Wetzel Tanner J, Erfan Sheila C, Figueroa Lucas D, Wheeler Leighton M, Ananieva Elitsa A
Ananieva Laboratory, Biochemistry and Nutrition Department, Des Moines University, Des Moines, IA, United States.
Front Oncol. 2023 May 19;13:1186539. doi: 10.3389/fonc.2023.1186539. eCollection 2023.
Arginine, glutamine, and the branched chain amino acids (BCAAs) are a focus of increased interest in the field of oncology due to their importance in the metabolic reprogramming of cancer cells. In the tumor microenvironment (TME), these amino acids serve to support the elevated biosynthetic and energy demands of cancer cells, while simultaneously maintaining the growth, homeostasis, and effector function of tumor-infiltrating immune cells. To escape immune destruction, cancer cells utilize a variety of mechanisms to suppress the cytotoxic activity of effector T cells, facilitating T cell exhaustion. One such mechanism is the ability of cancer cells to overexpress metabolic enzymes specializing in the catabolism of arginine, glutamine, and the BCAAs in the TME. The action of such enzymes supplies cancer cells with metabolic intermediates that feed into the TCA cycle, supporting energy generation, or providing precursors for purine, pyrimidine, and polyamine biosynthesis. Armed with substantial metabolic flexibility, cancer cells redirect amino acids from the TME for their own advantage and growth, while leaving the local infiltrating effector T cells deprived of essential nutrients. This review addresses the metabolic pressure that cancer cells exert over immune cells in the TME by up-regulating amino acid metabolism, while discussing opportunities for targeting amino acid metabolism for therapeutic intervention. Special emphasis is given to the crosstalk between arginine, glutamine, and BCAA metabolism in affording cancer cells with metabolic dominance in the TME.
精氨酸、谷氨酰胺和支链氨基酸(BCAAs)因其在癌细胞代谢重编程中的重要性而成为肿瘤学领域日益关注的焦点。在肿瘤微环境(TME)中,这些氨基酸有助于满足癌细胞对生物合成和能量的更高需求,同时维持肿瘤浸润免疫细胞的生长、稳态和效应功能。为了逃避免疫破坏,癌细胞利用多种机制抑制效应T细胞的细胞毒性活性,促使T细胞耗竭。其中一种机制是癌细胞能够在TME中过度表达专门参与精氨酸、谷氨酰胺和BCAAs分解代谢的代谢酶。这些酶的作用为癌细胞提供代谢中间体,这些中间体进入三羧酸循环,支持能量生成,或为嘌呤、嘧啶和多胺生物合成提供前体。癌细胞具有强大的代谢灵活性,它们将TME中的氨基酸重新导向以利于自身的优势和生长,而使局部浸润的效应T细胞缺乏必需营养物质。本综述阐述了癌细胞通过上调氨基酸代谢对TME中的免疫细胞施加的代谢压力,同时讨论了针对氨基酸代谢进行治疗干预的机会。特别强调了精氨酸、谷氨酰胺和BCAAs代谢之间的相互作用,这种相互作用使癌细胞在TME中具有代谢优势。