Haferkamp Sebastian, Drexler Konstantin, Federlin Marianne, Schlitt Hans J, Berneburg Mark, Adamski Jerzy, Gaumann Andreas, Geissler Edward K, Ganapathy Vadivel, Parkinson E Kenneth, Mycielska Maria E
Department of Dermatology, University Medical Center, Regensburg, Germany.
Department of Conservative Dentistry and Periodontology, University Medical Center, Regensburg, Germany.
Front Cell Dev Biol. 2020 Dec 4;8:602476. doi: 10.3389/fcell.2020.602476. eCollection 2020.
Cancer cells need excess energy and essential nutrients/metabolites not only to divide and proliferate but also to migrate and invade distant organs for metastasis. Fatty acid and cholesterol synthesis, considered a hallmark of cancer for anabolism and membrane biogenesis, requires citrate. We review here potential pathways in which citrate is synthesized and/or supplied to cancer cells and the impact of extracellular citrate on cancer cell metabolism and growth. Cancer cells employ different mechanisms to support mitochondrial activity and citrate synthesis when some of the necessary substrates are missing in the extracellular space. We also discuss the different transport mechanisms available for the entry of extracellular citrate into cancer cells and how citrate as a master metabolite enhances ATP production and fuels anabolic pathways. The available literature suggests that cancer cells show an increased metabolic flexibility with which they tackle changing environmental conditions, a phenomenon crucial for cancer cell proliferation and metastasis.
癌细胞不仅需要额外的能量和必需营养素/代谢物来进行分裂和增殖,还需要它们来迁移和侵袭远处器官以实现转移。脂肪酸和胆固醇的合成被认为是癌症合成代谢和膜生物发生的一个标志,这一过程需要柠檬酸。我们在此综述柠檬酸合成和/或供应给癌细胞的潜在途径,以及细胞外柠檬酸对癌细胞代谢和生长的影响。当细胞外空间中缺少一些必要底物时,癌细胞会采用不同的机制来支持线粒体活性和柠檬酸合成。我们还讨论了细胞外柠檬酸进入癌细胞的不同运输机制,以及柠檬酸作为主要代谢物如何增强ATP生成并为合成代谢途径提供燃料。现有文献表明,癌细胞表现出更高的代谢灵活性,以此应对不断变化的环境条件,这一现象对癌细胞的增殖和转移至关重要。