Compensatory cross-talk between autophagy and glycolysis regulates senescence and stemness in heterogeneous glioblastoma tumor subpopulations

被引:13
|
作者
Martell, Emma [1 ,2 ]
Kuzmychova, Helgi [1 ]
Senthil, Harshal [1 ]
Kaul, Esha [3 ]
Chokshi, Chirayu R. [4 ]
Venugopal, Chitra [5 ]
Anderson, Christopher M. [6 ,7 ]
Singh, Sheila K. [4 ,5 ]
Sharif, Tanveer [1 ,2 ]
机构
[1] Univ Manitoba, Rady Fac Hlth Sci, Dept Pathol, Winnipeg, MB, Canada
[2] Univ Manitoba, Rady Fac Hlth Sci, Dept Human Anat & Cell Sci, Winnipeg, MB, Canada
[3] Univ Manitoba, Fac Sci, Winnipeg, MB, Canada
[4] McMaster Univ, Dept Biochem, Hamilton, ON, Canada
[5] McMaster Univ, Dept Surg, Hamilton, ON, Canada
[6] Univ Manitoba, Rady Fac Hlth Sci, Dept Pharmacol & Therapeut, Winnipeg, MB, Canada
[7] Kleysen Inst Adv Med, Hlth Sci Ctr, Neurosci Res Program, Winnipeg, MB, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
Glioblastoma; Tumor heterogeneity; Cancer stem cell-like cells; Metabolism; Glycolysis; Autophagy; Senescence; IN-VITRO; CANCER; CELL; METABOLISM; IDENTIFICATION; TEMOZOLOMIDE; INHIBITION; MAINTAINS; EVOLUTION; SUBTYPES;
D O I
10.1186/s40478-023-01604-y
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Despite tremendous research efforts, successful targeting of aberrant tumor metabolism in clinical practice has remained elusive. Tumor heterogeneity and plasticity may play a role in the clinical failure of metabolism-targeting interventions for treating cancer patients. Moreover, compensatory growth-related processes and adaptive responses exhibited by heterogeneous tumor subpopulations to metabolic inhibitors are poorly understood. Here, by using clinically-relevant patient-derived glioblastoma (GBM) cell models, we explore the cross-talk between glycolysis, autophagy, and senescence in maintaining tumor stemness. We found that stem cell-like GBM tumor subpopulations possessed higher basal levels of glycolytic activity and increased expression of several glycolysis-related enzymes including, GLUT1/SLC2A1, PFKP, ALDOA, GAPDH, ENO1, PKM2, and LDH, compared to their non-stem-like counterparts. Importantly, bioinformatics analysis also revealed that the mRNA expression of glycolytic enzymes positively correlates with stemness markers (CD133/PROM1 and SOX2) in patient GBM tumors. While treatment with glycolysis inhibitors induced senescence in stem cell-like GBM tumor subpopulations, as evidenced by increased & beta;-galactosidase staining and upregulation of the cell cycle regulators p21(Waf1/Cip1)/CDKN1A and p16(INK4A)/CDKN2A, these cells maintained their aggressive stemness features and failed to undergo apoptotic cell death. Using various techniques including autophagy flux and EGFP-MAP1LC3B(+) puncta formation analysis, we determined that inhibition of glycolysis led to the induction of autophagy in stem cell-like GBM tumor subpopulations, but not in their non-stem-like counterparts. Similarly, blocking autophagy in stem cell-like GBM tumor subpopulations induced senescence-associated growth arrest without hampering stemness capacity or inducing apoptosis while reciprocally upregulating glycolytic activity. Combinatorial treatment of stem cell-like GBM tumor subpopulations with autophagy and glycolysis inhibitors blocked the induction of senescence while drastically impairing their stemness capacity which drove cells towards apoptotic cell death. These findings identify a novel and complex compensatory interplay between glycolysis, autophagy, and senescence that helps maintain stemness in heterogeneous GBM tumor subpopulations and provides a survival advantage during metabolic stress.
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页数:20
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