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内源性GD3神经节苷脂诱导U-1242 MG胶质瘤细胞凋亡。

Endogenous GD3 ganglioside induces apoptosis in U-1242 MG glioma cells.

作者信息

Saqr H E, Omran O, Dasgupta S, Yu R K, Oblinger J L, Yates A J

机构信息

Department of Pathology, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Neurochem. 2006 Mar;96(5):1301-14. doi: 10.1111/j.1471-4159.2005.03640.x. Epub 2006 Jan 25.

Abstract

GD3 ganglioside induces apoptosis in several cell types, but the molecular events through which this occurs are largely unknown. We investigated the apoptotic effects of GD3 expression using U-1242 MG glioblastoma cells, as these cells synthesize almost exclusively GM3 and GM2 but not GD3. To express GD3 under the control of the TetOn system with minimum leakage, we modified the system by constructing a single tri-cistronic retrovirus vector containing three genes separated by two internal ribosome entry sites: (a) transcriptional silencer, tTS; (b) mutant of reverse transcriptional activator, rtTA2(S)-M2 (provided by H. Bujard, Heidelberg, Germany); and (c) enhanced green fluorescent protein (EGFP), as an indicator of the tri-cistronic gene expression. Using flow cytometry, we selected glioma cells (U1242MG-GD3 clone) that express high levels of GD3 in response to doxycycline. Expression of GD3 was associated with apoptosis as verified by annexin-V binding, TdT-mediated dUTPnick end-labelling assay (TUNEL), and EGFP degradation. GD3-induced apoptosis occurred via caspase-8 activation, as GD3 caused cleavage of caspase-8 and inhibition of caspase-8 activation by zlETD-fmk minimized GD3-induced apoptosis.

摘要

GD3神经节苷脂可诱导多种细胞类型发生凋亡,但其发生的分子机制却 largely未知。我们利用U-1242 MG胶质母细胞瘤细胞研究了GD3表达的凋亡效应,因为这些细胞几乎只合成GM3和GM2,而不合成GD3。为了在TetOn系统的控制下以最小的渗漏表达GD3,我们通过构建一个单一的三顺反子逆转录病毒载体对该系统进行了改造,该载体包含由两个内部核糖体进入位点分隔的三个基因:(a)转录沉默子tTS;(b)逆转录激活因子rtTA2(S)-M2的突变体(由德国海德堡的H. Bujard提供);以及(c)增强型绿色荧光蛋白(EGFP),作为三顺反子基因表达的指标。我们使用流式细胞术筛选出了在强力霉素作用下表达高水平GD3的胶质瘤细胞(U1242MG-GD3克隆)。如通过膜联蛋白-V结合、TdT介导的dUTP缺口末端标记法(TUNEL)和EGFP降解所证实,GD3的表达与凋亡相关。GD3诱导的凋亡通过半胱天冬酶-8激活而发生,因为GD3导致半胱天冬酶-8的切割,并且zlETD-fmk对半胱天冬酶-8激活的抑制使GD3诱导的凋亡最小化。

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