基因敲除
细胞凋亡
糖酵解
活性氧
程序性细胞死亡
细胞生物学
癌症研究
胶质瘤
细胞内
厌氧糖酵解
细胞生长
DNA损伤
基因沉默
细胞培养
生物
化学
生物化学
新陈代谢
基因
遗传学
DNA
作者
M. A. Peña-Rico,M. Nieves Calvo-Vidal,Ruth Villalonga-Planells,Fina Martínez‐Soler,Pepita Gimenez‐Bonafé,Àurea Navarro‐Sabaté,Avelina Tortosa,Ramón Bartrons,Ànna Manzano
标识
DOI:10.1016/j.radonc.2011.07.002
摘要
The TP53 induced glycolysis and apoptosis regulator (TIGAR) functions to lower fructose-2,6-bisphosphate (Fru-2,6-P(2)) levels in cells, consequently decreasing glycolysis and leading to the scavenging of reactive oxygen species (ROS), which correlate with a higher resistance to cell death. The decrease in intracellular ROS levels in response to TIGAR may also play a role in the ability of p53 to protect from the accumulation of genomic lesions. Given these good prospects of TIGAR for metabolic regulation and p53-response modulation, we analyzed the effects of TIGAR knockdown in U87MG and T98G glioblastoma-derived cell lines.After TIGAR-knockdown in glioblastoma cell lines, different metabolic parameters were assayed, showing an increase in Fru-2,6-P(2), lactate and ROS levels, with a concomitant decrease in reduced glutathione (GSH) levels. In addition, cell growth was inhibited without evidence of apoptotic or autophagic cell death. In contrast, a clear senescent phenotype was observed. We also found that TIGAR protein levels were increased shortly after irradiation. In addition, avoiding radiotherapy-triggered TIGAR induction by gene silencing resulted in the loss of capacity of glioblastoma cells to form colonies in culture and the delay of DNA repair mechanisms, based in γ-H2AX foci, leading cells to undergo morphological changes compatible with a senescent phenotype. Thus, the results obtained raised the possibility to consider TIGAR as a therapeutic target to increase radiotherapy effects.TIGAR abrogation provides a novel adjunctive therapeutic strategy against glial tumors by increasing radiation-induced cell impairment, thus allowing the use of lower radiotherapeutic doses.
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