Methylglyoxal-induced AMPK activation leads to autophagic degradation of thioredoxin 1 and glyoxalase 2 in HT22 nerve cells

被引:32
|
作者
Dafre, Alcir Luiz [1 ]
Schmitz, Ariana Ern [1 ]
Maher, Pamela [2 ]
机构
[1] Univ Fed Santa Catarina, Biochem Dept, BR-88040900 Florianopolis, SC, Brazil
[2] Salk Inst Biol Studies, Cellular Neurobiol Lab, La Jolla, CA 92037 USA
关键词
Autophagy; AMPK; mTOR; Methylglyoxal; Thioredoxin; Glyoxalase; HT22; cells; GLYCATION END-PRODUCTS; PROTEASOME; INHIBITION; MECHANISMS; DISEASE; PHOSPHORYLATION; GLUTAREDOXIN; FIBROBLASTS; INDUCTION; PATHWAY;
D O I
10.1016/j.freeradbiomed.2017.03.028
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
Methylglyoxal (MGO) is a major glycating agent that reacts with basic residues of proteins and promotes the formation of advanced glycation end products which are believed to play key roles in a number of pathologies, such as diabetes, Alzheimer's disease, and inflammation. We previously showed that MGO treatment targets the thioredoxin and the glyoxalase systems, leading to a decrease in Trx1 and Glo2 proteins in immortalized mouse hippocampal HT22 nerve cells. Here, we propose that autophagy is the underlying mechanism leading to Glo2 and Trx1 loss induced by MGO. The autophagic markers p62, and the lipidated and active form of LC3, were increased by MGO (0.5 mM). Autophagy inhibition with bafilomycin or chloroquine prevented the decrease in Trx1 and Glo2 at 6 and 18 h after MGO treatment. Proteasome inhibition by MG132 exacerbated the effect of MGO on Trx1 and Glo2 degradation (18 h), further suggesting a role for autophagy. ATG5 small interfering RNA protected Trx1 and Glo2 from MGO-induced degradation, confirming Trx1 and Glo2 loss is mediated by autophagy. In the search for the signals that control autophagy, we found that AMPK activation, a known autophagy inducer, was markedly increased by MGO treatment. AMPK activation was confirmed by increased acetyl coenzyme A carboxylase phosphorylation, a direct AMPK substrate and by decreased mTOR phosphorylation, an indirect marker of AMPK activation. To confirm that MGO-mediated Trx1 and Glo2 degradation was AMPK-dependent, AMPK-deficient mouse embryonic fibroblasts (MEFs) were treated with MGO. Wildtype MEFs presented the expected decrease in Trx1 and Glo2, while MGO was ineffective in decreasing these proteins in AMPK-deficient cells. Overall, the data indicate that MGO activates autophagy in an AMPK-dependent manner, and that autophagy was responsible for Trx1 and Glo2 degradation, confirming that Trx1 and Glo2 are molecular targets of MGO.
引用
收藏
页码:270 / 279
页数:10
相关论文
共 50 条
  • [41] Phycocyanin prevents methylglyoxal-induced mitochondrial-dependent apoptosis in INS-1 cells by Nrf2
    Gao, Yingnv
    Liu, Chen
    Wan, Guoqing
    Wang, Xinshuo
    Cheng, Xiaodong
    Ou, Yu
    FOOD & FUNCTION, 2016, 7 (02) : 1129 - 1137
  • [42] Activation of NRF2/ARE by isosilybin alleviates Aβ25-35-induced oxidative stress injury in HT-22 cells
    Zhou, Jing
    Chao, Gao
    Li, Yulei
    Wu, Min
    Zhong, ShuZhi
    Feng, ZunYong
    NEUROSCIENCE LETTERS, 2016, 632 : 92 - 97
  • [43] Activation of peroxisome proliferator-activated receptor-δ attenuates glutamate-induced neurotoxicity in HT22 mouse hippocampal cells
    Jin, Hana
    Ham, Sun Ah
    Kim, Min Young
    Woo, Im Sun
    Kang, Eun Sil
    Hwang, Jung Seok
    Lee, Ko-Woon
    Kim, Hye Jung
    Roh, Gu Seob
    Lim, Dae-Seog
    Kang, Dawon
    Seo, Han Geuk
    JOURNAL OF NEUROSCIENCE RESEARCH, 2012, 90 (08) : 1646 - 1653
  • [44] Andrographolide Activates Keap1/Nrf2/ARE/HO-1 Pathway in HT22 Cells and Suppresses Microglial Activation by Aβ42 through Nrf2-Related Inflammatory Response
    Seo, Ji Yeon
    Pyo, Euisun
    An, Jin-Pyo
    Kim, Jinwoong
    Sung, Sang Hyun
    Oh, Won Keun
    MEDIATORS OF INFLAMMATION, 2017, 2017
  • [45] AMP-activated protein kinase (AMPK)/Ulk1-dependent autophagic pathway contributes to C6 ceramide-induced cytotoxic effects in cultured colorectal cancer HT-29 cells
    Huo, Hai-zhong
    Wang, Bing
    Qin, Jian
    Guo, Shan-yu
    Liu, Wen-yong
    Gu, Yan
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 2013, 378 (1-2) : 171 - 181
  • [46] Farrerol attenuates glutamate-induced apoptosis in HT22 cells via the Nrf2/heme oxygenase-1 pathway
    Gao, Liying
    Wang, Tong
    Zhuoma, Dongzhi
    Yuan, Ruiying
    Huang, Shan
    Li, Bin
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2023, 87 (09) : 1009 - 1016
  • [47] Protection by cilostazol against amyloid-β1-40-induced suppression of viability and neurite elongation through activation of CK2α in HT22 mouse hippocampal cells
    Lee, Hye Rin
    Park, So Youn
    Kim, Hye Young
    Shin, Hwa Kyoung
    Lee, Won Suk
    Rhim, Byung Yong
    Hong, Ki Whan
    Kim, Chi Dae
    JOURNAL OF NEUROSCIENCE RESEARCH, 2012, 90 (08) : 1566 - 1576
  • [48] Monascin and AITC Attenuate Methylglyoxal-Induced PPARγ Phosphorylation and Degradation through Inhibition of the Oxidative Stress/PKC Pathway Depending on Nrf2 Activation
    Hsu, Wei-Hsuan
    Lee, Bao-Hong
    Li, Chih-Heng
    Hsu, Ya-Wen
    Pan, Tzu-Ming
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2013, 61 (25) : 5996 - 6006
  • [49] MEF2D Mediates the Neuroprotective Effect of Methylene Blue Against Glutamate-Induced Oxidative Damage in HT22 Hippocampal Cells
    Chen, Zi-wei
    Liu, Anmin
    Liu, Qingyu
    Chen, Jingkao
    Li, Wen-ming
    Chao, Xiao-juan
    Yang, Qian
    Liu, Pei-qing
    Mao, Zi-xu
    Pi, Rong-biao
    MOLECULAR NEUROBIOLOGY, 2017, 54 (03) : 2209 - 2222
  • [50] α-Synuclein induced cell death in mouse hippocampal (HT22) cells is mediated by nitric oxide-dependent activation of caspase-3
    Adamczyk, Agata
    Kazmierczak, Anna
    Czapski, Grzegorz Arkadiusz
    Strosznajder, Joanna Benigna
    FEBS LETTERS, 2010, 584 (15) : 3504 - 3508