Role of glutathione depletion and reactive oxygen species generation in apoptotic signaling in a human B lymphoma cell line

被引:428
作者
Armstrong, JS
Steinauer, KK
Hornung, B
Irish, JM
Lecane, P
Birrell, GW
Peehl, DM
Knox, SJ
机构
[1] Stanford Univ, Med Ctr, Dept Radiat Oncol, Stanford, CA 94305 USA
[2] Stanford Univ, Dept Urol, Stanford, CA 94305 USA
[3] Stanford Univ, Dept Mol Pharmacol, Stanford, CA 94305 USA
关键词
apoptosis; reactive oxygen species; GSH; mitochondria; redox;
D O I
10.1038/sj.cdd.4400959
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
The primary objective of this study was to determine the sequence of biochemical signaling events that occur after modulation of the cellular redox state in the B cell lymphoma line, PW, with emphasis on the role of mitochondrial signaling. L-Buthionine sulphoximine (BSO), which inhibits gamma glutamyl cysteine synthetase (gammaGCS), was used to modulate the cellular redox status. The sequence and role of mitochondrial events and downstream apoptotic signals and mediators was studied. After BSO treatment, there was an early decline in cellular glutathione (GSH), followed by an increase in reactive oxygen species (ROS) production, which induced a variety of apoptotic signals (detectable at different time points) in the absence of any external apoptotic stimuli. The sequence of biochemical events accompanying apoptosis included a 95% decrease in total GSH and a partial (25%) preservation of mitochondrial GSH, without a significant increase in ROS production at 24 h. Early activation and nuclear translocation of the nuclear factor kappa B subunit RelA was observed at approximately 3 h after BSO treatment. Cytochrome c release into the cytosol was also seen after 24 h of BSO treatment. p53 protein expression was unchanged after redox modulation for up to 72 h, and p21(waf1) independent loss of cellular proliferation was observed. Surprisingly, a truncated form of p53 was expressed in a time-dependent manner, beginning at 24 h after BSO incubation. Irreversible commitment to apoptosis occurred between 48 and 72 h after BSO treatment when mitochondrial GSH was depleted, and there was an increase in ROS production. Procaspase 3 protein levels showed a time-dependent reduction following incubation with BSO, notably after 48 h, that corresponded with increasing ROS levels. At 96 h, caspase 3 cleavage products were detectable. The pan-caspase inhibitor zVADfmk, partially blocked the induction of apoptosis at 48 h, and was ineffective after 72 h. PW cells could be rescued from apoptosis by removing them from BSO after up to 48, but not 72 h incubation with BSO. Mitochondrial transmembrane potential (DeltaPsi(m)) remained intact in most of the cells during the 72 h observation period, indicating that DeltaPsi(m) dissipation is not an early signal for the induction of redox dependent apoptosis In PW cells. These data suggest that a decrease in GSH alone can act as a potent early activator of apoptotic signaling. Increased ROS production following mitochondrial GSH depletion, represents a crucial event, which irreversibly commits PW cells to apoptosis.
引用
收藏
页码:252 / 263
页数:12
相关论文
共 63 条
  • [1] The effects of arsenic trioxide (As2O3) on human megakaryocytic leukemia cell lines -: With a comparison of its effects on other cell lineages
    Alemany, M
    Levin, J
    [J]. LEUKEMIA & LYMPHOMA, 2000, 38 (1-2) : 153 - +
  • [2] Bcl-2 inhibits apoptosis induced by mitochondrial uncoupling but does not prevent mitochondrial transmembrane depolarization
    Armstrong, JS
    Steinauer, KK
    French, J
    Killoran, PL
    Walleczek, J
    Kochanski, J
    Knox, SJ
    [J]. EXPERIMENTAL CELL RESEARCH, 2001, 262 (02) : 170 - 179
  • [3] Gene expression and the thiol redox state
    Arrigo, AP
    [J]. FREE RADICAL BIOLOGY AND MEDICINE, 1999, 27 (9-10) : 936 - 944
  • [4] NF-kappa B: Ten years after
    Baeuerle, PA
    Baltimore, D
    [J]. CELL, 1996, 87 (01) : 13 - 20
  • [5] Redox control of caspase-3 activity by thioredoxin and other reduced proteins
    Baker, A
    Dos Santos, B
    Powis, G
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 268 (01) : 78 - 81
  • [6] BASS DA, 1983, J IMMUNOL, V130, P1910
  • [7] Mitochondrial and extramitochondrial apoptotic signaling pathways in cerebrocortical neurons
    Budd, SL
    Tenneti, L
    Lishnak, T
    Lipton, SA
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (11) : 6161 - 6166
  • [8] OXIDATIVE STRESS AS A MEDIATOR OF APOPTOSIS
    BUTTKE, TM
    SANDSTROM, PA
    [J]. IMMUNOLOGY TODAY, 1994, 15 (01): : 7 - 10
  • [9] OXIDANT CARCINOGENESIS AND ANTIOXIDANT DEFENSE
    CERUTTI, P
    SHAH, G
    PESKIN, A
    AMSTAD, P
    [J]. ANNALS OF THE NEW YORK ACADEMY OF SCIENCES-SERIES, 1992, 663 : 158 - 166
  • [10] Chen JD, 1996, MOL CELL BIOL, V16, P2445