Melatonin Regulates Aging and Neurodegeneration through Energy Metabolism, Epigenetics, Autophagy and Circadian Rhythm Pathways

被引:118
|
作者
Jenwitheesuk, Anorut [1 ]
Nopparat, Chutikorn [1 ]
Mukda, Sujira [1 ]
Wongchitrat, Prapimpun [2 ]
Govitrapong, Piyarat [1 ,3 ,4 ]
机构
[1] Mahidol Univ, Inst Mol Biosci, Res Ctr Neurosci, Salaya 73170, Nakornpathom, Thailand
[2] Mahidol Univ, Fac Med Technol, Ctr Innovat Dev & Technol Transfer, Salaya 73170, Nakornpathom, Thailand
[3] Mahidol Univ, Fac Sci, Ctr Neurosci, Bangkok 10400, Thailand
[4] Mahidol Univ, Fac Sci, Dept Pharmacol, Bangkok 10400, Thailand
关键词
melatonin; brain aging; energy metabolism; epigenetics; autophagy; circadian rhythm; neurodegeneration; sirtuins; NF-KAPPA-B; GROWTH-FACTOR-I; CLOCK GENE-EXPRESSION; AGE-INDUCED ALTERATIONS; IKK-BETA SUPPRESSION; LIFE-SPAN; ALZHEIMERS-DISEASE; SUPRACHIASMATIC NUCLEUS; TRANSCRIPTION FACTOR; CALORIE RESTRICTION;
D O I
10.3390/ijms150916848
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Brain aging is linked to certain types of neurodegenerative diseases and identifying new therapeutic targets has become critical. Melatonin, a pineal hormone, associates with molecules and signaling pathways that sense and influence energy metabolism, autophagy, and circadian rhythms, including insulin-like growth factor 1 (IGF-1), Forkhead box O (FoxOs), sirtuins and mammalian target of rapamycin (mTOR) signaling pathways. This review summarizes the current understanding of how melatonin, together with molecular, cellular and systemic energy metabolisms, regulates epigenetic processes in the neurons. This information will lead to a greater understanding of molecular epigenetic aging of the brain and anti-aging mechanisms to increase lifespan under healthy conditions.
引用
收藏
页码:16848 / 16884
页数:37
相关论文
共 50 条
  • [31] The REGγ Proteasome Regulates Hepatic Lipid Metabolism through Inhibition of Autophagy
    Dong, Shuxian
    Jia, Caifeng
    Zhang, Shengping
    Fan, Guangjian
    Li, Yubing
    Shan, Peipei
    Sun, Lianhui
    Xiao, Wenzhen
    Li, Lei
    Zheng, Yi
    Liu, Jinqin
    Wei, Haibing
    Hu, Chen
    Zhang, Wen
    Chin, Y. Eugene
    Zhai, Qiwei
    Li, Qiao
    Liu, Jian
    Jia, Fuli
    Mo, Qianxing
    Edwards, Dean P.
    Huang, Shixia
    Chan, Lawrence
    O'Malley, Bert W.
    Li, Xiaotao
    Wang, Chuangui
    CELL METABOLISM, 2013, 18 (03) : 380 - 391
  • [32] Sidt2 regulates hepatocellular lipid metabolism through autophagy
    Chen, Xueru
    Gu, Xuefan
    Zhang, Huiwen
    JOURNAL OF LIPID RESEARCH, 2018, 59 (03) : 404 - 415
  • [33] Hepatic ATGL manipulation regulates lipid metabolism through altered autophagy
    Sathyanarayan, Aishwarya
    Mashek, Mara T.
    Mashek, Douglas G.
    FASEB JOURNAL, 2016, 30
  • [34] AMPK Activator O304 Protects Against Kidney Aging Through Promoting Energy Metabolism and Autophagy
    Zhu, Mingsheng
    Shen, Weiwei
    Li, Jiemei
    Jia, Nan
    Xiong, Yabing
    Miao, Jinhua
    Xie, Chao
    Chen, Qiyan
    Shen, Kunyu
    Meng, Ping
    Li, Xiaolong
    Wu, Qinyu
    Zhou, Shan
    Wang, Maosheng
    Kong, Yaozhong
    Zhou, Lili
    FRONTIERS IN PHARMACOLOGY, 2022, 13
  • [35] Deubiquitinase USP7 regulates Drosophila aging through ubiquitination and autophagy
    Cui, Lang
    Song, Wenhao
    Zeng, Yao
    Wu, Qi
    Fan, Ziqiang
    Huang, Tiantian
    Zeng, Bo
    Zhang, Mingwang
    Ni, Qingyong
    Li, Yan
    Wang, Tao
    Li, Diyan
    Mao, Xueping
    Lian, Ting
    Yang, Deying
    Yang, Mingyao
    Fan, Xiaolan
    AGING-US, 2020, 12 (22): : 23082 - 23095
  • [36] Mammalian glutamine metabolism controls circadian rhythm through regulation of reactive oxygen species
    Altman, Brian J.
    Stine, Zachary E.
    Hsieh, Annie L.
    Deberardinis, Ralph J.
    Dang, Chi V.
    CANCER RESEARCH, 2015, 75
  • [37] Circadian rhythm disorders and dynamic changes of energy metabolism in rat heart muscle cells
    Dachanidze, N. T.
    Kuchukashvili, Z. T.
    Menabde, K. O.
    Koshoridze, N. I.
    BIOLOGICAL RHYTHM RESEARCH, 2015, 46 (01) : 39 - 51
  • [38] Aging and the circadian rhythm of melatonin: A cross-sectional study of Chinese subjects 30-110 yr of age
    Zhao, ZY
    Xie, Y
    Fu, YR
    Bogdan, A
    Touitou, Y
    CHRONOBIOLOGY INTERNATIONAL, 2002, 19 (06) : 1171 - 1182
  • [39] Autophagy regulates lipid metabolism through selective turnover of NCoR1
    Tetsuya Saito
    Akiko Kuma
    Yuki Sugiura
    Yoshinobu Ichimura
    Miki Obata
    Hiroshi Kitamura
    Shujiro Okuda
    Hyeon-Cheol Lee
    Kazutaka Ikeda
    Yumi Kanegae
    Izumu Saito
    Johan Auwerx
    Hozumi Motohashi
    Makoto Suematsu
    Tomoyoshi Soga
    Takehiko Yokomizo
    Satoshi Waguri
    Noboru Mizushima
    Masaaki Komatsu
    Nature Communications, 10
  • [40] Autophagy regulates lipid metabolism through selective turnover of NCoR1
    Saito, Tetsuya
    Kuma, Akiko
    Sugiura, Yuki
    Ichimura, Yoshinobu
    Obata, Miki
    Kitamura, Hiroshi
    Okuda, Shujiro
    Lee, Hyeon-Cheol
    Ikeda, Kazutaka
    Kanegae, Yumi
    Saito, Izumu
    Auwerx, Johan
    Motohashi, Hozumi
    Suematsu, Makoto
    Soga, Tomoyoshi
    Yokomizo, Takehiko
    Waguri, Satoshi
    Mizushima, Noboru
    Komatsu, Masaaki
    NATURE COMMUNICATIONS, 2019, 10 (1)