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失调的c-Myc过早地募集与终末髓系分化相关的I型和II型CD95/Fas凋亡途径。

Deregulated c-Myc prematurely recruits both Type I and II CD95/Fas apoptotic pathways associated with terminal myeloid differentiation.

作者信息

Amanullah Arshad, Liebermann Dan A, Hoffman Barbara

机构信息

Fels Institute for Cancer Research, Temple University School of Medicine, 3307 N. Broad Street, Philadelphia, Pennsylvania, PA 19140, USA.

出版信息

Oncogene. 2002 Feb 28;21(10):1600-10. doi: 10.1038/sj.onc.1205231.

Abstract

Previously we have reported that deregulated expression of c-myc in normal and leukemic myeloid cells blocked differentiation and, concomitantly, induced p53-independent apoptosis. Here, we show that this morbidity was due to premature recruitment of the Fas/CD95 cell death pathway which normally operates to induce apoptosis at the end of the terminal myeloid differentiation program. Analysis of the regulated components of this pathway revealed that IL6-mediated induction of differentiation resulted in rapid cell surface expression of CD95 receptor. Deregulated c-myc prevented the downregulation of CD95 ligand by maintaining its transcription, but caused premature downregulation of c-FLIP. First, the Type II (mitochondria-dependent, bcl-2-sensitive) and, then, the Type I (mitochondria-independent, bcl-2-insensitive) pathway were activated. Stable exogenous c-FLIP expression completely rescued the apoptotic phenotype. Furthermore, when the deregulated c-myc transgene was stably transduced into bone marrow cells from Fas(lpr/lpr) (CD95 receptor mutant) and FasL(gld/gld) (CD95 ligand mutant) mice, cell death was significantly suppressed relative to c-myc-transduced wild type bone marrow cells upon induction of differentiation. These data indicate that c-myc-mediated apoptosis associated with blocks in myeloid differentiation is dependent on the Fas/CD95 pathway. Our findings offer important new insights into understanding how deregulated c-myc alters normal blood cell homeostasis, and how additional mutations might promote leukemogenesis.

摘要

此前我们报道过,c-myc在正常和白血病髓系细胞中的表达失调会阻碍分化,并同时诱导不依赖p53的细胞凋亡。在此,我们表明这种病理状态是由于Fas/CD95细胞死亡途径的过早募集,该途径通常在终末髓系分化程序结束时发挥作用以诱导细胞凋亡。对该途径调控成分的分析表明,IL6介导的分化诱导导致CD95受体在细胞表面快速表达。失调的c-myc通过维持其转录来阻止CD95配体的下调,但导致c-FLIP过早下调。首先激活II型(线粒体依赖性、bcl-2敏感)途径,然后激活I型(线粒体非依赖性、bcl-2不敏感)途径。稳定的外源性c-FLIP表达完全挽救了凋亡表型。此外,当将失调的c-myc转基因稳定转导至Fas(lpr/lpr)(CD95受体突变体)和FasL(gld/gld)(CD95配体突变体)小鼠的骨髓细胞中时,相对于诱导分化后的c-myc转导野生型骨髓细胞,细胞死亡显著受到抑制。这些数据表明,与髓系分化阻滞相关的c-myc介导的细胞凋亡依赖于Fas/CD95途径。我们的发现为理解失调的c-myc如何改变正常血细胞稳态以及其他突变如何促进白血病发生提供了重要的新见解。

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