ATP Supply from Cytosol to Mitochondria Is an Additional Role of Aerobic Glycolysis to Prevent Programmed Cell Death by Maintenance of Mitochondrial Membrane Potential.

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metabolites Pub Date : 2025-07-07 DOI:10.3390/metabo15070461
Akane Sawai, Takeo Taniguchi, Kohsuke Noguchi, Taisuke Seike, Nobuyuki Okahashi, Masak Takaine, Fumio Matsuda
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引用次数: 0

Abstract

Eukaryotic cells generate ATP primarily via oxidative and substrate-level phosphorylation. Despite the superior efficiency of oxidative phosphorylation, eukaryotic cells often use both pathways as aerobic glycolysis, even in the presence of oxygen. However, its role in cell survival remains poorly understood. Objectives: In this study, aerobic glycolysis was compared between the Warburg effect in breast cancer cells (MCF7) and the Crabtree effect in a laboratory strain of Saccharomyces cerevisiae (S288C). Methods: The metabolic adaptations of MCF7 and S288C cells were compared following treatment with electron transport chain inhibitors, including FCCP, antimycin A, and oligomycin. Results: MCF7 and S288C cells exhibited strikingly similar metabolic rewiring toward substrate-level phosphorylation upon inhibitor treatment, suggesting that mitochondrial oxidative phosphorylation and cytosolic substrate-level phosphorylation communicate through a common mechanism. Measurement of mitochondrial membrane potential (MMP) and ATP concentrations further indicated that cytosolic ATP was transported into the mitochondria under conditions of reduced electron transport chain activity. This ATP was likely utilized in the reverse mode of H+/ATPase to maintain MMP, which contributed to the avoidance of programmed cell death. Conclusions: These results suggest that the ATP supply to mitochondria plays a conserved role in aerobic glycolysis in yeast and mammalian cancer cells. This mechanism likely contributes to cell survival under conditions of fluctuating oxygen availability.

ATP从细胞质向线粒体的供应是有氧糖酵解的一个额外作用,通过维持线粒体膜电位来防止程序性细胞死亡。
真核细胞主要通过氧化和底物水平磷酸化产生ATP。尽管氧化磷酸化具有优越的效率,真核细胞经常使用这两种途径作为有氧糖酵解,即使在氧气存在的情况下。然而,它在细胞存活中的作用仍然知之甚少。目的:在这项研究中,比较了乳腺癌细胞(MCF7)的Warburg效应和实验室菌株酿酒酵母(S288C)的Crabtree效应。方法:比较电子传递链抑制剂(FCCP、抗霉素A和寡霉素)对MCF7和S288C细胞代谢适应性的影响。结果:MCF7和S288C细胞在抑制剂处理后对底物水平磷酸化表现出惊人的相似的代谢重新连接,这表明线粒体氧化磷酸化和细胞质底物水平磷酸化通过共同的机制进行交流。线粒体膜电位(MMP)和ATP浓度的测定进一步表明,在电子传递链活性降低的情况下,胞质内ATP被转运到线粒体。这种ATP可能以H+/ATP酶的反向模式被利用来维持MMP,这有助于避免程序性细胞死亡。结论:这些结果表明,线粒体的ATP供应在酵母和哺乳动物癌细胞的有氧糖酵解中起保守作用。这一机制可能有助于细胞在氧气可用性波动的条件下存活。
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来源期刊
Metabolites
Metabolites Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
5.70
自引率
7.30%
发文量
1070
审稿时长
17.17 days
期刊介绍: Metabolites (ISSN 2218-1989) is an international, peer-reviewed open access journal of metabolism and metabolomics. Metabolites publishes original research articles and review articles in all molecular aspects of metabolism relevant to the fields of metabolomics, metabolic biochemistry, computational and systems biology, biotechnology and medicine, with a particular focus on the biological roles of metabolites and small molecule biomarkers. Metabolites encourages scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on article length. Sufficient experimental details must be provided to enable the results to be accurately reproduced. Electronic material representing additional figures, materials and methods explanation, or supporting results and evidence can be submitted with the main manuscript as supplementary material.
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