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Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway

Endometrial cancer incidence increases annually. Several risk factors, including high glucose intake, are associated with endometrial cancer. We investigated whether glucose affects lysine-specific demethylase 1 (LSD1) expression and the responsible molecular mechanisms. A high concentration of gluc...

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Autores principales: Lin, Chiao-Yun, Chang, Chen-Bin, Wu, Ren-Chin, Chao, Angel, Lee, Yun-Shien, Tsai, Chi-Neu, Chen, Chih-Hao, Yen, Chih-Feng, Tsai, Chia-Lung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750790/
https://www.ncbi.nlm.nih.gov/pubmed/34942999
http://dx.doi.org/10.3390/antiox10121898
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author Lin, Chiao-Yun
Chang, Chen-Bin
Wu, Ren-Chin
Chao, Angel
Lee, Yun-Shien
Tsai, Chi-Neu
Chen, Chih-Hao
Yen, Chih-Feng
Tsai, Chia-Lung
author_facet Lin, Chiao-Yun
Chang, Chen-Bin
Wu, Ren-Chin
Chao, Angel
Lee, Yun-Shien
Tsai, Chi-Neu
Chen, Chih-Hao
Yen, Chih-Feng
Tsai, Chia-Lung
author_sort Lin, Chiao-Yun
collection PubMed
description Endometrial cancer incidence increases annually. Several risk factors, including high glucose intake, are associated with endometrial cancer. We investigated whether glucose affects lysine-specific demethylase 1 (LSD1) expression and the responsible molecular mechanisms. A high concentration of glucose stimulated p62 phosphorylation and increased LSD1 protein expression. Knockdown of p62 or treatment with mammalian target of rapamycin (mTOR), transforming growth factor-β activated kinase 1 (TAK1), casein kinase 1 (CK1), and protein kinase C (PKC) inhibitors abrogated glucose-regulated LSD1 expression. Unphosphorylated p62 and LSD1 formed a complex with Kelch-like ECH-associated protein 1 (KEAP1) and were degraded by the KEAP1-dependent proteasome. Phosphorylated p62 increased LSD1 protein expression by escaping the KEAP1 proteasome complex. LSD1 and KEAP1 interaction was enhanced in the presence of the nuclear factor erythroid 2-related factor 2 (NRF2) protein. LSD1 also participated in antioxidant gene regulation with NRF2. In diabetic mice, increasing LSD1and phospho-p62 expression was observed in uterine epithelial cells. Our results indicate that glucose induces p62 phosphorylation through mTOR, TAK1, CK1, and PKC kinases. Subsequently, phospho-p62 competitively interacts with KEAP1 and releases NRF2–LSD1 from the KEAP1 proteasome complex. Our findings may have public health implications for the prevention of endometrial cancer.
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spelling pubmed-87507902022-01-12 Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway Lin, Chiao-Yun Chang, Chen-Bin Wu, Ren-Chin Chao, Angel Lee, Yun-Shien Tsai, Chi-Neu Chen, Chih-Hao Yen, Chih-Feng Tsai, Chia-Lung Antioxidants (Basel) Article Endometrial cancer incidence increases annually. Several risk factors, including high glucose intake, are associated with endometrial cancer. We investigated whether glucose affects lysine-specific demethylase 1 (LSD1) expression and the responsible molecular mechanisms. A high concentration of glucose stimulated p62 phosphorylation and increased LSD1 protein expression. Knockdown of p62 or treatment with mammalian target of rapamycin (mTOR), transforming growth factor-β activated kinase 1 (TAK1), casein kinase 1 (CK1), and protein kinase C (PKC) inhibitors abrogated glucose-regulated LSD1 expression. Unphosphorylated p62 and LSD1 formed a complex with Kelch-like ECH-associated protein 1 (KEAP1) and were degraded by the KEAP1-dependent proteasome. Phosphorylated p62 increased LSD1 protein expression by escaping the KEAP1 proteasome complex. LSD1 and KEAP1 interaction was enhanced in the presence of the nuclear factor erythroid 2-related factor 2 (NRF2) protein. LSD1 also participated in antioxidant gene regulation with NRF2. In diabetic mice, increasing LSD1and phospho-p62 expression was observed in uterine epithelial cells. Our results indicate that glucose induces p62 phosphorylation through mTOR, TAK1, CK1, and PKC kinases. Subsequently, phospho-p62 competitively interacts with KEAP1 and releases NRF2–LSD1 from the KEAP1 proteasome complex. Our findings may have public health implications for the prevention of endometrial cancer. MDPI 2021-11-26 /pmc/articles/PMC8750790/ /pubmed/34942999 http://dx.doi.org/10.3390/antiox10121898 Text en © 2021 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
Lin, Chiao-Yun
Chang, Chen-Bin
Wu, Ren-Chin
Chao, Angel
Lee, Yun-Shien
Tsai, Chi-Neu
Chen, Chih-Hao
Yen, Chih-Feng
Tsai, Chia-Lung
Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title_full Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title_fullStr Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title_full_unstemmed Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title_short Glucose Activates Lysine-Specific Demethylase 1 through the KEAP1/p62 Pathway
title_sort glucose activates lysine-specific demethylase 1 through the keap1/p62 pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750790/
https://www.ncbi.nlm.nih.gov/pubmed/34942999
http://dx.doi.org/10.3390/antiox10121898
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