pubmed/35733940 http://dx.doi.org/10.3389/fmolb.2022.869413 Text en Copyright © 2022 Huynh, Oscilowska, Szoka, Piktel, Baszanowska, Bielawska, Bucki, Miltyk and Palka. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Huynh, Thi Yen Ly
Oscilowska, Ilona
Szoka, Lukasz
Piktel, Ewelina
Baszanowska, Weronika
Bielawska, Katarzyna
Bucki, Robert
Miltyk, Wojciech
Palka, Jerzy
Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title_full Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title_fullStr Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title_full_unstemmed Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title_short Metformin Induces PRODH/POX-Dependent Apoptosis in Breast Cancer Cells
title_sort metformin induces prodh/pox-dependent apoptosis in breast cancer cells
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9207455/
https://www.ncbi.nlm.nih.gov/pubmed/35733940
http://dx.doi.org/10.3389/fmolb.2022.869413
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