Role of catalase in monocytic differentiation of U937 cells by TPA: hydrogen peroxide as a second messenger

被引:54
作者
Yamamoto, T. [1 ]
Sakaguchi, N. [1 ]
Hachiya, M. [1 ]
Nakayama, F. [1 ]
Yamakawa, M. [2 ]
Akashi, M. [1 ]
机构
[1] Natl Inst Radiol Sci, Dept Radiat Emergency Med, Res Ctr Radiat Emergency Med, Chiba 2638555, Japan
[2] Yamagata Univ, Fac Med, Dept Pathol, Yamagata 990, Japan
关键词
catalase; hydrogen peroxide; monocytic differentiation; TPA; ESTER-INDUCED DIFFERENTIATION; PROMYELOCYTIC LEUKEMIA-CELLS; HUMAN ALVEOLAR MACROPHAGES; KINASE C-BETA; REACTIVE OXYGEN; SUPEROXIDE-DISMUTASE; SIGNAL-TRANSDUCTION; HL-60; CELLS; RESPIRATORY BURST; INTERFERON-GAMMA;
D O I
10.1038/leu.2008.353
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Human promonocytic cell line U937 cells can be induced to differentiate into macrophages by treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA). TPA treatment induced the expression of the monocytic differentiation markers CD11b and CD36, with concomitant morphological changes. Moreover, TPA enhanced reactive oxygen species (ROS) generation in these cells, and phagocytic ability was also stimulated during differentiation. The antioxidant agent N-acetyl-L-cysteine inhibited the TPA-induced differentiation of U937 cells. TPA treatment decreased the expression level of catalase, which catalyzes the decomposition of hydrogen peroxide (H2O2) to H2O and O-2. In contrast, TPA increased the level of manganese superoxide dismutase, which catalyzes the dismutation of superoxide into H2O2 and O-2 without affecting the levels of copper-zinc superoxide dismutase or glutathione peroxidase 1, which removes H2O2 using glutathione as substrate. Treatment of U937 cells with catalase inhibited the enhancement of ROS generation induced by TPA, and blocked the TPA-induced differentiation of U937 cells. Human promyelocytic cell line HL60 cells were also induced to differentiate into macrophages by TPA. However, HP100-1 cells, its variant cell line over-expressing catalase, were resistant to TPA-induced differentiation. Our results suggest that catalase inhibits monocytic differentiation by TPA; the decrease in catalase level and the accumulation of H2O2 are significant events for monocyte/macrophage differentiation by TPA.
引用
收藏
页码:761 / 769
页数:9
相关论文
共 62 条
[1]   Synthesis, processing, and intracellular transport of CD36 during monocytic differentiation [J].
Alessio, M ;
DeMonte, L ;
Scirea, A ;
Gruarin, P ;
Tandon, NN ;
Sitia, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (03) :1770-1775
[2]   INDUCTION OF SYNTHESIS OF COMPONENTS OF THE HYDROGEN PEROXIDE-GENERATING OXIDASE DURING ACTIVATION OF THE HUMAN MONOCYTIC CELL-LINE U937 BY INTERFERON-GAMMA [J].
ANDREW, PW ;
ROBERTSON, AK ;
LOWRIE, DB ;
CROSS, AR ;
JONES, OTG .
BIOCHEMICAL JOURNAL, 1987, 248 (01) :281-283
[3]   THE HUMAN LEUKEMIA-CELL LINE, THP-1 - A MULTIFACETED MODEL FOR THE STUDY OF MONOCYTE-MACROPHAGE DIFFERENTIATION [J].
AUWERX, J .
EXPERIENTIA, 1991, 47 (01) :22-31
[4]  
AUWERX JH, 1989, BLOOD, V74, P1807
[5]   NADPH oxidase: An update [J].
Babior, BM .
BLOOD, 1999, 93 (05) :1464-1476
[6]   Reactive oxygen species mediate cyclooxygenase-2 induction during monocyte to macrophage differentiation: critical role of NADPH oxidase [J].
Barbieri, SS ;
Eligini, S ;
Brambilla, M ;
Tremoli, E ;
Colli, S .
CARDIOVASCULAR RESEARCH, 2003, 60 (01) :187-197
[7]   MOLECULAR CHARACTERISTICS OF CYTOCHROME-B558 ISOLATED FROM HUMAN GRANULOCYTES, MONOCYTES AND HL-60 AND U937 CELLS DIFFERENTIATED INTO MONOCYTE MACROPHAGES [J].
CAPEILLEREBLANDIN, C ;
MASSON, A ;
DESCAMPSLATSCHA, B .
BIOCHIMICA ET BIOPHYSICA ACTA, 1991, 1094 (01) :55-65
[8]   High levels of catalase and glutathione peroxidase activity dampen H2O2 signaling in human alveolar macrophages [J].
Carter, AB ;
Tephly, LA ;
Venkataraman, S ;
Oberley, LW ;
Zhang, YP ;
Buettner, GR ;
Spitz, DR .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2004, 31 (01) :43-53
[9]  
CLEMENS MJ, 1984, TRANSCRIPTION TRANSL, P211
[10]   Reactive oxygen species signaling in vascular smooth muscle cells [J].
Clempus, Roza E. ;
Griendling, Kathy K. .
CARDIOVASCULAR RESEARCH, 2006, 71 (02) :216-225