Reprogramming of glutamine metabolism and its impact on immune response in the tumor microenvironment

被引:0
作者
Guofeng Ma
Zhilei Zhang
Peng Li
Zhao Zhang
Manqin Zeng
Zhijuan Liang
Dan Li
Liping Wang
Yuanbin Chen
Ye Liang
Haitao Niu
机构
[1] The Affiliated Hospital of Qingdao University,Department of Urology
[2] The Affiliated Hospital of Qingdao University,Key Laboratory, Department of Urology and Andrology
[3] The Affiliated Hospital of Qingdao University,Department of Pathology
来源
Cell Communication and Signaling | / 20卷
关键词
Glutamine metabolism; Reprogramming; Immune response; Tumor microenvironment; Immunity; Glutamine metabolism inhibitors;
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摘要
Metabolic reprogramming and immune escape play a major role in tumorigenesis. Increasing number of studies have shown that reprogramming of glutamine metabolism is a putative determinant of the anti-tumor immune response in the tumor microenvironment (TME). Usually, the predatory uptake of glutamine by tumor cells in the TME results in the limited utilization of glutamine by immune cells and affects the anti-tumor immune response. The cell-programmed glutamine partitioning also affects the anti-tumor immune response. However, the reprogramming of glutamine metabolism in tumors modulates immune escape by regulating tumor PD-L1 expression. Likewise, the reprogramming of glutamine metabolism in the immune cells also affects their immune function. Additionally, different types of glutamine metabolism inhibitors extensively regulate the immune cells in the TME while suppressing tumor cell proliferation. Herein, we discuss how metabolic reprogramming of tumor and immune cells regulates anti-tumor immune responses, as well as functional changes in different immune cells in the context of targeting tumor glutamine metabolism, which can better explain the potential of targeting glutamine metabolism in combination with immunotherapy for cancer.
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  • [31] Yan X(2008)Myc regulates a transcriptional program that stimulates mitochondrial glutaminolysis and leads to glutamine addiction Proc Natl Acad Sci USA 32 1991-347
  • [32] Cao Y(2010)Phosphate-activated glutaminase (GLS2), a p53-inducible regulator of glutamine metabolism and reactive oxygen species Proc Natl Acad Sci USA 36 761-219
  • [33] Bao T(2013)The mutant p53 mouse as a pre-clinical model Oncogene 11 440-437
  • [34] Li G(2017)Tumor-associated mutant p53 promotes cancer cell survival upon glutamine deprivation through p21 induction Oncogene 485 e4715-176
  • [35] Gu S(2011)RAS oncogenes: weaving a tumorigenic web Nat Rev Cancer 4 523-643
  • [36] Xiong K(2017)Glutamine deprivation sensitizes human breast cancer MDA-MB-231 cells to TRIAL-mediated apoptosis Biochem Biophys Res Commun 7 411-906.e895
  • [37] Xiao T(2009)Glutamine deprivation induces abortive s-phase rescued by deoxyribonucleotides in k-ras transformed fibroblasts PLoS ONE 157 2554-4749
  • [38] Kaur BP(2011)Oncogenic K-Ras decouples glucose and glutamine metabolism to support cancer cell growth Mol Syst Biol 111 335-2522S
  • [39] Secord E(2000)The expression and distribution of the hypoxia-inducible factors HIF-1alpha and HIF-2alpha in normal human tissues, cancers, and tumor-associated macrophages Am J Pathol 11 207-1857
  • [40] Bonilla FA(2014)Loss of the tumor suppressor LKB1 promotes metabolic reprogramming of cancer cells via HIF-1α Proc Natl Acad Sci USA 18 432-401