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线粒体DNA缺失细胞中与凋亡相关的线粒体功能紊乱。

Apoptosis-associated derangement of mitochondrial function in cells lacking mitochondrial DNA.

作者信息

Marchetti P, Susin S A, Decaudin D, Gamen S, Castedo M, Hirsch T, Zamzami N, Naval J, Senik A, Kroemer G

机构信息

CNRS-UPR420, Villejuif, France.

出版信息

Cancer Res. 1996 May 1;56(9):2033-8.

PMID:8616847
Abstract

U937 cells lacking mitochondrial DNA (rho [symbol: see text] cells) are auxotrophic for uridine and pyruvate, hypersensitive to hypoglycemic conditions, and resistant to antimycin A-induced apoptosis. In spite of their obvious metabolic defects, rho [symbol: see text] cells possess a normal mitochondrial transmembrane potential, as well as near-normal capacity to generate superoxide anion after menadione treatment. Similarly to rho + controls, rho [symbol: see text] cells undergo apoptosis in response to tumor necrosis factor-alpha plus cycloheximide. Detailed comparison of the apoptotic process in rho + and rho [symbol: see text] cells reveals essentially the same sequence of events. In response to tumor necrosis factor/cycloheximide, cells first lose their mitochondrial transmembrane potential (delta psi m) and then manifest late apoptotic alterations, such as generation of reactive oxygen species and DNA fragmentation. Experiments involving isolated mitochondria from rho + and rho [symbol: see text] cells confirm that rho [symbol: see text] mitochondria can be induced to undergo permeability transition, a process thought to account for the pre-apoptotic delta psi m disruption in cells. Like rho + mitochondria, rho [symbol: see text] mitochondria contain a pre-formed soluble factor that is capable of inducing chromatin condensation in isolated nuclei in vitro. This factor is released from mitochondria upon induction of permeability transition by calcium or the specific ligand of the adenine nucleotide translocator atractyloside. In conclusion, it appears that all structures involved in the maintenance and pre-apoptotic disruption of the delta psi m, as well as a mitochondrial apoptotic factor(s), are present in rho [symbol: see text] cells and thus are controlled by the nuclear rather than by the mitochondrial genome. These findings underline the contribution of mitochondria to the apoptotic process.

摘要

缺乏线粒体DNA的U937细胞(ρ⁰细胞)对尿苷和丙酮酸是营养缺陷型,对低血糖条件高度敏感,并且对抗霉素A诱导的凋亡具有抗性。尽管它们存在明显的代谢缺陷,但ρ⁰细胞具有正常的线粒体跨膜电位,以及在甲萘醌处理后产生超氧阴离子的能力接近正常。与ρ⁺对照相似,ρ⁰细胞在肿瘤坏死因子-α加环己酰亚胺作用下会发生凋亡。对ρ⁺和ρ⁰细胞凋亡过程的详细比较揭示了基本相同的事件序列。在肿瘤坏死因子/环己酰亚胺作用下,细胞首先失去线粒体跨膜电位(Δψm),然后表现出晚期凋亡改变,如活性氧的产生和DNA片段化。涉及从ρ⁺和ρ⁰细胞分离出线粒体的实验证实,ρ⁰线粒体可被诱导发生通透性转变,这一过程被认为是细胞凋亡前Δψm破坏的原因。与ρ⁺线粒体一样,ρ⁰线粒体含有一种预先形成的可溶性因子,该因子能够在体外诱导分离的细胞核中的染色质凝聚。当通过钙或腺嘌呤核苷酸转位体特异性配体苍术苷诱导通透性转变时,这种因子会从线粒体中释放出来。总之,似乎参与维持和凋亡前破坏Δψm的所有结构,以及一种线粒体凋亡因子,都存在于ρ⁰细胞中,因此受核基因组而非线粒体基因组的控制。这些发现强调了线粒体对凋亡过程的贡献。

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