Department of Immuno-Oncology, Beckman Research Institute, City of Hope National Medical Center, Duarte, CA, USA.
Sorrento Therapeutics, San Diego, CA, USA.
Nat Rev Cancer. 2023 Mar;23(3):115-134. doi: 10.1038/s41568-022-00537-3. Epub 2023 Jan 3.
Reprogrammed metabolism is a hallmark of cancer. However, the metabolic dependency of cancer, from tumour initiation through disease progression and therapy resistance, requires a spectrum of distinct reprogrammed cellular metabolic pathways. These pathways include aerobic glycolysis, oxidative phosphorylation, reactive oxygen species generation, de novo lipid synthesis, fatty acid β-oxidation, amino acid (notably glutamine) metabolism and mitochondrial metabolism. This Review highlights the central roles of signal transducer and activator of transcription (STAT) proteins, notably STAT3, STAT5, STAT6 and STAT1, in orchestrating the highly dynamic metabolism not only of cancer cells but also of immune cells and adipocytes in the tumour microenvironment. STAT proteins are able to shape distinct metabolic processes that regulate tumour progression and therapy resistance by transducing signals from metabolites, cytokines, growth factors and their receptors; defining genetic programmes that regulate a wide range of molecules involved in orchestration of metabolism in cancer and immune cells; and regulating mitochondrial activity at multiple levels, including energy metabolism and lipid-mediated mitochondrial integrity. Given the central role of STAT proteins in regulation of metabolic states, they are potential therapeutic targets for altering metabolic reprogramming in cancer.
代谢重编程是癌症的一个标志。然而,从肿瘤起始到疾病进展和治疗耐药,癌症的代谢依赖性需要一系列不同的重编程细胞代谢途径。这些途径包括有氧糖酵解、氧化磷酸化、活性氧物种生成、从头脂质合成、脂肪酸β氧化、氨基酸(特别是谷氨酰胺)代谢和线粒体代谢。本综述强调了信号转导和转录激活因子(STAT)蛋白,特别是 STAT3、STAT5、STAT6 和 STAT1,在协调肿瘤微环境中癌细胞以及免疫细胞和脂肪细胞的高度动态代谢中的核心作用。STAT 蛋白能够通过从代谢物、细胞因子、生长因子及其受体传递信号来塑造不同的代谢过程,从而调节肿瘤的进展和治疗耐药性;定义调节涉及癌症和免疫细胞代谢协调的广泛分子的遗传程序;并在多个层面上调节线粒体活性,包括能量代谢和脂质介导的线粒体完整性。鉴于 STAT 蛋白在调节代谢状态中的核心作用,它们是改变癌症代谢重编程的潜在治疗靶点。