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Use of Human Cancer Cell Lines Mitochondria to Explore the Mechanisms of BH3 Peptides and ABT-737-Induced Mitochondrial Membrane Permeabilization

机译:利用人类癌细胞系线粒体探索BH3肽和ABT-737诱导的线粒体膜通透性的机制

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摘要

Current limitations of chemotherapy include toxicity on healthy tissues and multidrug resistance of malignant cells. A number of recent anti-cancer strategies aim at targeting the mitochondrial apoptotic machinery to induce tumor cell death. In this study, we set up protocols to purify functional mitochondria from various human cell lines to analyze the effect of peptidic and xenobiotic compounds described to harbour either Bcl-2 inhibition properties or toxic effects related to mitochondria. Mitochondrial inner and outer membrane permeabilization were systematically investigated in cancer cell mitochondria versus non-cancerous mitochondria. The truncated (t-) Bid protein, synthetic BH3 peptides from Bim and Bak, and the small molecule ABT-737 induced a tumor-specific and OMP-restricted mitochondrio-toxicity, while compounds like HA-14.1, YC-137, Chelerythrine, Gossypol, TW-37 or EM20-25 did not. We found that ABT-737 can induce the Bax-dependent release of apoptotic proteins (cytochrome c, Smac/Diablo and Omi/HtrA2 but not AIF) from various but not all cancer cell mitochondria. Furthermore, ABT-737 addition to isolated cancer cell mitochondria induced oligomerization of Bax and/or Bak monomers already inserted in the mitochondrial membrane. Finally immunoprecipatations indicated that ABT-737 induces Bax, Bak and Bim desequestration from Bcl-2 and Bcl-xL but not from Mcl-1L. This study investigates for the first time the mechanism of action of ABT-737 as a single agent on isolated cancer cell mitochondria. Hence, this method based on MOMP (mitochondrial outer membrane permeabilization) is an interesting screening tool, tailored for identifying Bcl-2 antagonists with selective toxicity profile against cancer cell mitochondria but devoid of toxicity against healthy mitochondria.
机译:当前化学疗法的局限性包括对健康组织的毒性和恶性细胞的多药耐药性。许多最新的抗癌策略旨在靶向线粒体凋亡机制以诱导肿瘤细胞死亡。在这项研究中,我们建立了从各种人类细胞系中纯化功能性线粒体的方案,以分析描述具有Bcl-2抑制特性或与线粒体有关的毒性作用的肽类和异种化合物的作用。系统地研究了癌细胞线粒体与非癌性线粒体中线粒体内膜和外膜的通透性。截短的(t-)Bid蛋白,Bim和Bak的合成BH3肽以及小分子ABT-737诱导了肿瘤特异性和OMP限制的线粒体毒性,而化合物如HA-14.1,YC-137,白屈菜红碱,棉酚,TW-37或EM20-25没有。我们发现,ABT-737可以诱导各种但不是全部癌细胞线粒体的凋亡蛋白(细胞色素c,Smac / Diablo和Omi / HtrA2而不是AIF)的Bax依赖性释放。此外,除分离的癌细胞线粒体外,ABT-737还诱导已经插入线粒体膜中的Bax和/或Bak单体寡聚。最终,免疫沉淀表明ABT-737诱导了来自Bcl-2和Bcl-xL的Bax,Bak和Bim脱存,但没有诱导出Mcl-1L。这项研究首次研究了ABT-737作为单一药物对孤立的癌细胞线粒体的作用机理。因此,这种基于MOMP(线粒体外膜通透性)的方法是一种有趣的筛选工具,专门用于鉴定对癌细胞线粒体具有选择性毒性谱但对健康线粒体没有毒性的Bcl-2拮抗剂。

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