Glutamine synthetase is necessary for sarcoma adaptation to glutamine deprivation and tumor growth

被引:43
作者
Issaq, Sameer H. [1 ]
Mendoza, Arnulfo [1 ]
Fox, Stephen D. [2 ]
Helman, Lee J. [1 ,3 ,4 ,5 ]
机构
[1] NCI, Pediat Oncol Branch, NIH, Bethesda, MD 20892 USA
[2] Leidos Biomed Res Inc, Prot Characterizat Lab, Frederick Natl Lab Canc Res, Frederick, MD USA
[3] Univ Southern Calif, Keck Sch Med, Dept Pediat, Los Angeles, CA 90033 USA
[4] Univ Southern Calif, Keck Sch Med, Dept Med, Los Angeles, CA 90033 USA
[5] Childrens Hosp Los Angeles, Childrens Ctr Canc & Blood Dis, Los Angeles, CA 90027 USA
基金
美国国家卫生研究院;
关键词
CANCER; BIOLOGY; METABOLISM; EXPRESSION; STRATEGIES; INHIBITORS;
D O I
10.1038/s41389-019-0129-z
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Despite a growing body of knowledge about the genomic landscape and molecular pathogenesis of sarcomas, translation of basic discoveries into targeted therapies and significant clinical gains has remained elusive. Renewed interest in altered metabolic properties of cancer cells has led to an exploration of targeting metabolic dependencies as a novel therapeutic strategy. In this study, we have characterized the dependency of human pediatric sarcoma cells on key metabolic substrates and identified a mechanism of adaptation to metabolic stress by examining proliferation and bioenergetic properties of rhabdomyosarcoma and Ewing sarcoma cells under varying concentrations of glucose and glutamine. While all cell lines tested were completely growth-inhibited by lack of glucose, cells adapted to glutamine deprivation, and restored proliferation following an initial period of reduced growth. We show that expression of glutamine synthetase (GS), the enzyme responsible for de novo glutamine synthesis, increased during glutamine deprivation, and that pharmacological or shRNA-mediated GS inhibition abolished proliferation of glutamine-deprived cells, while having no effect on cells grown under normal culture conditions. Moreover, the GS substrates and glutamine precursors glutamate and ammonia restored proliferation of glutamine-deprived cells in a GS-dependent manner, further emphasizing the necessity of GS for adaptation to glutamine stress. Furthermore, pharmacological and shRNA-mediated GS inhibition significantly reduced orthotopic xenograft tumor growth. We also show that glutamine supports sarcoma nucleotide biosynthesis and optimal mitochondrial bioenergetics. Our findings demonstrate that GS mediates proliferation of glutamine-deprived pediatric sarcomas, and suggest that targeting metabolic dependencies of sarcomas should be further investigated as a potential therapeutic strategy.
引用
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页数:12
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