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Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice

AMP-activated protein kinase alpha 2 (AMPKα2) regulates energy metabolism, protein synthesis, and glucolipid metabolism myocardial cells. Ketone bodies produced by fatty acid β-oxidation, especially β-hydroxybutyrate, are fatty energy–supplying substances for the heart, brain, and other organs durin...

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Autores principales: Ding, Wen-jing, Li, Xue-hui, Tang, Cong-min, Yang, Xue-chun, Sun, Yan, Song, Yi-ping, Ling, Ming-ying, Yan, Rong, Gao, Hai-qing, Zhang, Wen-hua, Yu, Na, Feng, Jun-chao, Zhang, Zhen, Xing, Yan-qiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941199/
https://www.ncbi.nlm.nih.gov/pubmed/36621768
http://dx.doi.org/10.1016/j.mcpro.2023.100494
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author Ding, Wen-jing
Li, Xue-hui
Tang, Cong-min
Yang, Xue-chun
Sun, Yan
Song, Yi-ping
Ling, Ming-ying
Yan, Rong
Gao, Hai-qing
Zhang, Wen-hua
Yu, Na
Feng, Jun-chao
Zhang, Zhen
Xing, Yan-qiu
author_facet Ding, Wen-jing
Li, Xue-hui
Tang, Cong-min
Yang, Xue-chun
Sun, Yan
Song, Yi-ping
Ling, Ming-ying
Yan, Rong
Gao, Hai-qing
Zhang, Wen-hua
Yu, Na
Feng, Jun-chao
Zhang, Zhen
Xing, Yan-qiu
author_sort Ding, Wen-jing
collection PubMed
description AMP-activated protein kinase alpha 2 (AMPKα2) regulates energy metabolism, protein synthesis, and glucolipid metabolism myocardial cells. Ketone bodies produced by fatty acid β-oxidation, especially β-hydroxybutyrate, are fatty energy–supplying substances for the heart, brain, and other organs during fasting and long-term exercise. They also regulate metabolic signaling for multiple cellular functions. Lysine β-hydroxybutyrylation (Kbhb) is a β-hydroxybutyrate–mediated protein posttranslational modification. Histone Kbhb has been identified in yeast, mouse, and human cells. However, whether AMPK regulates protein Kbhb is yet unclear. Hence, the present study explored the changes in proteomics and Kbhb modification omics in the hearts of AMPKα2 knockout mice using a comprehensive quantitative proteomic analysis. Based on mass spectrometry (LC-MS/MS) analysis, the number of 1181 Kbhb modified sites in 455 proteins were quantified between AMPKα2 knockout mice and wildtype mice; 244 Kbhb sites in 142 proteins decreased or increased after AMPKα2 knockout (fold change >1.5 or <1/1.5, p < 0.05). The regulation of Kbhb sites in 26 key enzymes of fatty acid degradation and tricarboxylic acid cycle was noted in AMPKα2 knockout mouse cardiomyocytes. These findings, for the first time, identified proteomic features and Kbhb modification of cardiomyocytes after AMPKα2 knockout, suggesting that AMPKα2 regulates energy metabolism by modifying protein Kbhb.
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spelling pubmed-99411992023-02-22 Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice Ding, Wen-jing Li, Xue-hui Tang, Cong-min Yang, Xue-chun Sun, Yan Song, Yi-ping Ling, Ming-ying Yan, Rong Gao, Hai-qing Zhang, Wen-hua Yu, Na Feng, Jun-chao Zhang, Zhen Xing, Yan-qiu Mol Cell Proteomics Research AMP-activated protein kinase alpha 2 (AMPKα2) regulates energy metabolism, protein synthesis, and glucolipid metabolism myocardial cells. Ketone bodies produced by fatty acid β-oxidation, especially β-hydroxybutyrate, are fatty energy–supplying substances for the heart, brain, and other organs during fasting and long-term exercise. They also regulate metabolic signaling for multiple cellular functions. Lysine β-hydroxybutyrylation (Kbhb) is a β-hydroxybutyrate–mediated protein posttranslational modification. Histone Kbhb has been identified in yeast, mouse, and human cells. However, whether AMPK regulates protein Kbhb is yet unclear. Hence, the present study explored the changes in proteomics and Kbhb modification omics in the hearts of AMPKα2 knockout mice using a comprehensive quantitative proteomic analysis. Based on mass spectrometry (LC-MS/MS) analysis, the number of 1181 Kbhb modified sites in 455 proteins were quantified between AMPKα2 knockout mice and wildtype mice; 244 Kbhb sites in 142 proteins decreased or increased after AMPKα2 knockout (fold change >1.5 or <1/1.5, p < 0.05). The regulation of Kbhb sites in 26 key enzymes of fatty acid degradation and tricarboxylic acid cycle was noted in AMPKα2 knockout mouse cardiomyocytes. These findings, for the first time, identified proteomic features and Kbhb modification of cardiomyocytes after AMPKα2 knockout, suggesting that AMPKα2 regulates energy metabolism by modifying protein Kbhb. American Society for Biochemistry and Molecular Biology 2023-01-05 /pmc/articles/PMC9941199/ /pubmed/36621768 http://dx.doi.org/10.1016/j.mcpro.2023.100494 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research
Ding, Wen-jing
Li, Xue-hui
Tang, Cong-min
Yang, Xue-chun
Sun, Yan
Song, Yi-ping
Ling, Ming-ying
Yan, Rong
Gao, Hai-qing
Zhang, Wen-hua
Yu, Na
Feng, Jun-chao
Zhang, Zhen
Xing, Yan-qiu
Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title_full Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title_fullStr Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title_full_unstemmed Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title_short Quantification and Proteomic Characterization of β-Hydroxybutyrylation Modification in the Hearts of AMPKα2 Knockout Mice
title_sort quantification and proteomic characterization of β-hydroxybutyrylation modification in the hearts of ampkα2 knockout mice
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9941199/
https://www.ncbi.nlm.nih.gov/pubmed/36621768
http://dx.doi.org/10.1016/j.mcpro.2023.100494
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