Lu Bin, Wang Liying, Stehlik Christian, Medan Djordje, Huang Chuanshu, Hu Shuiying, Chen Fei, Shi Xianglin, Rojanasakul Yon
Department of Pharmaceutical Sciences, West Virginia University, Morgantown, WV 26506, USA.
J Immunol. 2006 Jun 1;176(11):6785-93. doi: 10.4049/jimmunol.176.11.6785.
Fas (CD95)-mediated apoptosis is an essential mechanism for the maintenance of homeostasis, and disruption of this death pathway contributes to many human diseases. The cell survival protein kinase Akt/protein kinase B (PKB) is a known regulator of apoptosis, but its role in Fas-mediated cell death and its regulatory mechanisms are unclear. In this study, we show that stimulation of the Fas receptor by its ligand (FasL) induces rapid phosphorylation of Akt/PKB and a parallel increase in cell apoptosis in epidermal Cl41 cells. Inhibition of PI3K/Akt by dominant-negative overexpression of PI3K (Deltap85) and Akt (Akt-T308A/S473A) protects the cells from apoptosis, indicating an unexpected proapoptotic role of PI3K/Akt in the Fas signaling process. Treatment of the cells with pharmacological inhibitors of PI3K, wortmannin and 2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-1 (LY294002), similarly inhibits FasL-induced apoptosis and Akt/PKB phosphorylation, indicating that PI3K is an upstream mediator of Akt/PKB and is involved in Fas-mediated cell death. Electron spin resonance studies show that FasL treatment induces rapid generation of reactive oxygen species, and inhibition of ROS by antioxidants effectively inhibits Akt/PKB signaling, suggesting that FasL activation of Akt/PKB is redox sensitive. In cells transfected with dominant-negative PI3K/Akt, Fas expression is down-regulated, but FLIP expression is unaffected. Reporter gene and mRNA expression assays show that FasL activates fas transcriptional activity and this effect is inhibited by PI3K/Akt suppression. Together, our results indicate that the PI3K/Akt, in addition to its normal prosurvival role, also plays an apoptotic role in Fas-mediated cell death through a mechanism that involves transcriptional activation of Fas receptor.
Fas(CD95)介导的细胞凋亡是维持体内稳态的重要机制,该死亡途径的破坏会导致多种人类疾病。细胞存活蛋白激酶Akt/蛋白激酶B(PKB)是已知的细胞凋亡调节因子,但其在Fas介导的细胞死亡中的作用及其调节机制尚不清楚。在本研究中,我们发现其配体(FasL)刺激Fas受体会诱导表皮Cl41细胞中Akt/PKB快速磷酸化,同时细胞凋亡平行增加。通过PI3K(Deltap85)和Akt(Akt-T308A/S473A)的显性负性过表达抑制PI3K/Akt可保护细胞免于凋亡,表明PI3K/Akt在Fas信号传导过程中具有意想不到的促凋亡作用。用PI3K的药理抑制剂渥曼青霉素和2-(4-吗啉基)-8-苯基-4H-1-苯并吡喃-4-酮(LY294002)处理细胞,同样抑制FasL诱导的细胞凋亡和Akt/PKB磷酸化,表明PI3K是Akt/PKB的上游介质,并参与Fas介导的细胞死亡。电子自旋共振研究表明,FasL处理可诱导活性氧的快速产生,抗氧化剂对ROS的抑制可有效抑制Akt/PKB信号传导,提示FasL对Akt/PKB的激活对氧化还原敏感。在转染显性负性PI3K/Akt的细胞中,Fas表达下调,但FLIP表达不受影响。报告基因和mRNA表达分析表明,FasL激活fas转录活性,PI3K/Akt抑制可抑制该效应。总之,我们的结果表明,PI3K/Akt除了其正常的促存活作用外,还通过涉及Fas受体转录激活的机制在Fas介导的细胞死亡中发挥凋亡作用。