Fodor Tamás, Szántó Magdolna, Abdul-Rahman Omar, Nagy Lilla, Dér Ádám, Kiss Borbála, Bai Peter
Department of Medical Chemistry, Faculty of Medicine, University of Debrecen, Debrecen, H-4032, Hungary.
MTA-DE Cell Biology and Signaling Research Group, Debrecen, H-4032, Hungary.
PLoS One. 2016 Feb 26;11(2):e0150232. doi: 10.1371/journal.pone.0150232. eCollection 2016.
Cancer cells are characterized by metabolic alterations, namely, depressed mitochondrial oxidation, enhanced glycolysis and pentose phosphate shunt flux to support rapid cell growth, which is called the Warburg effect. In our study we assessed the metabolic consequences of a joint treatment of MCF-7 breast cancer cells with AICAR, an inducer of AMP-activated kinase (AMPK) jointly with methotrexate (MTX), a folate-analog antimetabolite that blunts de novo nucleotide synthesis. MCF7 cells, a model of breast cancer cells, were resistant to the individual application of AICAR or MTX, however combined treatment of AICAR and MTX reduced cell proliferation. Prolonged joint application of AICAR and MTX induced AMPK and consequently enhanced mitochondrial oxidation and reduced the rate of glycolysis. These metabolic changes suggest an anti-Warburg rearrangement of metabolism that led to the block of the G1/S and the G2/M transition slowing down cell cycle. The slowdown of cell proliferation was abolished when mitotropic transcription factors, PGC-1α, PGC-1β or FOXO1 were silenced. In human breast cancers higher expression of AMPKα and FOXO1 extended survival. AICAR and MTX exerts similar additive antiproliferative effect on other breast cancer cell lines, such as SKBR and 4T1 cells, too. Our data not only underline the importance of Warburg metabolism in breast cancer cells but nominate the AICAR+MTX combination as a potential cytostatic regime blunting Warburg metabolism. Furthermore, we suggest the targeting of AMPK and FOXO1 to combat breast cancer.
癌细胞的特征是代谢改变,即线粒体氧化受抑、糖酵解增强以及磷酸戊糖途径通量增加,以支持细胞快速生长,这被称为瓦伯格效应。在我们的研究中,我们评估了用AICAR(一种AMP激活激酶(AMPK)的诱导剂)与甲氨蝶呤(MTX,一种叶酸类似物抗代谢物,可抑制从头核苷酸合成)联合处理MCF-7乳腺癌细胞的代谢后果。MCF7细胞作为乳腺癌细胞模型,对单独应用AICAR或MTX具有抗性,然而AICAR和MTX联合处理可降低细胞增殖。长时间联合应用AICAR和MTX可诱导AMPK,从而增强线粒体氧化并降低糖酵解速率。这些代谢变化表明代谢发生了抗瓦伯格重排,导致G1/S期和G2/M期转换受阻,细胞周期减慢。当有丝分裂转录因子PGC-1α、PGC-1β或FOXO1沉默时,细胞增殖的减慢被消除。在人类乳腺癌中,AMPKα和FOXO1的高表达可延长生存期。AICAR和MTX对其他乳腺癌细胞系,如SKBR和4T1细胞,也具有类似的相加抗增殖作用。我们的数据不仅强调了瓦伯格代谢在乳腺癌细胞中的重要性,还将AICAR+MTX组合指定为一种潜在的抑制瓦伯格代谢的细胞抑制方案。此外,我们建议靶向AMPK和FOXO1来对抗乳腺癌。