Shah Raj, Chen Suzie
Susan Lehman Cullman Laboratory for Cancer Research, Ernest Mario School of Pharmacy, Department of Chemical Biology, Rutgers University, Piscataway, NJ 08901, USA.
Joint Graduate Program in Toxicology, Rutgers University, Piscataway, NJ 08901, USA.
Cancers (Basel). 2020 Sep 14;12(9):2624. doi: 10.3390/cancers12092624.
Aberrant glutamatergic signaling has been implicated in altered metabolic activity and the demand to synthesize biomass in several types of cancer including melanoma. In the last decade, there has been a significant contribution to our understanding of metabolic pathways. An increasing number of studies are now emphasizing the importance of glutamate functioning as a signaling molecule and a building block for cancer progression. To that end, our group has previously illustrated the role of glutamatergic signaling mediated by metabotropic glutamate receptor 1 (GRM1) in neoplastic transformation of melanocytes in vitro and spontaneous development of metastatic melanoma in vivo. Glutamate, the natural ligand of GRM1, is one of the most abundant amino acids in humans and the predominant excitatory neurotransmitter in the central nervous system. Elevated levels of glutaminolytic mitochondrial tricarboxylic acid (TCA) cycle intermediates, especially glutamate, have been reported in numerous cancer cells. Herein, we highlight and critically review metabolic bottlenecks that are prevalent during tumor evolution along with therapeutic implications of limiting glutamate bioavailability in tumors.
异常的谷氨酸能信号传导与包括黑色素瘤在内的几种癌症的代谢活性改变和生物量合成需求有关。在过去十年中,我们对代谢途径的理解有了重大进展。现在越来越多的研究强调谷氨酸作为信号分子和癌症进展的组成部分的重要性。为此,我们小组之前已经阐明了代谢型谷氨酸受体1(GRM1)介导的谷氨酸能信号传导在体外黑素细胞的肿瘤转化和体内转移性黑色素瘤的自发发展中的作用。GRM1的天然配体谷氨酸是人体内最丰富的氨基酸之一,也是中枢神经系统中主要的兴奋性神经递质。在许多癌细胞中都报道了谷氨酰胺分解线粒体三羧酸(TCA)循环中间体水平升高,尤其是谷氨酸。在此,我们重点介绍并批判性地回顾肿瘤进化过程中普遍存在的代谢瓶颈,以及限制肿瘤中谷氨酸生物利用度的治疗意义。