Analysis of a mitochondrial apoptotic pathway using Bid-targeted ribozymes in human MCF7 cells in the absence of a caspase-3-dependent pathway.

Reiko Onuki, Hiroaki Kawasaki, Tadashi Baba, Kazunari Taira
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引用次数: 14

Abstract

In normal cells, tumor necrosis factor-alpha (TNF-alpha) activates caspase 8 in both mitochondrion-dependent and mitochondrion-independent apoptotic pathways. It is believed that these two pathways converge, with resultant activation of effector caspases, such as caspase 6 and caspase 7. However, the precise mechanism of the activation of caspases 6 and 7 remains unknown. In this study, in order to focus on the mitochondrion-dependent pathway, we employed MCF7 human breast carcinoma cells, which do not have a functional mitochondrion-independent (caspase 3-dependent) pathway. We specifically targeted the transcript of Bid, a proapoptotic facilitator that is a substrate of caspase 8 in the mitochondrial pathway. In the TNF-alpha-treated MCF7 cells that expressed Bid-targeted ribozymes, the release of cytochrome c and the activation of caspase 9, but not of caspase 8, was delayed. Furthermore, the proteolysis of procaspase 7 was also delayed in Bid ribozyme-expressing cells. Because MCF7 cells are caspase 3 deficient, the direct cross-talk between caspase 8 and caspase 3 does not take place. Therefore, it became clear for the first time that caspase 9 by itself can activate caspase 7 in the absence of the caspase 3-dependent pathway in TNF-alpha-induced apoptosis by the use of specific ribozymes.

在缺乏caspase-3依赖性途径的情况下,利用bid靶向核酶在人MCF7细胞中分析线粒体凋亡途径
在正常细胞中,肿瘤坏死因子- α (tnf - α)在线粒体依赖性和线粒体非依赖性凋亡途径中激活caspase 8。据信,这两种途径汇合,从而激活效应caspase,如caspase 6和caspase 7。然而,caspases 6和caspases 7激活的确切机制尚不清楚。在本研究中,为了重点研究线粒体依赖途径,我们采用了MCF7人乳腺癌细胞,该细胞不具有功能性的线粒体独立(caspase 3依赖)途径。我们专门针对Bid的转录本,Bid是线粒体途径中caspase 8的底物,是一种促凋亡的促进剂。在tnf α处理的表达bid靶向核酶的MCF7细胞中,细胞色素c的释放和caspase 9的激活被延迟,而caspase 8则没有。此外,在表达Bid核酶的细胞中,procaspase 7的蛋白水解也被延迟。由于MCF7细胞缺乏caspase 3,因此caspase 8和caspase 3之间不会发生直接的串扰。因此,首次明确了在tnf α诱导的凋亡中,caspase 9本身可以通过特异性核酶激活caspase 7,而caspase 3依赖途径缺失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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