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过氧化氢通过激活 Akt-ERK1/2 信号通路促进 Smad3 连接子磷酸化来抑制转化生长因子-β1 诱导的细胞周期阻滞。

Hydrogen peroxide inhibits transforming growth factor-β1-induced cell cycle arrest by promoting Smad3 linker phosphorylation through activation of Akt-ERK1/2-linked signaling pathway.

机构信息

Department of Biochemistry, College of Natural Sciences, Kangwon National University, Chuncheon 200-701, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2013 Jun 14;435(4):634-9. doi: 10.1016/j.bbrc.2013.05.035. Epub 2013 May 17.

Abstract

Hydrogen peroxide (H2O2) functions as a second messenger in growth factor receptor-mediated intracellular signaling cascade and is tumorigenic by virtue of its ability to promote cell proliferation; however, the mechanisms underlying the growth stimulatory action of H2O2 are less understood. Here we report an important mechanism for antagonistic effects of H2O2 on growth inhibitory response to transforming growth factor-β1 (TGF-β1). In Mv1Lu and HepG2 cells, pretreatment of H2O2 (0.05-0.2 mM) completely blocked TGF-β1-mediated induction of p15(INK4B) expression and increase of its promoter activity. Interestingly, H2O2 selectively suppressed the transcriptional activation potential of Smad3, not Smad2, in the absence of effects on TGF-β1-induced phosphorylation of the COOH-tail SSXS motif of Smad3 and its nuclear translocation. Mechanism studies showed that H2O2 increases the phosphorylation of Smad3 at the middle linker region in a concentration- and time-dependent manner and this effect is mediated by activation of extracellular signal-activated kinase 1/2 through Akt. Furthermore, expression of a mutant Smad3 in which linker phosphorylation sites were ablated significantly abrogated the inhibitory effects of H2O2 on TGF-β1-induced increase of p15(INK4B)-Luc reporter activity and blockade of cell cycle progression from G1 to S phase. These findings for the first time define H2O2 as a signaling molecule that modulate Smad3 linker phosphorylation and its transcriptional activity, thus providing a potential mechanism whereby H2O2 antagonizes the cytostatic function of TGF-β1.

摘要

过氧化氢(H2O2)作为生长因子受体介导的细胞内信号级联反应中的第二信使发挥作用,并且由于其促进细胞增殖的能力而具有致瘤性;然而,H2O2 促进细胞增殖的作用机制尚未完全阐明。在这里,我们报道了 H2O2 拮抗转化生长因子-β1(TGF-β1)生长抑制反应的重要机制。在 Mv1Lu 和 HepG2 细胞中,H2O2(0.05-0.2 mM)预处理完全阻断了 TGF-β1 诱导的 p15(INK4B)表达和其启动子活性增加。有趣的是,H2O2 选择性抑制 Smad3 的转录激活潜能,而不影响 TGF-β1 诱导的 Smad3 COOH 尾 SSXS 基序的磷酸化及其核易位,在没有影响的情况下。机制研究表明,H2O2 以浓度和时间依赖的方式增加 Smad3 中连接子区域的磷酸化,这种作用是通过激活细胞外信号激活激酶 1/2 介导的 Akt 来实现的。此外,表达一个突变的 Smad3,其中连接子磷酸化位点被消除,显著消除了 H2O2 对 TGF-β1 诱导的 p15(INK4B)-Luc 报告基因活性增加的抑制作用,并阻断了细胞周期从 G1 到 S 期的进展。这些发现首次定义 H2O2 作为一种信号分子,调节 Smad3 连接子磷酸化及其转录活性,从而提供了一种潜在的机制,H2O2 拮抗 TGF-β1 的细胞生长抑制功能。

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