S-glutathionylation activates STIM1 and alters mitochondrial homeostasis

被引:189
|
作者
Hawkins, Brian J. [1 ]
Irrinki, Krishna M. [1 ]
Mallilankaraman, Karthik [1 ]
Lien, Yu-Chin [2 ]
Wang, Youjun [1 ]
Bhanumathy, Cunnigaiper D. [3 ]
Subbiah, Ramasamy [1 ]
Ritchie, Michael F. [1 ]
Soboloff, Jonathan [1 ]
Baba, Yoshihiro [4 ]
Kurosaki, Tomohiro [4 ]
Joseph, Suresh K. [3 ]
Gill, Donald L. [1 ]
Madesh, Muniswamy [1 ]
机构
[1] Temple Univ, Dept Biochem, Philadelphia, PA 19140 USA
[2] Univ Penn, Inst Environm Med, Philadelphia, PA 19104 USA
[3] Thomas Jefferson Univ, Dept Pathol Anat & Cell Biol, Philadelphia, PA 19107 USA
[4] Osaka Univ, Lab Lymphocyte Differentiat, World Premiere Int Immunol Frontier Res Ctr, Suita, Osaka 5650871, Japan
来源
JOURNAL OF CELL BIOLOGY | 2010年 / 190卷 / 03期
基金
美国国家卫生研究院;
关键词
OPERATED CA2+ ENTRY; B-CELL ACTIVATION; NF-KAPPA-B; ENDOPLASMIC-RETICULUM; CRAC CHANNELS; PLASMA-MEMBRANE; PERMEABILITY TRANSITION; REDOX REGULATION; CALCIUM; STORE;
D O I
10.1083/jcb.201004152
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Oxidant stress influences many cellular processes, including cell growth, differentiation, and cell death. A well-recognized link between these processes and oxidant stress is via alterations in Ca2+ signaling. However, precisely how oxidants influence Ca2+ signaling remains unclear. Oxidant stress led to a phenotypic shift in Ca2+ mobilization from an oscillatory to a sustained elevated pattern via calcium release-activated calcium (CRAC)-mediated capacitive Ca2+ entry, and stromal interaction molecule 1 (STIM1)- and Orai1-deficient cells are resistant to oxidant stress. Functionally, oxidant-induced Ca2+ entry alters mitochondrial Ca2+ handling and bioenergetics and triggers cell death. STIM1 is S-glutathionylated at cysteine 56 in response to oxidant stress and evokes constitutive Ca2+ entry independent of intracellular Ca2+ stores. These experiments reveal that cysteine 56 is a sensor for oxidant-dependent activation of STIM1 and demonstrate a molecular link between oxidant stress and Ca2+ signaling via the CRAC channel.
引用
收藏
页码:391 / 405
页数:15
相关论文
共 50 条
  • [41] Regulation of neovascularization by S-glutathionylation via the Wnt5a/sFlt-1 pathway
    Murdoch, Colin E.
    Bachschmid, Markus M.
    Matsui, Reiko
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2014, 42 : 1665 - 1670
  • [42] Redox amplification of apoptosis by caspase-dependent cleavage of glutaredoxin 1 and S-glutathionylation of Fas
    Anathy, Vikas
    Aesif, Scott W.
    Guala, Amy S.
    Havermans, Marije
    Reynaert, Niki L.
    Ho, Ye-Shih
    Budd, Ralph C.
    Janssen-Heininger, Yvonne M. W.
    JOURNAL OF CELL BIOLOGY, 2009, 184 (02): : 241 - 252
  • [43] Gstp1-Catalyzed S-Glutathionylation In Non-Small Cell Lung Cancer
    Van der Velden, J.
    Kinsey, C. M.
    McMillan, D. H.
    Lahue, K. G.
    Schneider, R. W.
    Abdalla, S.
    Nolin, J. D.
    Janssen-Heininger, Y.
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2016, 193
  • [44] Resveratrol activates autophagic cell death in prostate cancer cells via downregulation of STIM1 and the mTOR pathway
    Selvaraj, Senthil
    Sun, Yuyang
    Sukumaran, Pramod
    Singh, Brij B.
    MOLECULAR CARCINOGENESIS, 2016, 55 (05) : 818 - 831
  • [45] Ca2+-Dependent S-glutathionylation Mediates Intermittent Hypoxia-Induced Mitochondrial Complex I Inhibition
    Khan, Shakil Ahmad
    Yuan, Guoxiang
    Kumar, Ganesh K.
    Prabhakar, Nanduri R.
    FASEB JOURNAL, 2011, 25
  • [46] Oxidized GAPDH transfers S-glutathionylation to a nuclear protein Sirtuin-1 leading to apoptosis
    Rizvi, Syed Husain Mustafa
    Shao, Di
    Tsukahara, Yuko
    Pimentel, David Richard
    Weisbrod, Robert M.
    Hamburg, Naomi M.
    McComb, Mark E.
    Matsui, Reiko
    Bachschmid, Markus Michael
    FREE RADICAL BIOLOGY AND MEDICINE, 2021, 174 : 73 - 83
  • [47] S-glutathionylation of Rac1 is a Novel Mechanism of Vascular Barrier Dysfunction in Diabetes Mellitus
    Weisbrod, Robert M.
    Shao, Di
    Kot, Kevin L.
    Edenbaum, Hannah
    Matsui, Reiko
    Bachschmid, Markus Michael
    Hamburg, Naomi M.
    Cohen, Richard A.
    Han, Jingyan
    CIRCULATION, 2016, 134
  • [48] S-glutathionylation of Glyceraldehyde 3 Phosphate Dehydrogenase Regulates Sirtuin-1 Function Through Trans-glutathionylation: Implication of Glutaredoxin-1
    Rizvi, Syed Husain Mustafa
    Shao, Di
    Pimentel, David
    Matsui, Reiko
    Bachschmid, Markus
    FREE RADICAL BIOLOGY AND MEDICINE, 2019, 145 : S37 - S37
  • [49] Praeruptorin B inhibits osteoclastogenesis by targeting GSTP1 and impacting on the S-glutathionylation of IKKβ
    Xu, Kebin
    Chen, Ziyi
    Hou, Jialong
    Dong, Chenlin
    Shi, Chengge
    Gao, Linglin
    Huang, Zhixian
    Shen, Ge
    Wang, Te
    Zhou, Yan
    BIOMEDICINE & PHARMACOTHERAPY, 2022, 154
  • [50] S-Glutathionylation destabilizes stromal interaction molecule 1 and attenuates Ca2+ binding
    Sirko, Christian M.
    Stathopulos, Peter B.
    CANADIAN JOURNAL OF PHYSIOLOGY AND PHARMACOLOGY, 2021, 99 (11) : S12 - S12