Aconitase 2 inhibits the proliferation of MCF-7 cells promoting mitochondrial oxidative metabolism and ROS/FoxO1-mediated autophagic response

被引:49
作者
Ciccarone, Fabio [1 ]
Di Leo, Luca [1 ,7 ]
Lazzarino, Giacomo [2 ]
Maulucci, Giuseppe [3 ,4 ]
Di Giacinto, Flavio [3 ,4 ]
Tavazzi, Barbara [3 ,5 ]
Ciriolo, Maria Rosa [1 ,6 ]
机构
[1] Univ Roma Tor Vergata, Dept Biol, Via Ric Sci 1, I-00133 Rome, Italy
[2] UniCamillusSt Camillus Int Univ Hlth Sci, Via St Alessandro 8, I-00131 Rome, Italy
[3] Fdn Policlin Univ A Gemelli IRCCS, Largo A Gemelli 8, I-00168 Rome, Italy
[4] Univ Cattolica Sacro Cuore, Inst Phys, Largo F Vito 1, I-00168 Rome, Italy
[5] Univ Cattolica Sacro Cuore, Inst Biochem & Clin Biochem, Largo F Vito 1, I-00168 Rome, Italy
[6] IRCCS San Raffaele Pisana, Via Pisana 235, I-00163 Rome, Italy
[7] Danish Canc Soc, Res Ctr, Unit Cell Stress & Survival, Strandboulevarden 49, DK-2100 Copenhagen, Denmark
关键词
CANCER-CELLS; STRESS; GROWTH; PHOSPHORYLATION; EXPRESSION; MITOPHAGY; APOPTOSIS; GLUCOSE; PROTEIN; CYCLE;
D O I
10.1038/s41416-019-0641-0
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background Deregulation of the tricarboxylic acid cycle (TCA) due to mutations in specific enzymes or defective aerobic metabolism is associated with tumour growth. Aconitase 2 (ACO2) participates in the TCA cycle by converting citrate to isocitrate, but no evident demonstrations of its involvement in cancer metabolism have been provided so far. Methods Biochemical assays coupled with molecular biology, in silico, and cellular tools were applied to circumstantiate the impact of ACO2 in the breast cancer cell line MCF-7 metabolism. Fluorescence lifetime imaging microscopy (FLIM) of NADH was used to corroborate the changes in bioenergetics. Results We showed that ACO2 levels are decreased in breast cancer cell lines and human tumour biopsies. We generated ACO2- overexpressing MCF-7 cells and employed comparative analyses to identify metabolic adaptations. We found that increased ACO2 expression impairs cell proliferation and commits cells to redirect pyruvate to mitochondria, which weakens Warburg-like bioenergetic features. We also demonstrated that the enhancement of oxidative metabolism was supported by mitochondrial biogenesis and FoxO1-mediated autophagy/mitophagy that sustains the increased ROS burst. Conclusions This work identifies ACO2 as a relevant gene in cancer metabolic rewiring of MCF-7 cells, promoting a different utilisation of pyruvate and revealing the potential metabolic vulnerability of ACO2-associated malignancies.
引用
收藏
页码:182 / 193
页数:12
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