Kamada Shuhei, Takeiwa Toshihiko, Ikeda Kazuhiro, Horie Kuniko, Inoue Satoshi
Division of Systems Medicine and Gene Therapy, Saitama Medical University, Saitama, Japan.
Department of Urology, Graduate School of Medicine, Chiba University, Chiba, Japan.
Front Cell Dev Biol. 2022 Feb 1;10:717881. doi: 10.3389/fcell.2022.717881. eCollection 2022.
Metabolic alterations are critical events in cancers, which often contribute to tumor pathophysiology. While aerobic glycolysis is a known characteristic of cancer-related metabolism, recent studies have shed light on mitochondria-related metabolic pathways in cancer biology, including oxidative phosphorylation (OXPHOS), amino acid and lipid metabolism, nucleic acid metabolism, and redox regulation. Breast cancer is the most common cancer in women; thus, elucidation of breast cancer-related metabolic alteration will help to develop cancer drugs for many patients. We here aim to define the contribution of mitochondrial metabolism to breast cancer biology. The relevance of OXPHOS in breast cancer has been recently defined by the discovery of COX7RP, which promotes mitochondrial respiratory supercomplex assembly and glutamine metabolism: the latter is also shown to promote nucleic acid and fatty acid biosynthesis as well as ROS defense regulation. In this context, the estrogen-related receptor (ERR) family nuclear receptors and collaborating coactivators peroxisome proliferator-activated receptor-γ coactivator-1 (PGC-1) are essential transcriptional regulators for both energy production and cancer-related metabolism. Summarizing recent findings of mitochondrial metabolism in breast cancer, this review will aim to provide a clue for the development of alternative clinical management by modulating the activities of responsible molecules involved in disease-specific metabolic alterations.
代谢改变是癌症中的关键事件,常常促成肿瘤的病理生理学过程。虽然有氧糖酵解是癌症相关代谢的一个已知特征,但最近的研究揭示了癌症生物学中线粒体相关的代谢途径,包括氧化磷酸化(OXPHOS)、氨基酸和脂质代谢、核酸代谢以及氧化还原调节。乳腺癌是女性中最常见的癌症;因此,阐明与乳腺癌相关的代谢改变将有助于为众多患者开发抗癌药物。我们在此旨在确定线粒体代谢对乳腺癌生物学的作用。最近通过发现COX7RP确定了OXPHOS在乳腺癌中的相关性,COX7RP可促进线粒体呼吸超复合物组装和谷氨酰胺代谢:后者还被证明可促进核酸和脂肪酸生物合成以及活性氧防御调节。在这种情况下,雌激素相关受体(ERR)家族核受体以及协同共激活因子过氧化物酶体增殖物激活受体γ共激活因子-1(PGC-1)是能量产生和癌症相关代谢的重要转录调节因子。总结乳腺癌中线粒体代谢的最新发现,本综述旨在通过调节参与疾病特异性代谢改变的相关分子的活性,为开发替代临床管理方法提供线索。