Ginsenoside Rb2 inhibits p300-mediated SF3A2 acetylation at lysine 10 to promote Fscn1 alternative splicing against myocardial ischemic/ reperfusion injury

被引:8
作者
Huang, Qingxia [1 ,2 ]
Yao, Yao [2 ]
Wang, Yisa [2 ]
Li, Jing [2 ]
Chen, Jinjin [2 ]
Wu, Mingxia [2 ]
Guo, Chen [2 ]
Lou, Jia [3 ]
Yang, Wenzhi [3 ]
Zhao, Linhua [4 ]
Tong, Xiaolin [4 ]
Zhao, Daqing [2 ,4 ]
Li, Xiangyan [2 ,4 ]
机构
[1] Changchun Univ Chinese Med, Coll Tradit Chinese Med, Res Ctr Tradit Chinese Med, Changchun 130021, Jilin, Peoples R China
[2] Changchun Univ Chinese Med, Northeast Asia Res Inst Tradit Chinese Med, Key Lab Act Subst & Biol Mech Ginseng Efficacy, Jilin Prov Key Lab Biomacromol Chinese Med,Minist, Changchun 130117, Jilin, Peoples R China
[3] Tianjin Univ Tradit Chinese Med, State Key Lab Component Based Chinese Med, Tianjin Key Lab TCM Chem & Anal, Tianjin 301617, Peoples R China
[4] Changchun Univ Chinese Med, Northeast Asia Res Inst Tradit Chinese Med, Changchun 130117, Jilin, Peoples R China
关键词
Ginsenoside; Acetylation; P300; Mitochondrial function; Myocardial ischemic/reperfusion injury; HISTONE MODIFICATIONS; MITOCHONDRIAL; PHOSPHORYLATION; METABOLISM; COMPLEX;
D O I
10.1016/j.jare.2023.12.012
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Introduction: Ginsenosides (GS) derived from Panax ginseng can regulate protein acetylation to promote mitochondrial function for protecting cardiomyocytes. However, the potential mechanisms of GS for regulating acetylation modification are not yet clear. Objectives: This study aimed to explore the potential mechanisms of GS in regulating protein acetylation and identify ginsenoside monomer for fighting myocardial ischemia-related diseases. Methods: The 4D-lable free acetylomic analysis was employed to gain the acetylated proteins regulated by GS pretreatment. The co-immunoprecipitation assay, immunofluorescent staining, and mitochondrial respiration measurement were performed to detect the effect of GS or ginsenoside monomer on acetylated protein level and mitochondrial function. RNA sequencing, site-specific mutation, and shRNA interference were used to explore the downstream targets of acetylation modificationby GS. Cellular thermal shift assay and surface plasmon resonance were used for identifying the binding of ginsenoside with target protein. Results: In the cardiomyocytes of normal, oxygen glucose deprivation and/or reperfusion conditions, the acetylomic analysis identified that the acetylated levels of spliceosome proteins were inhibited by GS pretreatment and SF3A2 acetylation at lysine 10 (K10) was significantly decreased as a potential target of GS. Ginsenoside Rb2 was identified as one of the active ginsenoside monomers for reducing the acetylation of SF3A2 (K10), K 10), which enhanced mitochondrial respiration against myocardial ischemic injury in in vivo and in vitro experiments. RNA-seq analysis showed that ginsenoside Rb2 promoted alternative splicing of mitochondrial function-related genes and the level of fascin actin-bundling protein 1 (Fscn1) was obviously upregulated, which was dependent on SF3A2 acetylation. Critically, thermodynamic, kinetic and enzymatic experiments demonstrated that ginsenoside Rb2 directly interacted with p300 for inhibiting its activity. Conclusion: These findings provide a novel mechanism underlying cardiomyocyte protection of ginsenoside Rb2 by inhibiting p300-mediated SF3A2 acteylation for promoting Fscn1 expression, which might be a promising approach for the prevention and treatment of myocardial ischemic diseases. (c) 2024 The Authors. Published by Elsevier B.V. on behalf of Cairo University. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:365 / 379
页数:15
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