Platzbecker Uwe, Kurre Peter, Guardiola Philippe, Ward Jessica L, Radich Jerald P, Kiem Hans-Peter, Deeg H Joachim
University Hospital Carl Gustav Carus, Dresden, Germany.
Exp Hematol. 2004 Sep;32(9):815-21. doi: 10.1016/j.exphem.2004.06.002.
The pathophysiology of bone marrow failure in Fanconi anemia (FA) patients is thought to involve excessive apoptosis involving signaling triggered by fas ligation and tumor necrosis factor (TNF)-alpha, or interferon (IFN)-gamma exposure. We investigated whether a new member of the TNF family, TRAIL (TNF-related apoptosis-inducing ligand), would similarly trigger preferential apoptotic cell death in FA phenotype cells.
Hematopoietic cells from FANCC(-/-) transgenic mice and human FA-C lymphoblasts (HSC536N) as well as their phenotypically corrected counterparts (FANCC(+/+), HSC536/FA-Cneo) were compared for their response to apoptosis induction by TRAIL and fas ligation in the presence or absence of IFN-gamma. Cells were also studied for the protein and gene expression of TRAIL-receptors, caspase-8 and its inhibitory protein, FLIP.
TRAIL exposure by itself or in combination with IFN-gamma did not lead to preferential apoptosis induction in human and murine FA-C phenotype hematopoietic cells. This resistance was unrelated to the expression of TRAIL receptors or FLIP isoforms, but correlated with absent cleavage of pro-caspase-8. Results were validated by those from gene expression profiling of relevant genes in the two lymphoblast cell lines.
TRAIL, in contrast to fas ligation, does not induce preferential apoptosis in FA-C phenotype cells despite shared downstream signaling described in non-FA models. These data provide further insight into the complexity of FA-C-regulated apoptotic signaling.
范可尼贫血(FA)患者骨髓衰竭的病理生理学被认为涉及由fas连接以及肿瘤坏死因子(TNF)-α或干扰素(IFN)-γ暴露触发的信号传导所导致的过度凋亡。我们研究了TNF家族的一个新成员,TRAIL(TNF相关凋亡诱导配体)是否会同样触发FA表型细胞中的优先凋亡性细胞死亡。
比较了来自FANCC(-/-)转基因小鼠和人类FA-C淋巴母细胞(HSC536N)及其表型校正对应物(FANCC(+/+),HSC536/FA-Cneo)的造血细胞在有或无IFN-γ存在的情况下对TRAIL诱导凋亡和fas连接的反应。还研究了细胞中TRAIL受体、半胱天冬酶-8及其抑制蛋白FLIP的蛋白质和基因表达。
单独或与IFN-γ联合使用TRAIL均未导致人和小鼠FA-C表型造血细胞中的优先凋亡诱导。这种抗性与TRAIL受体或FLIP异构体的表达无关,但与前半胱天冬酶-8未被切割有关。来自两种淋巴母细胞系相关基因的基因表达谱分析结果验证了这些结果。
与fas连接不同,尽管在非FA模型中描述了共同的下游信号传导,但TRAIL不会在FA-C表型细胞中诱导优先凋亡。这些数据进一步深入了解了FA-C调节的凋亡信号传导的复杂性。