Sirtuin 3-mediated deacetylation of acyl-CoAsynthetase family member 3 by protocatechuic acid attenuates non-alcoholic fatty liver disease

被引:48
作者
Sun, Ruimin [1 ]
Kang, Xiaohui [2 ]
Zhao, Yan [1 ]
Wang, Zhanyu [3 ]
Wang, Ruiwen [1 ]
Fu, Rong [1 ]
Li, Yang [3 ]
Hu, Yan [1 ]
Wang, Zhecheng [1 ]
Shan, Wen [1 ]
Zhou, Junjun [1 ]
Tian, Xiaofeng [3 ]
Yao, Jihong [1 ]
机构
[1] Dalian Med Univ, Dept Pharmacol, Dalian 116044, Peoples R China
[2] Dalian Med Univ, Dept Pharm, Dalian, Peoples R China
[3] Dalian Med Univ, Affiliated Hosp 2, Dept Gen Surg, Dalian 116023, Peoples R China
基金
中国国家自然科学基金;
关键词
ACSF3; fatty acid metabolism; NAFLD; protocatechuic acid; SIRT3; MALONYL-COA SYNTHETASE; PROTEIN; ACETYLATION; ACTIVATION; ACSF3; STEATOHEPATITIS; HOMEOSTASIS; DEFICIENCY; METABOLISM; PROTEOMICS;
D O I
10.1111/bph.15159
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Background and Purpose Hepatic fatty acid metabolism disorder, a key pathogenic mechanism underlying non-alcoholic fatty liver disease (NAFLD), is associated with the hyperacetylation of mitochondrial enzymes. Acyl-CoA synthetase family member 3 (ACSF3), which is involved in the regulation of fatty acid metabolism, was predicted to contain lysine acetylation sites related to the mitochondrial deacetylase sirtuin 3 (SIRT3). The purpose of this study was to explore the underlying mechanism by which SIRT3 deacetylates ACSF3 in NAFLD and the protective effect of the natural phenolic compound protocatechuic acid (PCA) against fatty acid metabolism disorder via the SIRT3/ACSF3 pathway. Experimental Approach The role of protocatechuic acid and its molecular mechanism in NAFLD were detected in rats and SIRT3-knockout mice fed a high-fat diet (HFD) and in AML-12 cells treated with palmitic acid (PA). Key Results Pharmacological treatment with protocatechuic acid significantly attenuated high-fat diet-induced fatty acid metabolism disorder in NAFLD. Molecular docking assays showed that protocatechuic acid specifically bound SIRT3 as a substrate and increased SIRT3 protein expression. However, the protective role of protocatechuic acid was abolished by SIRT3 knockdown, which increased ACSF3 expression and exacerbated fatty acid metabolism disorder. Mechanistically, SIRT3 was shown to specifically regulate the acetylation and degradation of ACSF3, which govern the capacity of ACSF3 to mediate fatty acid metabolism disorder during NAFLD. Conclusion and Implications SIRT3-mediated ACSF3 deacetylation is a novel molecular mechanism in NAFLD therapy and protocatechuic acid confers protection against high-fat diet- and palmitic acid-induced hepatic fatty acid metabolism disorder through the SIRT3/ACSF3 pathway.
引用
收藏
页码:4166 / 4180
页数:15
相关论文
共 56 条
[21]   TRANSCRIPTIONAL ACTIVATION BY AMPHIPATHIC CARBOXYLIC PEROXISOMAL PROLIFERATORS IS INDUCED BY THE FREE ACID RATHER THAN THE ACYL-COA DERIVATIVE [J].
HERTZ, R ;
BERMAN, I ;
BARTANA, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 221 (01) :611-615
[22]   SIRT3 Deficiency and Mitochondrial Protein Hyperacetylation Accelerate the Development of the Metabolic Syndrome [J].
Hirschey, Matthew D. ;
Shimazu, Tadahiro ;
Jing, Enxuan ;
Grueter, Carrie A. ;
Collins, Amy M. ;
Aouizerat, Bradley ;
Stancakova, Alena ;
Goetzman, Eric ;
Lam, Maggie M. ;
Schwer, Bjoern ;
Stevens, Robert D. ;
Muehlbauer, Michael J. ;
Kakar, Sanjay ;
Bass, Nathan M. ;
Kuusisto, Johanna ;
Laakso, Markku ;
Alt, Frederick W. ;
Newgard, Christopher B. ;
Farese, Robert V., Jr. ;
Kahn, C. Ronald ;
Verdin, Eric .
MOLECULAR CELL, 2011, 44 (02) :177-190
[23]   SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation [J].
Hirschey, Matthew D. ;
Shimazu, Tadahiro ;
Goetzman, Eric ;
Jing, Enxuan ;
Schwer, Bjoern ;
Lombard, David B. ;
Grueter, Carrie A. ;
Harris, Charles ;
Biddinger, Sudha ;
Ilkayeva, Olga R. ;
Stevens, Robert D. ;
Li, Yu ;
Saha, Asish K. ;
Ruderman, Neil B. ;
Bain, James R. ;
Newgard, Christopher B. ;
Farese, Robert V., Jr. ;
Alt, FrederickW. ;
Kahn, C. Ronald ;
Verdin, Eric .
NATURE, 2010, 464 (7285) :121-U137
[24]   Crystal Structures of Human SIRT3 Displaying Substrate-induced Conformational Changes [J].
Jin, Lei ;
Wei, Wentao ;
Jiang, Yaobin ;
Peng, Hao ;
Cai, Jianhua ;
Mao, Chen ;
Dai, Han ;
Choy, Wendy ;
Bemis, Jean E. ;
Jirousek, Michael R. ;
Milne, Jill C. ;
Westphal, Christoph H. ;
Perni, Robert B. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (36) :24394-24405
[25]  
Jorgensen C, 2002, ANN NY ACAD SCI, V967, P431
[26]   Fatty liver is associated with reduced SIRT3 activity and mitochondrial protein hyperacetylation [J].
Kendrick, Agnieszka A. ;
Choudhury, Mahua ;
Rahman, Shaikh M. ;
McCurdy, Carrie E. ;
Friederich, Marisa ;
Van Hove, Johan L. K. ;
Watson, Peter A. ;
Birdsey, Nicholas ;
Bao, Jianjun ;
Gius, David ;
Sack, Michael N. ;
Jing, Enxuan ;
Kahn, C. Ronald ;
Friedman, Jacob E. ;
Jonscher, Karen R. .
BIOCHEMICAL JOURNAL, 2011, 433 :505-514
[27]  
Kilkenny C, 2010, J GENE MED, V12, P561, DOI [10.1002/jgm.1473, 10.1111/j.1476-5381.2010.00872.x, 10.1113/jphysiol.2010.192278]
[28]   Dual function of Lactobacillus kefiri DH5 in preventing high-fat-diet-induced obesity: direct reduction of cholesterol and upregulation of PPAR-α in adipose tissue [J].
Kim, Dong-Hyeon ;
Jeong, Dana ;
Kang, Il-Byeong ;
Kim, Hyunsook ;
Song, Kwang-Young ;
Seo, Kun-Ho .
MOLECULAR NUTRITION & FOOD RESEARCH, 2017, 61 (11)
[29]   Substrate and functional diversity of lysine acetylation revealed by a proteomics survey [J].
Kim, Sung Chan ;
Sprung, Robert ;
Chen, Yue ;
Xu, Yingda ;
Ball, Haydn ;
Pei, Jimin ;
Cheng, Tzuling ;
Kho, Yoonjung ;
Xiao, Hao ;
Xiao, Lin ;
Grishin, Nick V. ;
White, Michael ;
Yang, Xiang-Jiao ;
Zhao, Yingming .
MOLECULAR CELL, 2006, 23 (04) :607-618
[30]   DEVELOPMENT OF THE COLLE-SALVETTI CORRELATION-ENERGY FORMULA INTO A FUNCTIONAL OF THE ELECTRON-DENSITY [J].
LEE, CT ;
YANG, WT ;
PARR, RG .
PHYSICAL REVIEW B, 1988, 37 (02) :785-789