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Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa

BACKGROUND: Chronic exposure to elevated levels of saturated fatty acids results in pancreatic β-cell senescence. However, targets and effective agents for preventing stearic acid-induced β-cell senescence are still lacking. Although melatonin administration can protect β-cells against lipotoxicity...

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Autores principales: Su, Shenghan, Zhao, Qingrui, Dan, Lingfeng, Lin, Yuqing, Li, Xuebei, Zhang, Yunjin, Yang, Chunxiao, Dong, Yimeng, Li, Xiaohan, Regazzi, Romano, Sun, Changhao, Chu, Xia, Lu, Huimin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Endocrine Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816504/
https://www.ncbi.nlm.nih.gov/pubmed/36475359
http://dx.doi.org/10.3803/EnM.2022.1565
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author Su, Shenghan
Zhao, Qingrui
Dan, Lingfeng
Lin, Yuqing
Li, Xuebei
Zhang, Yunjin
Yang, Chunxiao
Dong, Yimeng
Li, Xiaohan
Regazzi, Romano
Sun, Changhao
Chu, Xia
Lu, Huimin
author_facet Su, Shenghan
Zhao, Qingrui
Dan, Lingfeng
Lin, Yuqing
Li, Xuebei
Zhang, Yunjin
Yang, Chunxiao
Dong, Yimeng
Li, Xiaohan
Regazzi, Romano
Sun, Changhao
Chu, Xia
Lu, Huimin
author_sort Su, Shenghan
collection PubMed
description BACKGROUND: Chronic exposure to elevated levels of saturated fatty acids results in pancreatic β-cell senescence. However, targets and effective agents for preventing stearic acid-induced β-cell senescence are still lacking. Although melatonin administration can protect β-cells against lipotoxicity through anti-senescence processes, the precise underlying mechanisms still need to be explored. Therefore, we investigated the anti-senescence effect of melatonin on stearic acid-treated mouse β-cells and elucidated the possible role of microRNAs in this process. METHODS: β-Cell senescence was identified by measuring the expression of senescence-related genes and senescence-associated β-galactosidase staining. Gain- and loss-of-function approaches were used to investigate the involvement of microRNAs in stearic acid-evoked β-cell senescence and dysfunction. Bioinformatics analyses and luciferase reporter activity assays were applied to predict the direct targets of microRNAs. RESULTS: Long-term exposure to a high concentration of stearic acid-induced senescence and upregulated miR-146a-5p and miR-8114 expression in both mouse islets and β-TC6 cell lines. Melatonin effectively suppressed this process and reduced the levels of these two miRNAs. A remarkable reversibility of stearic acid-induced β-cell senescence and dysfunction was observed after silencing miR-146a-5p and miR-8114. Moreover, V-maf musculoaponeurotic fibrosarcoma oncogene homolog A (Mafa) was verified as a direct target of miR-146a-5p and miR-8114. Melatonin also significantly ameliorated senescence and dysfunction in miR-146a-5pand miR-8114-transfected β-cells. CONCLUSION: These data demonstrate that melatonin protects against stearic acid-induced β-cell senescence by inhibiting miR-146a- 5p and miR-8114 and upregulating Mafa expression. This not only provides novel targets for preventing stearic acid-induced β-cell dysfunction, but also points to melatonin as a promising drug to combat type 2 diabetes progression.
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spelling pubmed-98165042023-01-11 Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa Su, Shenghan Zhao, Qingrui Dan, Lingfeng Lin, Yuqing Li, Xuebei Zhang, Yunjin Yang, Chunxiao Dong, Yimeng Li, Xiaohan Regazzi, Romano Sun, Changhao Chu, Xia Lu, Huimin Endocrinol Metab (Seoul) Original Article BACKGROUND: Chronic exposure to elevated levels of saturated fatty acids results in pancreatic β-cell senescence. However, targets and effective agents for preventing stearic acid-induced β-cell senescence are still lacking. Although melatonin administration can protect β-cells against lipotoxicity through anti-senescence processes, the precise underlying mechanisms still need to be explored. Therefore, we investigated the anti-senescence effect of melatonin on stearic acid-treated mouse β-cells and elucidated the possible role of microRNAs in this process. METHODS: β-Cell senescence was identified by measuring the expression of senescence-related genes and senescence-associated β-galactosidase staining. Gain- and loss-of-function approaches were used to investigate the involvement of microRNAs in stearic acid-evoked β-cell senescence and dysfunction. Bioinformatics analyses and luciferase reporter activity assays were applied to predict the direct targets of microRNAs. RESULTS: Long-term exposure to a high concentration of stearic acid-induced senescence and upregulated miR-146a-5p and miR-8114 expression in both mouse islets and β-TC6 cell lines. Melatonin effectively suppressed this process and reduced the levels of these two miRNAs. A remarkable reversibility of stearic acid-induced β-cell senescence and dysfunction was observed after silencing miR-146a-5p and miR-8114. Moreover, V-maf musculoaponeurotic fibrosarcoma oncogene homolog A (Mafa) was verified as a direct target of miR-146a-5p and miR-8114. Melatonin also significantly ameliorated senescence and dysfunction in miR-146a-5pand miR-8114-transfected β-cells. CONCLUSION: These data demonstrate that melatonin protects against stearic acid-induced β-cell senescence by inhibiting miR-146a- 5p and miR-8114 and upregulating Mafa expression. This not only provides novel targets for preventing stearic acid-induced β-cell dysfunction, but also points to melatonin as a promising drug to combat type 2 diabetes progression. Korean Endocrine Society 2022-12 2022-12-07 /pmc/articles/PMC9816504/ /pubmed/36475359 http://dx.doi.org/10.3803/EnM.2022.1565 Text en Copyright © 2022 Korean Endocrine Society https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Su, Shenghan
Zhao, Qingrui
Dan, Lingfeng
Lin, Yuqing
Li, Xuebei
Zhang, Yunjin
Yang, Chunxiao
Dong, Yimeng
Li, Xiaohan
Regazzi, Romano
Sun, Changhao
Chu, Xia
Lu, Huimin
Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title_full Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title_fullStr Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title_full_unstemmed Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title_short Inhibition of miR-146a-5p and miR-8114 in Insulin-Secreting Cells Contributes to the Protection of Melatonin against Stearic Acid-Induced Cellular Senescence by Targeting Mafa
title_sort inhibition of mir-146a-5p and mir-8114 in insulin-secreting cells contributes to the protection of melatonin against stearic acid-induced cellular senescence by targeting mafa
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9816504/
https://www.ncbi.nlm.nih.gov/pubmed/36475359
http://dx.doi.org/10.3803/EnM.2022.1565
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