Siegmund Daniela, Klose Stefanie, Zhou Donghui, Baumann Bernd, Röder Christian, Kalthoff Holger, Wajant Harald, Trauzold Anna
Department of Molecular Internal Medicine, Medical Clinic and Polyclinic II, University of Wuerzburg, and Division of Molecular Oncology, Clinic for General Surgery and Thoracic Surgery, University Hospital Schleswig-Holstein, Kiel, Germany.
Cell Signal. 2007 Jun;19(6):1172-84. doi: 10.1016/j.cellsig.2006.12.008. Epub 2007 Jan 3.
The CD95 and TRAIL death receptors can potently stimulate proinflammatory signalling, especially in apoptosis resistant cells. Here, we show that caspases are of cell type-specific relevance for non-apoptotic death receptor signalling in pancreatic tumour cells. Inhibition of caspases by zVAD-fmk strongly enhanced the proinflammatory response in PancTuI, BxPc3 and Panc89 cells, but inhibited this response in Colo357 cells as well as in apoptosis-resistant Colo357-BclxL cells overexpressing BclxL. To characterize the role of caspases in non-apoptotic death receptor signalling, we analysed CD95L- and TRAIL-induced signalling pathways in Colo357-BclxL cells in comparison with PancTuI cells. Both death ligands induced NFkappaB, ERKs, JNK and p38 in Colo357-BclxL cells and except for ERKs also in PancTuI cells. However, inhibition of caspases with zVAD-fmk resulted in strong inhibition of all these signalling pathways in Colo357-BclxL, but enhanced NFkappaB and JNK signalling in PancTuI cells. Caspase-mediated activation of NFkappaB and ERKs were involved in CD95L- and TRAIL-induced up-regulation of proinflammatory genes in Colo357-BclxL cells. At the level of the DISC we did not observe any significant differences in recruitment or processing of FADD, caspase-8, FLIP, TRAF2 and RIP between PancTuI and Colo357-BclxL cells. Consequently, an NFkappaB and ERK stimulating, caspase-dependent factor must operate downstream of the DISC in Colo357-BclxL cells.
CD95和TRAIL死亡受体可有效刺激促炎信号传导,尤其是在凋亡抗性细胞中。在此,我们表明半胱天冬酶在胰腺肿瘤细胞的非凋亡死亡受体信号传导中具有细胞类型特异性相关性。zVAD-fmk对半胱天冬酶的抑制作用在PancTuI、BxPc3和Panc89细胞中强烈增强了促炎反应,但在Colo357细胞以及过表达BclxL的凋亡抗性Colo357-BclxL细胞中抑制了这种反应。为了表征半胱天冬酶在非凋亡死亡受体信号传导中的作用,我们分析了与PancTuI细胞相比,Colo357-BclxL细胞中CD95L和TRAIL诱导的信号通路。两种死亡配体在Colo357-BclxL细胞中均诱导了NFκB、ERK、JNK和p38,在PancTuI细胞中除ERK外也诱导了这些信号。然而,用zVAD-fmk抑制半胱天冬酶导致Colo357-BclxL中所有这些信号通路的强烈抑制,但增强了PancTuI细胞中的NFκB和JNK信号。半胱天冬酶介导的NFκB和ERK激活参与了Colo357-BclxL细胞中CD95L和TRAIL诱导的促炎基因上调。在死亡诱导信号复合物水平,我们未观察到PancTuI和Colo357-BclxL细胞之间在FADD、半胱天冬酶-8、FLIP、TRAF2和RIP的募集或加工方面有任何显著差异。因此,在Colo357-BclxL细胞中,一种刺激NFκB和ERK的、依赖半胱天冬酶的因子必定在死亡诱导信号复合物下游起作用。