Jang Byeong-Churl, Paik Ji-Hye, Kim Sang-Pyo, Bae Jae-Hoon, Mun Kyo-Chul, Song Dae-Kyu, Cho Chi-Heum, Shin Dong-Hoon, Kwon Taeg Kyu, Park Jong-Wook, Park Jong-Gu, Baek Won-Ki, Suh Min-Ho, Lee Soo Hwan, Baek Suk-Hwan, Lee In-Seon, 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, Republic of Korea.
Biochem Pharmacol. 2004 Dec 1;68(11):2167-76. doi: 10.1016/j.bcp.2004.08.008.
It has been reported that macrophages produce substantial amounts of nitrite and nitrate after addition of catalase, but the mechanism associated remains unclear. In present study, we investigated whether catalase modulates the expression of inducible nitric oxide synthase (iNOS), an enzyme that produces nitric oxide. Exposure of Raw 264.7 macrophages (Raw cells) to catalase induced high expression of iNOS mRNA as well as protein with enzymatic activity. Data of mechanical analyses, such as iNOS promoter-driven luciferase assay and actinomycin D chase experiments demonstrated that the induction was due to increased iNOS transcription and post-transcriptional iNOS mRNA stability. Of interest, catalase-induced iNOS protein expression was abrogated through inactivation of NF-kappaB pathway by MG132 or BAY 11-7085 and PI3K pathway by LY294002 or wortmannin, respectively. In particular, blockage of PI3K pathway by LY294002 down-regulated iNOS transcription and steady-state iNOS mRNA levels as well as iNOS mRNA stability induced by catalase, suggesting regulation of PI3K pathway in catalase-induced iNOS expression at the levels of iNOS transcription, steady-state mRNA status, and mRNA stability. Additional cell culture works in different types of cells indicated that iNOS expression by catalase might be cell type-specific, based on the facts that catalase induced iNOS expression in BV2 microglial macrophage-like cells, but not in HT-29 or A549, human colon or lung cancer epithelial-like cells. Together, these results demonstrate for the first time that catalase induces iNOS expression in Raw cells, which seems to be associated with the increase of iNOS transcription and mRNA stability as well as the activation of NF-kappaB and PI3K signaling pathways.
据报道,巨噬细胞在添加过氧化氢酶后会产生大量的亚硝酸盐和硝酸盐,但其相关机制仍不清楚。在本研究中,我们调查了过氧化氢酶是否调节诱导型一氧化氮合酶(iNOS)的表达,iNOS是一种产生一氧化氮的酶。将Raw 264.7巨噬细胞(Raw细胞)暴露于过氧化氢酶会诱导iNOS mRNA以及具有酶活性的蛋白质的高表达。机械分析数据,如iNOS启动子驱动的荧光素酶测定和放线菌素D追踪实验表明,这种诱导是由于iNOS转录增加和转录后iNOS mRNA稳定性增加所致。有趣的是,过氧化氢酶诱导的iNOS蛋白表达分别通过MG132或BAY 11 - 7085使NF-κB途径失活以及通过LY294002或渥曼青霉素使PI3K途径失活而被消除。特别是,LY294002阻断PI3K途径下调了iNOS转录、稳态iNOS mRNA水平以及过氧化氢酶诱导的iNOS mRNA稳定性,表明PI3K途径在过氧化氢酶诱导的iNOS表达的iNOS转录、稳态mRNA状态和mRNA稳定性水平上发挥调节作用。在不同类型细胞中的额外细胞培养工作表明,基于过氧化氢酶在BV2小胶质细胞样巨噬细胞中诱导iNOS表达,但在HT - 29或A549人结肠或肺癌上皮样细胞中不诱导iNOS表达这一事实,过氧化氢酶诱导的iNOS表达可能具有细胞类型特异性。总之,这些结果首次证明过氧化氢酶在Raw细胞中诱导iNOS表达,这似乎与iNOS转录增加、mRNA稳定性增加以及NF-κB和PI3K信号通路的激活有关。