Jang Byeong-Churl, Kim Do-Hyun, Park Jong-Wook, Kwon Taeg Kyu, Kim Sang-Pyo, Song Dae-Kyu, Park Jong-Gu, Bae Jae-Hoon, Mun Kyo-Chul, Baek Won-Ki, Suh Min-Ho, Hla Timothy, Suh Seong-Il
Chronic Disease Research Center and Institute for Medical Science, Keimyung University School of Medicine, #194 DongSan-Dong, Jung-Gu, Daegu 700-712, South Korea.
Biochem Biophys Res Commun. 2004 Apr 2;316(2):398-406. doi: 10.1016/j.bbrc.2004.02.060.
Induction of COX-2 by catalase in smooth muscle cells, endothelial cells, and neuronal cells has been previously reported. However, the mechanism by which catalase up-regulates COX-2 remains poorly understood. In this study, we investigated the effect of catalase on induction of COX-2 in macrophages. The addition of catalase into Raw 264.7 macrophages induced COX-2 expression that was correlated with increased COX-2 transcription and mRNA stability. Catalase also induced activation of NF-kappaB, PI3K, ERKs, p38s, or JNKs. Catalase-induced COX-2 expression was abrogated by treatment of MG-132 (a NF-kappaB inhibitor) or LY294002 (a PI3K inhibitor), but not by treatment of PD98059 (an ERK inhibitor), SB203580 (a p38 inhibitor), or SP600125 (a JNK inhibitor). Moreover, inhibition of PI3K by LY294002 caused partial decrease of catalase-induced COX-2 transcription and steady-state COX-2 transcript levels, but not COX-2 mRNA stability. Together, these results suggest that catalase induces the expression of COX-2 in Raw 264.7 macrophages, and the induction is related with activation of NF-kappaB transcription factor and PI3K signaling pathway.
过氧化氢酶在平滑肌细胞、内皮细胞和神经元细胞中诱导COX - 2的现象此前已有报道。然而,过氧化氢酶上调COX - 2的机制仍知之甚少。在本研究中,我们调查了过氧化氢酶对巨噬细胞中COX - 2诱导的影响。向Raw 264.7巨噬细胞中添加过氧化氢酶可诱导COX - 2表达,这与COX - 2转录增加和mRNA稳定性增强相关。过氧化氢酶还可诱导NF-κB、PI3K、ERK、p38或JNK的激活。用MG - 132(一种NF-κB抑制剂)或LY294002(一种PI3K抑制剂)处理可消除过氧化氢酶诱导的COX - 2表达,但用PD98059(一种ERK抑制剂)、SB203580(一种p38抑制剂)或SP600125(一种JNK抑制剂)处理则无此效果。此外,LY294002抑制PI3K会导致过氧化氢酶诱导的COX - 2转录和COX - 2转录本稳态水平部分降低,但不会影响COX - 2 mRNA稳定性。总之,这些结果表明过氧化氢酶可诱导Raw 264.7巨噬细胞中COX - 2的表达,且该诱导作用与NF-κB转录因子和PI3K信号通路的激活有关。