Department of Human Genetics and Molecular Medicine, Central University of Punjab Bathinda, Punjab, India.
Indian Council of Medical Research, New Delhi, India.
Med Oncol. 2023 May 11;40(6):174. doi: 10.1007/s12032-023-02037-2.
Oncogenic metabolic reprogramming impacts the abundance of key metabolites that regulate signaling and epigenetics. Metabolic vulnerability in the cancer cell is evident from the Warburg effect. The research on metabolism in the progression and survival of breast cancer (BC) is under focus. Oncogenic signal activation and loss of tumor suppressor are important regulators of tumor cell metabolism. Several intrinsic and extrinsic factors contribute to metabolic reprogramming. The molecular mechanisms underpinning metabolic reprogramming in BC are extensive and only partially defined. Various signaling pathways involved in the metabolism play a significant role in the modulation of BC. Notably, PI3K/AKT/mTOR pathway, lactate-ERK/STAT3 signaling, loss of the tumor suppressor Ras, Myc, oxidative stress, activation of the cellular hypoxic response and acidosis contribute to different metabolic reprogramming phenotypes linked to enhanced glycolysis. The alterations in mitochondrial genes have also been elaborated upon along with their functional implications. The outcome of these active research areas might contribute to the development of novel therapeutic interventions and the remodeling of known drugs.
致癌代谢重编程影响调节信号和表观遗传学的关键代谢物的丰度。癌细胞中的代谢脆弱性从沃伯格效应中显而易见。乳腺癌(BC)进展和生存中的代谢研究是焦点。致癌信号激活和肿瘤抑制因子失活是肿瘤细胞代谢的重要调节剂。几种内在和外在因素促成了代谢重编程。BC 中代谢重编程的分子机制广泛存在,但仅部分定义。涉及代谢的各种信号通路在调节 BC 中发挥重要作用。值得注意的是,PI3K/AKT/mTOR 通路、乳酸-ERK/STAT3 信号、肿瘤抑制因子 Ras、Myc 的丧失、氧化应激、细胞缺氧反应和酸中毒的激活导致与增强糖酵解相关的不同代谢重编程表型。线粒体基因的改变也得到了阐述,以及它们的功能意义。这些活跃研究领域的结果可能有助于开发新的治疗干预措施和重塑已知药物。