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白细胞介素1β转化酶相关蛋白酶/半胱天冬酶参与肿瘤坏死因子相关凋亡诱导配体(TRAIL)诱导的骨髓瘤和白血病细胞凋亡。

Interleukin 1 beta-converting enzyme related proteases/caspases are involved in TRAIL-induced apoptosis of myeloma and leukemia cells.

作者信息

Mariani S M, Matiba B, Armandola E A, Krammer P H

机构信息

Tumor Immunology, German Cancer Research Center, Heidelberg.

出版信息

J Cell Biol. 1997 Apr 7;137(1):221-9. doi: 10.1083/jcb.137.1.221.

Abstract

The Fas/APO-1/CD95 ligand (CD95L) and the recently cloned TRAIL ligand belong to the TNF-family and share the ability to induce apoptosis in sensitive target cells. Little information is available on the degree of functional redundancy between these two ligands in terms of target selectivity and intracellular signalling pathway(s). To address these issues, we have expressed and characterized recombinant mouse TRAIL. Specific detection with newly developed rabbit anti-TRAIL antibodies showed that the functional TRAIL molecule released into the supernatant of recombinant baculovirus-infected Sf9 cells is very similar to that associated with the membrane fraction of Sf9 cells. CD95L resistant myeloma cells were found to be sensitive to TRAIL, displaying apoptotic features similar to those of the CD95L- and TRAIL-sensitive T leukemia cells Jurkat. To assess if IL-1beta-converting enzyme (ICE) and/or ICE-related proteases (IRPs) (caspases) are involved in TRAIL-induced apoptosis of both cell types, peptide inhibition experiments were performed. The irreversible IRP/caspase-inhibitor Ac-YVAD-cmk and the reversible IRP/caspase-inhibitor Ac-DEVD-CHO blocked the morphological changes, disorganization of plasma membrane phospholipids, DNA fragmentation, and loss of cell viability associated with TRAIL-induced apoptosis. In addition, cells undergoing TRAIL-mediated apoptosis displayed cleavage of poly(ADP)-ribose polymerase (PARP) that was completely blocked by Ac-DEVD-CHO. These results indicate that TRAIL seems to complement the activity of the CD95 system as it allows cells, otherwise resistant, to undergo apoptosis triggered by specific extracellular ligands. Conversely, however, induction of apoptosis in sensitive cells by TRAIL involves IRPs/caspases in a fashion similar to CD95L. Thus, differential sensitivity to CD95L and TRAIL seems to map to the proximal signaling events associated with receptor triggering.

摘要

Fas/APO-1/CD95配体(CD95L)和最近克隆的TRAIL配体属于肿瘤坏死因子家族,都具有在敏感靶细胞中诱导凋亡的能力。关于这两种配体在靶标选择性和细胞内信号通路方面功能冗余程度的信息较少。为了解决这些问题,我们表达并鉴定了重组小鼠TRAIL。用新开发的兔抗TRAIL抗体进行特异性检测表明,释放到重组杆状病毒感染的Sf9细胞上清液中的功能性TRAIL分子与与Sf9细胞膜部分相关的分子非常相似。发现对CD95L耐药的骨髓瘤细胞对TRAIL敏感,表现出与对CD95L和TRAIL敏感的T白血病细胞Jurkat相似的凋亡特征。为了评估白细胞介素-1β转换酶(ICE)和/或ICE相关蛋白酶(IRPs)(半胱天冬酶)是否参与TRAIL诱导的两种细胞类型的凋亡,进行了肽抑制实验。不可逆的IRP/半胱天冬酶抑制剂Ac-YVAD-cmk和可逆的IRP/半胱天冬酶抑制剂Ac-DEVD-CHO阻断了与TRAIL诱导的凋亡相关的形态学变化、质膜磷脂紊乱、DNA片段化和细胞活力丧失。此外,经历TRAIL介导凋亡的细胞显示出聚(ADP)-核糖聚合酶(PARP)的裂解,这被Ac-DEVD-CHO完全阻断。这些结果表明,TRAIL似乎补充了CD95系统的活性,因为它使原本耐药的细胞能够经历由特定细胞外配体触发的凋亡。然而,相反地,TRAIL诱导敏感细胞凋亡涉及IRPs/半胱天冬酶,其方式与CD95L相似。因此,对CD95L和TRAIL的不同敏感性似乎映射到与受体触发相关的近端信号事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e89/2139852/0a6fd4419b0c/JCB.mariani1.jpg

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