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神经肿瘤细胞中的程序性细胞死亡涉及神经酰胺的生成。

Programmed cell death in neurotumour cells involves the generation of ceramide.

作者信息

Wiesner D A, Dawson G

机构信息

Department of Pediatrics, University of Chicago School of Medicine, IL 60637, USA.

出版信息

Glycoconj J. 1996 Apr;13(2):327-33. doi: 10.1007/BF00731508.

Abstract

Ceramide has been typically thought of as the membrane anchor for the carbohydrate in glycosphingolipids but many studies have suggested that it may cause apoptosis. Apoptosis or programmed cell death (PCD) is thought to be responsible for the death of one-half of neurons surviving the development of the nervous system. The potential involvement of the sphingomyelin-ceramide signaling process as an integral part of PCD was therefore examined in several neurotumour cell lines. We show that synthetic C2-ceramide (N-acetylsphingosine), a soluble ceramide analogue, can rapidly trigger PCD in these cells, characterized by: 1) classic DNA laddering on agarose gels; 2) DNA fragmentation as determined by Hoechst Dye; and 3) cell viability (mitochondrial function and intact nuclei) assays. We report that staurosporine can both activate PCD (by all three criteria above) in neurotumour cells and increase both the formation of ceramide and ceramide mass. Both ceramide formation and the induction of PCD were further enhanced by the co-addition of a ceramidase inhibitor oleoylethanolamine (25 microM). Staurosporine and oleoylethanolamine were similarly effective in inducing ceramide formation and PCD in immortalized hippocampal neurons (HN-2) and immortalized dorsal root ganglion cells (F-11). Our data suggests that formation of ceramide is a key event in the induction of PCD in neuronally derived neurotumour cells.

摘要

神经酰胺通常被认为是糖鞘脂中碳水化合物的膜锚定物,但许多研究表明它可能会导致细胞凋亡。细胞凋亡或程序性细胞死亡(PCD)被认为是在神经系统发育过程中存活下来的一半神经元死亡的原因。因此,在几种神经肿瘤细胞系中研究了鞘磷脂 - 神经酰胺信号传导过程作为PCD不可或缺的一部分的潜在作用。我们发现,合成的C2 - 神经酰胺(N - 乙酰鞘氨醇),一种可溶性神经酰胺类似物,可在这些细胞中迅速触发PCD,其特征为:1)琼脂糖凝胶上典型的DNA梯状条带;2)通过Hoechst染料测定的DNA片段化;3)细胞活力(线粒体功能和完整细胞核)测定。我们报告说,星形孢菌素既能在神经肿瘤细胞中激活PCD(通过上述所有三个标准),又能增加神经酰胺的形成和神经酰胺总量。同时添加神经酰胺酶抑制剂油酰乙醇胺(25 microM)可进一步增强神经酰胺的形成和PCD的诱导。星形孢菌素和油酰乙醇胺在永生化海马神经元(HN - 2)和永生化背根神经节细胞(F - 11)中诱导神经酰胺形成和PCD方面同样有效。我们的数据表明,神经酰胺的形成是神经元源性神经肿瘤细胞中诱导PCD的关键事件。

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