Carnosine suppresses human glioma cells under normoxic and hypoxic conditions partly via inhibiting glutamine metabolism

被引:0
作者
Yu-jia Fang
Ming Wu
Hai-ni Chen
Tian-tian Wen
Jian-xin Lyu
Yao Shen
机构
[1] Wenzhou Medical University,Key Laboratory of Laboratory Medicine, Ministry of Education, School of Laboratory Medicine and Life sciences
[2] Affiliated People’s Hospital of Hangzhou Medical College,Zhejiang Provincial People’s Hospital
来源
Acta Pharmacologica Sinica | 2021年 / 42卷
关键词
glioma; hypoxia; carnosine; glutamine synthetase; proteasome; tumor metabolism;
D O I
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中图分类号
学科分类号
摘要
L-Carnosine (β-alanyl-L-histidine) is a naturally occurring dipeptide, which has shown broad-spectrum anticancer activity. But the anticancer mechanisms and regulators remain unknown. In this study, we investigated the effects of carnosine on human glioma U87 and U251 cell lines under normoxia (21% O2) and hypoxia (1% O2). We showed that carnosine (25−75 mM) dose-dependently inhibited the proliferation of the glioma cells; carnosine (50 mM) inhibited their colony formation, migration, and invasion capacity. But there was no significant difference in the inhibitory effects of carnosine under normoxia and hypoxia. Treatment with carnosine (50 mM) significantly decreased the expression of glutamine synthetase (GS) at the translation level rather than the transcription level in U87 and U251 cells, both under normoxia and hypoxia. Furthermore, the silencing of GS gene with shRNA and glutamine (Gln) deprivation significantly suppressed the growth, migratory, and invasive potential of the glioma cells. The inhibitory effect of carnosine on U87 and U251 cells was partly achieved by inhibiting the Gln metabolism pathway. Carnosine reduced the expression of GS in U87 and U251 cells by promoting the degradation of GS through the proteasome pathway, shortening the protein half-life, and reducing its stability. Given that targeting tumor metabolism is a proven efficient therapeutic tactic, our results may present new treatment strategies and drugs for improving the prognosis of gliomas.
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页码:767 / 779
页数:12
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  • [1] Lapointe S(2018)Primary brain tumours in adults Lancet 392 432-46
  • [2] Perry A(2018)CBTRUS statistical report: primary brain and other central nervous system tumors diagnosed in the United States in 2011-2015 Neuro Oncol 20 iv1-iv86
  • [3] Butowski NA(2019)MET in glioma: signaling pathways and targeted therapies J Exp Clin Cancer Res 38 270-29
  • [4] Ostrom QT(2019)Signal transduction pathways and resistance to targeted therapies in glioma Semin Cancer Biol 58 118-60
  • [5] Gittleman H(2006)Glioma stem cells promote radioresistance by preferential activation of the DNA damage response Nature 444 756-52
  • [6] Truitt G(2013)Glioblastoma stem cells generate vascular pericytes to support vessel function and tumor growth Cell 153 139-52
  • [7] Boscia A(2016)A novel tumor-promoting mechanism of IL6 and the therapeutic efficacy of tocilizumab: Hypoxia-induced IL6 is a potent autophagy initiator in glioblastoma via the p-STAT3-MIR155-3p-CREBRF pathway Autophagy 12 1129-7
  • [8] Kruchko C(2004)Pseudopalisades in glioblastoma are hypoxic, express extracellular matrix proteases, and are formed by an actively migrating cell population Cancer Res 64 920-76
  • [9] Barnholtz-Sloan JS(2016)Mitochondria and cancer Mol Cell 61 667-71
  • [10] Cheng F(2014)Carnosine inhibits the proliferation of human gastric cancer SGC-7901 cells through both of the mitochondrial respiration and glycolysis pathways PLoS ONE 9 e104632-16