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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Lack of T-cell receptor-induced signaling is crucial for CD95 ligand up-regulation and protects cutaneous T-cell lymphoma cells from activation-induced cell death.
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Lack of T-cell receptor-induced signaling is crucial for CD95 ligand up-regulation and protects cutaneous T-cell lymphoma cells from activation-induced cell death.

机译:缺乏T细胞受体诱导的信号传导对于CD95配体上调至关重要,并保护皮肤T细胞淋巴瘤细胞免受激活诱导的细胞死亡。

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摘要

Restimulation of previously activated T cells via the T-cell receptor (TCR) leads to activation-induced cell death (AICD), which is, at least in part, dependent on the death receptor CD95 (APO-1, FAS) and its natural ligand (CD95L). Here, we characterize cutaneous T-cell lymphoma (CTCL) cells (CTCL tumor cell lines and primary CTCL tumor cells from CTCL patients) as AICD resistant. We show that CTCL cells have elevated levels of the CD95-inhibitory protein cFLIP. However, cFLIP is not responsible for CTCL AICD resistance. Instead, our data suggest that reduced TCR-proximal signaling in CTCL cells is responsible for the observed AICD resistance. CTCL cells exhibit no PLC-gamma1 activity, resulting in an impaired Ca(2+)release and reduced generation of reactive oxygen species upon TCR stimulation. Ca(2+) and ROS production are crucial for up-regulation of CD95L and reconstitution of both signals resulted in AICD sensitivity of CTCL cells. In accordance with these data, CTCL tumor cells from patients with Sezary syndrome do not up-regulate CD95L upon TCR-stimulation and are therefore resistant to AICD. These results show a novel mechanism of AICD resistance in CTCL that could have future therapeutic implications to overcome apoptosis resistance in CTCL patients.
机译:通过T细胞受体(TCR)重新激活先前激活的T细胞会导致激活诱导的细胞死亡(AICD),这至少部分取决于死亡受体CD95(APO-1,FAS)及其天然配体(CD95L)。在这里,我们将皮肤T细胞淋巴瘤(CTCL)细胞(CTCL肿瘤细胞系和来自CTCL患者的原发性CTCL肿瘤细胞)表征为AICD耐药。我们表明,CTCL细胞具有较高水平的CD95抑制蛋白cFLIP。但是,cFLIP对CTCL AICD抗性不负责。相反,我们的数据表明,CTCL细胞中TCR-近端信号的减少是观察到的AICD抗性的原因。 CTCL细胞不显示PLC-gamma1活性,导致受损的Ca(2+)释放和TCR刺激后减少活性氧的生成。 Ca(2+)和ROS的产生对于CD95L的上调和两个信号的重构导致CTCL细胞AICD敏感性至关重要。根据这些数据,来自Sezary综合征患者的CTCL肿瘤细胞在TCR刺激后不会上调CD95L,因此对AICD具有抗性。这些结果表明,CTCL中AICD耐药的新机制可能具有克服CTCL患者凋亡抵抗的未来治疗意义。

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