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Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells

This study aimed to establish the importance of ergothioneine (ERT) in the erythroid adaptation mechanisms by appraising the expression levels of redox-related genes associated with the PI3K/AKT/FoxO3 and Nrf2-ARE pathways using K562 cells induced to erythroid differentiation and H(2)O(2)-oxidative...

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Autores principales: Bernardo, Victoria Simões, Torres, Flaviene Felix, de Paula, Carla Peres, da Silva, João Pedro Maia de Oliveira, de Almeida, Eduardo Alves, da Cunha, Anderson Ferreira, da Silva, Danilo Grünig Humberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778224/
https://www.ncbi.nlm.nih.gov/pubmed/36553634
http://dx.doi.org/10.3390/genes13122368
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author Bernardo, Victoria Simões
Torres, Flaviene Felix
de Paula, Carla Peres
da Silva, João Pedro Maia de Oliveira
de Almeida, Eduardo Alves
da Cunha, Anderson Ferreira
da Silva, Danilo Grünig Humberto
author_facet Bernardo, Victoria Simões
Torres, Flaviene Felix
de Paula, Carla Peres
da Silva, João Pedro Maia de Oliveira
de Almeida, Eduardo Alves
da Cunha, Anderson Ferreira
da Silva, Danilo Grünig Humberto
author_sort Bernardo, Victoria Simões
collection PubMed
description This study aimed to establish the importance of ergothioneine (ERT) in the erythroid adaptation mechanisms by appraising the expression levels of redox-related genes associated with the PI3K/AKT/FoxO3 and Nrf2-ARE pathways using K562 cells induced to erythroid differentiation and H(2)O(2)-oxidative stress. Cell viability and gene expression were evaluated. Two concentrations of ERT were assessed, 1 nM (C1) and 100 µM (C2), with and without stress induction (100 µM H(2)O(2)). Assessments were made in three periods of the cellular differentiation process (D0, D2, and D4). The C1 treatment promoted the induction of FOXO3 (D0 and 2), PSMB5, and 6 expressions (D4); C1 + H(2)O(2) treatment showed the highest levels of NRF2 transcripts, KEAP1 (D0), YWHAQ (D2 and 4), PSMB5 (D2) and PSMB6 (D4); and C2 + H(2)O(2) (D2) an increase in FOXO3 and MST1 expression, with a decrease of YWHAQ and NRF2 was observed. in C2 + H(2)O(2) (D2) an increase in FOXO3 and MST1, with a decrease in YWHAQ and NRF2 was observed All ERT treatments increased gamma-globin expression. Statistical multivariate analyzes highlighted that the Nrf2-ARE pathway presented a greater contribution in the production of PRDX1, SOD1, CAT, and PSBM5 mRNAs, whereas the PI3K/AKT/FoxO3 pathway was associated with the PRDX2 and TRX transcripts. In conclusion, ERT presented a cytoprotective action through Nrf2 and FoxO3, with the latter seeming to contribute to erythroid proliferation/differentiation.
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spelling pubmed-97782242022-12-23 Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells Bernardo, Victoria Simões Torres, Flaviene Felix de Paula, Carla Peres da Silva, João Pedro Maia de Oliveira de Almeida, Eduardo Alves da Cunha, Anderson Ferreira da Silva, Danilo Grünig Humberto Genes (Basel) Article This study aimed to establish the importance of ergothioneine (ERT) in the erythroid adaptation mechanisms by appraising the expression levels of redox-related genes associated with the PI3K/AKT/FoxO3 and Nrf2-ARE pathways using K562 cells induced to erythroid differentiation and H(2)O(2)-oxidative stress. Cell viability and gene expression were evaluated. Two concentrations of ERT were assessed, 1 nM (C1) and 100 µM (C2), with and without stress induction (100 µM H(2)O(2)). Assessments were made in three periods of the cellular differentiation process (D0, D2, and D4). The C1 treatment promoted the induction of FOXO3 (D0 and 2), PSMB5, and 6 expressions (D4); C1 + H(2)O(2) treatment showed the highest levels of NRF2 transcripts, KEAP1 (D0), YWHAQ (D2 and 4), PSMB5 (D2) and PSMB6 (D4); and C2 + H(2)O(2) (D2) an increase in FOXO3 and MST1 expression, with a decrease of YWHAQ and NRF2 was observed. in C2 + H(2)O(2) (D2) an increase in FOXO3 and MST1, with a decrease in YWHAQ and NRF2 was observed All ERT treatments increased gamma-globin expression. Statistical multivariate analyzes highlighted that the Nrf2-ARE pathway presented a greater contribution in the production of PRDX1, SOD1, CAT, and PSBM5 mRNAs, whereas the PI3K/AKT/FoxO3 pathway was associated with the PRDX2 and TRX transcripts. In conclusion, ERT presented a cytoprotective action through Nrf2 and FoxO3, with the latter seeming to contribute to erythroid proliferation/differentiation. MDPI 2022-12-15 /pmc/articles/PMC9778224/ /pubmed/36553634 http://dx.doi.org/10.3390/genes13122368 Text en © 2022 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
Bernardo, Victoria Simões
Torres, Flaviene Felix
de Paula, Carla Peres
da Silva, João Pedro Maia de Oliveira
de Almeida, Eduardo Alves
da Cunha, Anderson Ferreira
da Silva, Danilo Grünig Humberto
Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title_full Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title_fullStr Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title_full_unstemmed Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title_short Potential Cytoprotective and Regulatory Effects of Ergothioneine on Gene Expression of Proteins Involved in Erythroid Adaptation Mechanisms and Redox Pathways in K562 Cells
title_sort potential cytoprotective and regulatory effects of ergothioneine on gene expression of proteins involved in erythroid adaptation mechanisms and redox pathways in k562 cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9778224/
https://www.ncbi.nlm.nih.gov/pubmed/36553634
http://dx.doi.org/10.3390/genes13122368
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