Mycielska M E, Milenkovic V M, Wetzel C H, Rümmele P, Geissler E K
Department of Surgery, University Hospital Regensburg, Franz- Josef-Strauss Allee 11, 93053 Regensburg, Germany.
Curr Mol Med. 2015;15(10):884-91. doi: 10.2174/1566524016666151123104855.
Citrate is one of the major substrates for intracellular metabolism. The extracellular level of citrate is stable in blood but varies locally, with slightly increased levels in brain and high levels in prostate. Recent metabolomics research suggests that citrate level is a potential harbinger of different pathophysiological states; its decrease has been correlated with male infertility, brain diseases and metastatic cancer. In this review we discuss the role of citrate as an energy substrate for sperm. We also review the function of citrate released by astrocytes in the normal operation of neurons, and consequently we suggest a potential role of neuronal plasma membrane citrate transporters in mental disorders. Finally, we review recent relevant publications studying blood, urine and tissue citrate levels in cancer patients and hypothesize that extracellular citrate supports cancer cell metabolism critical for metastasis. Despite the importance of extracellular citrate in physiological and pathophysiological processes, surprisingly little is known about citrate synthesis in specialized cells, or about citrate transporters controlling citrate movement across various membranes. Determination of the molecular origin of citrate transporters in astrocytes, sperm and cancer cells could offer novel therapeutic targets and the possibility to pharmacologically regulate citrate release and uptake for preventing male infertility, treating mental diseases and targeting cancer.
柠檬酸是细胞内代谢的主要底物之一。血液中柠檬酸的细胞外水平稳定,但局部会有所变化,在大脑中略有升高,在前列腺中水平较高。最近的代谢组学研究表明,柠檬酸水平是不同病理生理状态的潜在预兆;其降低与男性不育、脑部疾病和转移性癌症有关。在本综述中,我们讨论了柠檬酸作为精子能量底物的作用。我们还综述了星形胶质细胞释放的柠檬酸在神经元正常运作中的功能,因此我们提出神经元质膜柠檬酸转运体在精神障碍中的潜在作用。最后,我们综述了最近研究癌症患者血液、尿液和组织中柠檬酸水平的相关出版物,并假设细胞外柠檬酸支持对转移至关重要的癌细胞代谢。尽管细胞外柠檬酸在生理和病理生理过程中很重要,但令人惊讶的是,我们对特殊细胞中柠檬酸的合成,或控制柠檬酸跨各种膜移动的柠檬酸转运体知之甚少。确定星形胶质细胞、精子和癌细胞中柠檬酸转运体的分子来源,可能会提供新的治疗靶点,以及从药理学上调节柠檬酸释放和摄取以预防男性不育、治疗精神疾病和靶向癌症的可能性。