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Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells

Cystathionine β-synthase (CBS), CSE (cystathionine γ-lyase) and 3-mercaptopyruvate sulfurtransferase (3-MST) have emerged as three significant sources of hydrogen sulfide (H(2)S) in various forms of mammalian cancer. Here, we investigated the functional role of CBS’ and 3-MST’s catalytic activity in...

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Autores principales: Santos, Sidneia Sousa, Rodrigues, Larissa de Oliveira Cavalcanti Peres, Martins, Vanessa, Petrosino, Maria, Zuhra, Karim, Ascenção, Kelly, Anand, Abhishek, Abdel-Kader, Reham Mahmoud, Gad, Mohamed Z., Bourquin, Carole, Szabo, Csaba
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10045476/
https://www.ncbi.nlm.nih.gov/pubmed/36978895
http://dx.doi.org/10.3390/antiox12030647
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author Santos, Sidneia Sousa
Rodrigues, Larissa de Oliveira Cavalcanti Peres
Martins, Vanessa
Petrosino, Maria
Zuhra, Karim
Ascenção, Kelly
Anand, Abhishek
Abdel-Kader, Reham Mahmoud
Gad, Mohamed Z.
Bourquin, Carole
Szabo, Csaba
author_facet Santos, Sidneia Sousa
Rodrigues, Larissa de Oliveira Cavalcanti Peres
Martins, Vanessa
Petrosino, Maria
Zuhra, Karim
Ascenção, Kelly
Anand, Abhishek
Abdel-Kader, Reham Mahmoud
Gad, Mohamed Z.
Bourquin, Carole
Szabo, Csaba
author_sort Santos, Sidneia Sousa
collection PubMed
description Cystathionine β-synthase (CBS), CSE (cystathionine γ-lyase) and 3-mercaptopyruvate sulfurtransferase (3-MST) have emerged as three significant sources of hydrogen sulfide (H(2)S) in various forms of mammalian cancer. Here, we investigated the functional role of CBS’ and 3-MST’s catalytic activity in the murine breast cancer cell line EO771. The CBS/CSE inhibitor aminooxyacetic acid (AOAA) and the 3-MST inhibitor 2-[(4-hydroxy-6-methylpyrimidin-2-yl)sulfanyl]-1-(naphthalen-1-yl)ethan-1-one (HMPSNE) were used to assess the role of endogenous H(2)S in the modulation of breast cancer cell proliferation, migration, bioenergetics and viability in vitro. Methods included measurements of cell viability (MTT and LDH assays), cell proliferation and in vitro wound healing (IncuCyte) and cellular bioenergetics (Seahorse extracellular flux analysis). CBS and 3-MST, as well as expression were detected by Western blotting; H(2)S production was measured by the fluorescent dye AzMC. The results show that EO771 cells express CBS, CSE and 3-MST protein, as well as several enzymes involved in H(2)S degradation (SQR, TST, and ETHE1). Pharmacological inhibition of CBS or 3-MST inhibited H(2)S production, suppressed cellular bioenergetics and attenuated cell proliferation. Cell migration was only inhibited by the 3-MST inhibitor, but not the CBS/CSE inhibitor. Inhibition of CBS/CSE of 3-MST did not significantly affect basal cell viability; inhibition of 3-MST (but not of CBS/CSE) slightly enhanced the cytotoxic effects of oxidative stress (hydrogen peroxide challenge). From these findings, we conclude that endogenous H(2)S, generated by 3-MST and to a lower degree by CBS/CSE, significantly contributes to the maintenance of bioenergetics, proliferation and migration in murine breast cancer cells and may also exert a minor role as a cytoprotectant.
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spelling pubmed-100454762023-03-29 Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells Santos, Sidneia Sousa Rodrigues, Larissa de Oliveira Cavalcanti Peres Martins, Vanessa Petrosino, Maria Zuhra, Karim Ascenção, Kelly Anand, Abhishek Abdel-Kader, Reham Mahmoud Gad, Mohamed Z. Bourquin, Carole Szabo, Csaba Antioxidants (Basel) Article Cystathionine β-synthase (CBS), CSE (cystathionine γ-lyase) and 3-mercaptopyruvate sulfurtransferase (3-MST) have emerged as three significant sources of hydrogen sulfide (H(2)S) in various forms of mammalian cancer. Here, we investigated the functional role of CBS’ and 3-MST’s catalytic activity in the murine breast cancer cell line EO771. The CBS/CSE inhibitor aminooxyacetic acid (AOAA) and the 3-MST inhibitor 2-[(4-hydroxy-6-methylpyrimidin-2-yl)sulfanyl]-1-(naphthalen-1-yl)ethan-1-one (HMPSNE) were used to assess the role of endogenous H(2)S in the modulation of breast cancer cell proliferation, migration, bioenergetics and viability in vitro. Methods included measurements of cell viability (MTT and LDH assays), cell proliferation and in vitro wound healing (IncuCyte) and cellular bioenergetics (Seahorse extracellular flux analysis). CBS and 3-MST, as well as expression were detected by Western blotting; H(2)S production was measured by the fluorescent dye AzMC. The results show that EO771 cells express CBS, CSE and 3-MST protein, as well as several enzymes involved in H(2)S degradation (SQR, TST, and ETHE1). Pharmacological inhibition of CBS or 3-MST inhibited H(2)S production, suppressed cellular bioenergetics and attenuated cell proliferation. Cell migration was only inhibited by the 3-MST inhibitor, but not the CBS/CSE inhibitor. Inhibition of CBS/CSE of 3-MST did not significantly affect basal cell viability; inhibition of 3-MST (but not of CBS/CSE) slightly enhanced the cytotoxic effects of oxidative stress (hydrogen peroxide challenge). From these findings, we conclude that endogenous H(2)S, generated by 3-MST and to a lower degree by CBS/CSE, significantly contributes to the maintenance of bioenergetics, proliferation and migration in murine breast cancer cells and may also exert a minor role as a cytoprotectant. MDPI 2023-03-05 /pmc/articles/PMC10045476/ /pubmed/36978895 http://dx.doi.org/10.3390/antiox12030647 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Santos, Sidneia Sousa
Rodrigues, Larissa de Oliveira Cavalcanti Peres
Martins, Vanessa
Petrosino, Maria
Zuhra, Karim
Ascenção, Kelly
Anand, Abhishek
Abdel-Kader, Reham Mahmoud
Gad, Mohamed Z.
Bourquin, Carole
Szabo, Csaba
Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title_full Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title_fullStr Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title_full_unstemmed Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title_short Role of Cystathionine β-Synthase and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of Proliferation, Migration, and Bioenergetics of Murine Breast Cancer Cells
title_sort role of cystathionine β-synthase and 3-mercaptopyruvate sulfurtransferase in the regulation of proliferation, migration, and bioenergetics of murine breast cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10045476/
https://www.ncbi.nlm.nih.gov/pubmed/36978895
http://dx.doi.org/10.3390/antiox12030647
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