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Fatty acid oxidation and carnitine palmitoyltransferase I: emerging therapeutic targets in cancer

Cell Death and Disease · 2016 · Vol. 7(5) · pp. e2226–e2226
Qian QuFanning ZengXiaonan LiuQiming J. WangFeihong Deng

Abstract

Tumor cells exhibit unique metabolic adaptations that are increasingly viewed as potential targets for novel and specific cancer therapies. Among these targets, the carnitine palmitoyltransferase system is responsible for delivering the long-chain fatty acid (FA) from cytoplasm into mitochondria for oxidation, where carnitine palmitoyltransferase I (CPTI) catalyzes the rate-limiting step of fatty acid oxidation (FAO). With increasing understanding of the crucial role had by fatty acid oxidation in cancer, CPTI has received renewed attention as a pivotal mediator in cancer metabolic mechanism. CPTI activates FAO and fuels cancer growth via ATP and NADPH production, constituting an essential part of cancer metabolism adaptation. Moreover, CPTI also functionally intertwines with other key pathways and factors to regulate gene expression and apoptosis of cancer cell. Here, we summarize recent findings and update the current understanding of FAO and CPTI in cancer and provide theoretical basis for this enzyme as an emerging potential molecular target in cancer therapeutic intervention.

Cancer, Lipids, and MetabolismCancer, Hypoxia, and MetabolismRNA modifications and cancerCarnitineCarnitine O-palmitoyltransferaseBeta oxidationCarnitine palmitoyltransferase ICancer cellFatty acidMediatorFatty acid metabolismCancerBiochemistry

MeSH terms

Adenosine TriphosphateAntineoplastic AgentsCarnitineCarnitine O-PalmitoyltransferaseCytoplasmFatty AcidsHumansIsoenzymesMitochondriaNADPNeoplasmsOxidation-ReductionGene Expression Regulation, NeoplasticLipid MetabolismMolecular Targeted Therapy

Funding

  • National Natural Science Foundation of China
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