Glyceraldehyde-3-phosphate Dehydrogenase (GAPDH) Aggregation Causes Mitochondrial Dysfunction during Oxidative Stress-induced Cell Death

被引:62
|
作者
Nakajima, Hidemitsu [1 ]
Itakura, Masanori [1 ]
Kubo, Takeya [1 ]
Kaneshige, Akihiro [1 ]
Harada, Naoki [2 ]
Izawa, Takeshi [3 ]
Azuma, Yasu-Taka [1 ]
Kuwamura, Mitsuru [3 ]
Yamaji, Ryouichi [2 ]
Takeuchi, Tadayoshi [1 ]
机构
[1] Osaka Prefecture Univ, Grad Sch Life & Environm Sci, Lab Vet Pharmacol, Osaka 5988531, Japan
[2] Osaka Prefecture Univ, Grad Sch Life & Environm Sci, Div Appl Life Sci, Osaka 5988531, Japan
[3] Osaka Prefecture Univ, Grad Sch Life & Environm Sci, Lab Vet Pathol, Osaka 5988531, Japan
基金
日本学术振兴会;
关键词
CYTOCHROME-C RELEASE; PERMEABILITY TRANSITION PORE; ENDOPLASMIC-RETICULUM STRESS; ACTIVE-SITE CYSTEINE; NITRIC-OXIDE; NEURODEGENERATIVE DISEASES; PROTEIN AGGREGATION; ALZHEIMERS-DISEASE; APOPTOSIS; ACTIVATION;
D O I
10.1074/jbc.M116.759084
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
Glycolytic glyceraldehyde-3-phosphatedehydrogenase(GAPDH) is a multifunctional protein that also mediates cell death under oxidative stress. Wereported previously that the active-site cysteine (Cys-152) of GAPDH plays an essential role in oxidative stress-induced aggregation of GAPDH associated with cell death, and a C152A-GAPDH mutant rescues nitric oxide (NO)induced cell death by interfering with the aggregation of wild type (WT)-GAPDH. However, the detailed mechanism underlying GAPDH aggregate-induced cell death remains elusive. Here we report that NO-induced GAPDH aggregation specifically causes mitochondrial dysfunction. First, we observed a correlation between NO-induced GAPDH aggregation and mitochondrial dysfunction, when GAPDH aggregation occurred at mitochondria in SH-SY5Y cells. In isolated mitochondria, aggregates of WT-GAPDH directly induced mitochondrial swelling and depolarization, whereas mixtures containing aggregates ofC152AGAPDH reduced mitochondrial dysfunction. Additionally, treatment with cyclosporin A improved WT-GAPDH aggregate-induced swelling and depolarization. In doxycycline-inducible SH-SY5Y cells, overexpression of WT-GAPDH augmented NO-induced mitochondrial dysfunction and increased mitochondrial GAPDH aggregation, whereas induced overexpression of C152A-GAPDH significantly suppressed mitochondrial impairment. Further, NO-induced cytochrome c release into the cytosol and nuclear translocation of apoptosis-inducing factor from mitochondria were both augmented in cells overexpressing WT-GAPDH but ameliorated in C152A-GAPDHoverexpressing cells. Interestingly, GAPDH aggregates induced necrotic cell death via a permeability transition pore (PTP) opening. The expression of either WT-or C152A-GAPDH did not affect other cell death pathways associated with protein aggregation, such as proteasome inhibition, gene expression induced by endoplasmic reticulum stress, or autophagy. Collectively, these results suggest that NO-induced GAPDH aggregation specifically induces mitochondrial dysfunction via PTP opening, leading to cell death.
引用
收藏
页码:4727 / 4742
页数:16
相关论文
共 50 条
  • [1] Glyceraldehyde-3-phosphate Dehydrogenase Aggregate Formation Participates in Oxidative Stress-induced Cell Death
    Nakajima, Hidemitsu
    Amano, Wataru
    Kubo, Takeya
    Fukuhara, Ayano
    Ihara, Hideshi
    Azuma, Yasu-Taka
    Tajima, Hisao
    Inui, Takashi
    Sawa, Akira
    Takeuchi, Tadayoshi
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (49) : 34331 - 34341
  • [2] Glyceraldehyde-3-phosphate dehydrogenase aggregation inhibitor peptide: A potential therapeutic strategy against oxidative stress-induced cell death
    Itakura, Masanori
    Nakajima, Hidemitsu
    Semi, Yuko
    Higashida, Shusaku
    Azuma, Yasu-Taka
    Takeuchi, Tadayoshi
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2015, 467 (02) : 373 - 376
  • [3] An aggregate-prone mutant of human glyceraldehyde-3-phosphate dehydrogenase augments oxidative stress-induced cell death in SH-SY5Y cells
    Nakajima, Hidemitsu
    Amano, Wataru
    Fukuhara, Ayano
    Kubo, Takeya
    Misaki, Shouhei
    Azuma, Yasu-Taka
    Inui, Takashi
    Takeuchi, Tadayoshi
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2009, 390 (03) : 1066 - 1071
  • [4] Moonlighting glyceraldehyde-3-phosphate dehydrogenase (GAPDH) modulates protein aggregation
    Chaudhary, Surbhi
    Dhiman, Asmita
    Patidar, Anil
    Malhotra, Himanshu
    Talukdar, Sharmila
    Dilawari, Rahul
    Chaubey, Gaurav Kumar
    Modanwal, Radheshyam
    Raje, Chaaya Iyengar
    Raje, Manoj
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2021, 1867 (10):
  • [5] Glyceraldehyde-3-phosphate Dehydrogenase (GAPDH) Is Pyruvylated during 3-Bromopyruvate Mediated Cancer Cell Death
    Ganapathy-Kanniappan, Shanmugasundaram
    Geschwind, Jean-Francois H.
    Kunjithapatham, Rani
    Buijs, Manon
    Vossen, Josephina A.
    Tchernyshyov, Irina
    Cole, Robert N.
    Syed, Labiq H.
    Rao, Pramod P.
    Ota, Shinichi
    Vali, Mustara
    ANTICANCER RESEARCH, 2009, 29 (12) : 4909 - 4918
  • [6] Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is a specific substrate of yeast metacaspase
    Silva, A.
    Almeida, B.
    Sampaio-Marques, B.
    Reis, M. I. R.
    Ohlmeier, S.
    Rodrigues, F.
    do Vale, A.
    Ludovico, P.
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2011, 1813 (12): : 2044 - 2049
  • [7] Role of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) in DNA repair
    Kosova, A. A.
    Khodyreva, S. N.
    Lavrik, O. I.
    BIOCHEMISTRY-MOSCOW, 2017, 82 (06) : 643 - 654
  • [8] Active site cysteine-null glyceraldehyde-3-phosphate dehydrogenase (GAPDH) rescues nitric oxide-induced cell death
    Kubo, Takeya
    Nakajima, Hidemitsu
    Nakatsuji, Masatoshi
    Itakura, Masanori
    Kaneshige, Akihiro
    Azuma, Yasu-Taka
    Inui, Takashi
    Takeuchi, Tadayoshi
    NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2016, 53 : 13 - 21
  • [9] Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) and Alzheimer's disease
    El Kadmiri, N.
    Slassi, I.
    El Moutawakil, B.
    Nadifi, S.
    Tadevosyan, A.
    Hachem, A.
    Soukri, A.
    PATHOLOGIE BIOLOGIE, 2014, 62 (06): : 333 - 336
  • [10] Piceatannol effectively counteracts glyceraldehyde-3-phosphate dehydrogenase aggregation and nuclear translocation in hippocampal cells
    Gerszona, Joanna
    Wojtala, Martyna
    Michlewska, Sylwia
    Rodacka, Aleksandra
    JOURNAL OF FUNCTIONAL FOODS, 2019, 58 : 180 - 188