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首页> 外文期刊>Cytokine >Cytokine-mediated FOXO3a phosphorylation suppresses FasL expression in hemopoietic cell lines: investigations of the role of Fas in apoptosis due to cytokine starvation.
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Cytokine-mediated FOXO3a phosphorylation suppresses FasL expression in hemopoietic cell lines: investigations of the role of Fas in apoptosis due to cytokine starvation.

机译:细胞因子介导的FOXO3a磷酸化抑制造血细胞系中FasL的表达:Fas在细胞因子饥饿引起的凋亡中的作用研究。

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摘要

We have investigated phosphatidylinositol 3-kinase (PI3K)-dependent survival signalling pathways using several cytokines in three different hemopoietic cell lines, MC/9, FDC-P1, and TF-1. Cytokines caused PI3K- and PKB-dependent phosphorylation of FOXO3a (previously known as FKHRL1) at three distinct sites. Following cytokine withdrawal or PI3K inhibition, both of which are known to lead to apoptosis, there was a loss of FOXO3a phosphorylation, and a resulting increase in forkhead transcriptional activity, along with increased expression of Fas Ligand (FasL), which could be detected at the cell surface. Concurrently, an increase in cell surface expression of Fas was also detected. Despite the presence of both FasL and Fas, there was no detectable evidence that activation of Fas-mediated apoptotic events was contributing to apoptosis resulting from cytokine starvation or inhibition of PI3K activity. Thus, inhibition of FOXO3a activity is mediated by the PI3K-PKB pathway, but regulation of FasL is not the primary means by which cell survival is regulated in cytokine-dependent hemopoietic cells. We were also able to confirm increased expression of known FOXO3a targets, Bim and p27kip1. Together, these results support the conclusion that mitochondrial-mediated signals play the major role in apoptosis of hemopoietic cells due to loss of cytokine signalling.
机译:我们已经研究了在三种不同造血细胞系MC / 9,FDC-P1和TF-1中使用几种细胞因子的磷脂酰肌醇3-激酶(PI3K)依赖性生存信号通路。细胞因子在三个不同的部位引起FOXO3a(以前称为FKHRL1)的PI3K和PKB依赖性磷酸化。细胞因子戒断或PI3K抑制均导致细胞凋亡后,FOXO3a磷酸化丧失,叉头转录活性增加,Fas Ligand(FasL)表达增加,可在以下位置检测到细胞表面。同时,还检测到Fas的细胞表面表达增加。尽管同时存在FasL和Fas,但没有可检测到的证据表明Fas介导的凋亡事件的激活导致细胞因子饥饿或PI3K活性抑制导致的细胞凋亡。因此,对FOXO3a活性的抑制是通过PI3K-PKB途径介导的,但对FasL的调节并不是在依赖细胞因子的造血细胞中调节细胞存活的主要手段。我们还能够确认已知FOXO3a靶标Bim和p27kip1的表达增加。总之,这些结果支持以下结论:线粒体介导的信号由于细胞因子信号传导的丧失在造血细胞的凋亡中起主要作用。

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