Yang Lifeng, Venneti Sriram, Nagrath Deepak
Laboratory for Systems Biology of Human Diseases, Rice University, Houston, Texas 77005.
Department of Chemical and Biomolecular Engineering, Rice University, Houston, Texas 77005.
Annu Rev Biomed Eng. 2017 Jun 21;19:163-194. doi: 10.1146/annurev-bioeng-071516-044546. Epub 2017 Mar 8.
Glutamine is the most abundant circulating amino acid in blood and muscle and is critical for many fundamental cell functions in cancer cells, including synthesis of metabolites that maintain mitochondrial metabolism; generation of antioxidants to remove reactive oxygen species; synthesis of nonessential amino acids (NEAAs), purines, pyrimidines, and fatty acids for cellular replication; and activation of cell signaling. In light of the pleiotropic role of glutamine in cancer cells, a comprehensive understanding of glutamine metabolism is essential for the development of metabolic therapeutic strategies for targeting cancer cells. In this article, we review oncogene-, tumor suppressor-, and tumor microenvironment-mediated regulation of glutamine metabolism in cancer cells. We describe the mechanism of glutamine's regulation of tumor proliferation, metastasis, and global methylation. Furthermore, we highlight the therapeutic potential of glutamine metabolism and emphasize that clinical application of in vivo assessment of glutamine metabolism is critical for identifying new ways to treat patients through glutamine-based metabolic therapy.
谷氨酰胺是血液和肌肉中含量最丰富的循环氨基酸,对癌细胞的许多基本细胞功能至关重要,包括维持线粒体代谢的代谢物合成;产生抗氧化剂以清除活性氧;合成非必需氨基酸(NEAAs)、嘌呤、嘧啶和脂肪酸用于细胞复制;以及激活细胞信号传导。鉴于谷氨酰胺在癌细胞中的多效性作用,全面了解谷氨酰胺代谢对于开发针对癌细胞的代谢治疗策略至关重要。在本文中,我们综述了癌基因、肿瘤抑制因子和肿瘤微环境介导的癌细胞中谷氨酰胺代谢的调节。我们描述了谷氨酰胺调节肿瘤增殖、转移和整体甲基化的机制。此外,我们强调了谷氨酰胺代谢的治疗潜力,并强调体内谷氨酰胺代谢评估的临床应用对于通过基于谷氨酰胺的代谢疗法确定治疗患者的新方法至关重要。