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首页> 外文期刊>Molecular biology of the cell >Yeast cells lacking the CIT1-encoded mitochondrial citrate synthase are hypersusceptible to heat- or aging-induced apoptosis
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Yeast cells lacking the CIT1-encoded mitochondrial citrate synthase are hypersusceptible to heat- or aging-induced apoptosis

机译:缺乏CIT1编码的线粒体柠檬酸合酶的酵母细胞对热诱导或衰老诱导的凋亡高度敏感

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摘要

In Saccharomyces cerevisiae, the initial reaction of the tricarboxylic acid cycle is catalyzed by the mitochondrial citrate synthase Cit1. The function of Cit1 has previously been studied mainly in terms of acetate utilization and metabolon construction. Here, we report the relationship between the function of Cit1 and apoptosis. Yeast cells with cit1 deletion showed a temperature-sensitive growth phenotype, and they displayed a rapid loss in viability associated with typical apoptotic hallmarks, i.e., reactive oxygen species (ROS) accumulation and nuclear fragmentation, DNA breakage, and phosphatidylserine translocation, when exposed to heat stress. On long-term cultivation, cit1 null strains showed increased potentials for both aging-induced apoptosis and adaptive regrowth. Activation of the metacaspase Yca1 was detected during heat- or aging-induced apoptosis in citl null strains, and accordingly, deletion of YCA1 suppressed the apoptotic phenotype caused by citl null mutation. Cells with citl deletion showed higher tendency toward glutathione (GSH) depletion and subsequent ROS accumulation than the wild type, which was rescued by exogenous GSH, glutamate, or glutathione disulfide (GSSG). These results led us to conclude that GSH deficiency in citl null cells is caused by an insufficient supply of glutamate necessary for biosynthesis of GSH rather than the depletion of reducing power required for reduction of GSSG to GSH.
机译:在酿酒酵母中,三羧酸循环的初始反应被线粒体柠檬酸合酶Cit1催化。以前主要在乙酸盐利用和代谢产物构建方面研究了Cit1的功能。在这里,我们报告Cit1的功能和凋亡之间的关系。带有cit1缺失的酵母细胞表现出对温度敏感的生长表型,暴露于典型的凋亡标志后,它们的生存能力迅速降低,即活性氧(ROS)积累和核碎裂,DNA断裂以及磷脂酰丝氨酸易位。热应激。在长期培养中,cit1 null菌株显示出衰老诱导的凋亡和适应性再生长的潜力增加。在高温或衰老诱导的citl null菌株凋亡过程中检测到metacaspase Yca1的激活,因此,YCA1的缺失抑制了citl null突变引起的细胞凋亡表型。与野生型相比,具有胞嘧啶缺失的细胞显示出更高的谷胱甘肽(GSH)消耗趋势和随后的ROS积累趋势,而野生型则通过外源GSH,谷氨酸或二硫代谷胱甘肽来挽救。这些结果使我们得出结论,胞空细胞中GSH的缺乏是由GSH的生物合成所必需的谷氨酸供应不足引起的,而不是由于将GSSG还原为GSH所需要的还原能力的降低而引起的。

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