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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >TRAIL induces apoptosis but not necroptosis in colorectal and pancreatic cancer cells preferentially via the TRAIL-R2/DR5 receptor
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TRAIL induces apoptosis but not necroptosis in colorectal and pancreatic cancer cells preferentially via the TRAIL-R2/DR5 receptor

机译:小径诱导细胞凋亡,但不能通过TRAIL-R2 / DR5受体优先于结肠直肠和胰腺癌细胞中的凹凸细胞

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摘要

Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is a cytokine that can trigger apoptosis in many types of human cancer cells via engagement of its two pro-apoptotic receptors TRAIL-R1 (DR4) and TRAIL-R2 (DR5). TRAIL can also activate several other signaling pathways such as activation of stress kinases, canonical NF-KB signaling and necroptosis. Though both receptors are ubiquitously expressed, their relative participation in TRAIL-induced signaling is still largely unknown. To analyze TRAIL receptor-specific signaling, we prepared Strep-tagged, trimerized variants of recombinant human TRAIL with high affinity for either DR4 or DR5 receptor. Using these receptor-specific ligands, we examined the contribution of individual pro-apoptotic receptors to TRAIL-induced signaling pathways. We found that in TRAIL-resistant colorectal HT-29 cells but not in pancreatic PANC-1 cancer cells, DISC formation and initial caspase-8 processing proceeds comparably via both DR4-and DR5-activated signaling. TRAIL-induced apoptosis, enhanced by the inhibitor of the Bcl-2 family ABT-737, or by the translation inhibitor homoharringtonine, proceeded in both cell lines predominantly via the DR5 receptor. ShRNA-mediated downregulation of DR4 or DR5 receptors in HT-29 cells also pointed to a stronger contribution of DR5 in TRAIL-induced apoptosis. In contrast to apoptosis, necroptotic signaling was activated similarly by both DR4- or DR5-specific ligands. Activation of auxiliary signaling pathways involving NF-xB or stress kinases proceeded under apoptotic conditions mainly in a DR5-dependent manner, while these signaling pathways were during necroptosis similarly activated by either of these ligands. Our study provides the first systematic insight into DR4 - /DR5-specific signaling in colorectal and pancreatic cancer cells.
机译:肿瘤坏死因子相关的凋亡诱导配体(TRAIL)是一种细胞因子,其可以通过其两种促凋亡受体TRAI-R1(DR4)和TRAIL-R2(DR5)接合来引发许多类型的人类癌细胞中的细胞凋亡。路径还可以激活几种其他信号途径,例如应力激酶的激活,典型NF-KB信号传导和死亡症。虽然两个受体都是普遍表达的,但它们的相对参与诱导的信号传导仍然很大程度上是未知的。为了分析TRAIL受体特异性信号,我们制备了具有高亲和力的重组标记的标记标记的重组变体,对DR4或DR5受体具有高亲和力。使用这些受体特异性配体,我们检查了个体凋亡受体对痕迹诱导的信号通路的贡献。我们发现,在耐痕抗性结直肠HT-29细胞中,但不在胰腺Panc-1癌细胞中,通过DR4和DR5激活的信号传导,盘形成和初始Caspase-8处理进行相当进行。通过DR5受体主要通过DR5受体,由BCL-2系列ABT-737的抑制剂或通过翻译抑制剂HOMOHARRINGONE的抑制剂增强的凋亡诱导的细胞凋亡。 ShRNA介导的HT-29细胞DR4或DR5受体的下调也指出了DR5在诱导的细胞凋亡中的更强烈贡献。与细胞凋亡相反,通过DR4-或DR5特异性配体同样地激活恶凋亡信号传导。涉及NF-XB或应力激酶的辅助信令途径的激活主要以DR5依赖性方式在凋亡条件下进行,而这些信号传导途径在肮脏的症期间由这些配体中的任何一个类似地激活。我们的研究提供了在结肠直肠和胰腺癌细胞中的第一个系统洞察DR4 - / DR5特定信号传导。

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