Pyruvate dehydrogenase kinase 1 protects against neuronal injury and memory loss in mouse models of diabetes

被引:10
作者
Yao, Yuan [1 ,2 ]
Shi, Jiaming [2 ]
Zhang, Chunlai [1 ]
Gao, Wei [1 ]
Huang, Ning [1 ]
Liu, Yaobei [1 ]
Yan, Weiwen [3 ]
Han, Yingguang [1 ]
Zhou, Wenjuan [2 ]
Kong, Liang [1 ]
机构
[1] Shandong Univ Tradit Chinese Med, Dept Clin Lab, Affiliated Hosp, Jinan, Shandong, Peoples R China
[2] Shandong Univ, Cheeloo Coll Med, Sch Basic Med Sci, Shandong Prov Key Lab Mental Disorders,Key Lab,Min, Jinan, Shandong, Peoples R China
[3] Zibo Hosp Tradit Chinese Med, Dept Clin Lab, Zibo, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
ATP-CITRATE LYASE; METABOLISM; HYPERACETYLATION; MECHANISMS; EXPRESSION; APOPTOSIS; TERM;
D O I
10.1038/s41419-023-06249-2
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Hyperglycemia-induced aberrant glucose metabolism is a causative factor of neurodegeneration and cognitive impairment in diabetes mellitus (DM) patients. The pyruvate dehydrogenase kinase (PDK)-lactic acid axis is regarded as a critical link between metabolic reprogramming and the pathogenic process of neurological disorders. However, its role in diabetic neuropathy remains unclear. Here, we found that PDK1 and phosphorylation of pyruvate dehydrogenase (PDH) were obviously increased in high glucose (HG)-stimulated primary neurons and Neuro-2a cell line. Acetyl-coA, a central metabolic intermediate, might enhance PDK1 expression via histone H3K9 acetylation modification in HG condition. The epigenetic regulation of PDK1 expression provided an available negative feedback pattern in response to HG environment-triggered mitochondrial metabolic overload. However, neuronal PDK1 was decreased in the hippocampus of streptozotocin (STZ)-induced diabetic mice. Our data showed that the expression of PDK1 also depended on the hypoxia-inducible factor-1 (HIF-1) transcriptional activation under the HG condition. However, HIF-1 was significantly reduced in the hippocampus of diabetic mice, which might explain the opposite expression of PDK1 in vivo. Importantly, overexpression of PDK1 reduced HG-induced reactive oxygen species (ROS) generation and neuronal apoptosis. Enhancing PDK1 expression in the hippocampus ameliorated STZ-induced cognitive impairment and neuronal degeneration in mice. Together, our study demonstrated that both acetyl-coA-induced histone acetylation and HIF-1 are necessary to direct PDK1 expression, and enhancing PDK1 may have a protective effect on cognitive recovery in diabetic mice.Schematic representation of the protective effect of PDK1 on hyperglycemia-induced neuronal injury and memory loss. High glucose enhanced the expression of PDK1 in an acetyl-coA-dependent histone acetylation modification to avoid mitochondrial metabolic overload and ROS release. However, the decrease of HIF-1 may impair the upregulation of PDK1 under hyperglycemia condition. Overexpression of PDK1 prevented hyperglycemia-induced hippocampal neuronal injury and memory loss in diabetic mice.
引用
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页数:11
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共 44 条
  • [1] Diabetic neuropathy
    不详
    [J]. Nature Reviews Disease Primers, 5 (1) : 42
  • [2] Brain Energy Metabolism: Focus on Astrocyte-Neuron Metabolic Cooperation
    Belanger, Mireille
    Allaman, Igor
    Magistretti, Pierre J.
    [J]. CELL METABOLISM, 2011, 14 (06) : 724 - 738
  • [3] Diabetes-Induced H3K9 Hyperacetylation Promotes Development of Alzheimer's Disease Through CDK5
    Cai, Hong-Bin
    Fan, Zhen-Zhen
    Tian, Ting
    Li, Zi-Chao
    Zhao, Chong-Chong
    Guo, Wen-Ting
    Ge, Zhao-Ming
    [J]. JOURNAL OF ALZHEIMERS DISEASE, 2020, 77 (01) : 75 - 84
  • [4] ATP-citrate lyase is essential for high glucose-induced histone hyperacetylation and fibrogenic gene upregulation in mesangial cells
    Deb, Dilip K.
    Chen, Yinyin
    Sun, Jian
    Wang, Youli
    Li, Yan Chun
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2017, 313 (02) : F423 - F429
  • [5] Du Jin, 2020, Aging (Albany NY), V13, P877, DOI 10.18632/aging.202194
  • [6] Vulnerability for apoptosis in the hippocampal dentate gyrus of STZ-induced diabetic rats with cognitive impairment
    Guo, Yi-jing
    Wang, Shao-hua
    Yuan, Yang
    Li, Feng-fei
    Ye, Kuan-ping
    Huang, Yan
    Xia, Wen-qing
    Zhou, Yi
    [J]. JOURNAL OF ENDOCRINOLOGICAL INVESTIGATION, 2014, 37 (01) : 87 - 96
  • [7] Aerobic Glycolysis in the Frontal Cortex Correlates with Memory Performance in Wild-Type Mice But Not the APP/PS1 Mouse Model of Cerebral Amyloidosis
    Harris, Richard A.
    Tindale, Lauren
    Lone, Asad
    Singh, Olivia
    Macauley, Shannon L.
    Stanley, Molly
    Holtzman, David M.
    Bartha, Robert
    Cumming, Robert C.
    [J]. JOURNAL OF NEUROSCIENCE, 2016, 36 (06) : 1871 - 1878
  • [8] The bioenergetic and antioxidant status of neurons is controlled by continuous degradation of a key glycolytic enzyme by APC/C-Cdh1
    Herrero-Mendez, Angel
    Almeida, Angeles
    Fernandez, Emilio
    Maestre, Carolina
    Moncada, Salvador
    Bolanos, Juan P.
    [J]. NATURE CELL BIOLOGY, 2009, 11 (06) : 747 - U105
  • [9] The glucose transporter GLUT3 controls T helper 17 cell responses through glycolytic-epigenetic reprogramming
    Hochrein, Sophia M.
    Wu, Hao
    Eckstein, Miriam
    Arrigoni, Laura
    Herman, Josip S.
    Schumacher, Fabian
    Gerecke, Christian
    Rosenfeldt, Mathias
    Gru, Dominic
    Kleuser, Burkhard
    Gasteiger, Georg
    Kastenmu, Wolfgang
    Ghesquiere, Bart
    Van den Bossche, Jan
    Abel, E. Dale
    Vaeth, Martin
    [J]. CELL METABOLISM, 2022, 34 (04) : 516 - +
  • [10] Neuron-Astrocyte Metabolic Coupling Protects against Activity-Induced Fatty Acid Toxicity
    Ioannou, Maria S.
    Jackson, Jesse
    Sheu, Shu-Hsien
    Chang, Chi-Lun
    Weigel, Aubrey V.
    Liu, Hui
    Pasolli, H. Amalia
    Xu, C. Shan
    Pang, Song
    Matthies, Doreen
    Hess, Harald F.
    Lippincott-Schwartz, Jennifer
    Liu, Zhe
    [J]. CELL, 2019, 177 (06) : 1522 - +