首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Knock-down of glutaminase 2 expression decreases glutathione, NADH, and sensitizes cervical cancer to ionizing radiation
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Knock-down of glutaminase 2 expression decreases glutathione, NADH, and sensitizes cervical cancer to ionizing radiation

机译:降低谷氨酰胺酶2表达可降低谷胱甘肽,NADH,并使宫颈癌对电离辐射敏感

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Phosphate-activated mitochondrial glutaminase (GLS2) is suggested to be linked with elevated glutamine metabolism. It plays an important role in catalyzing the hydrolysis of glutamine to glutamate. The present study was to investigate the potent effect of GLS2 on radioresistance of cervical carcinoma. GLS2 was examined in 144 cases of human cervical cancer specimens (58 radioresistant specimens, 86 radiosensitive specimens) and 15 adjacent normal cervical specimens with immunohistochemistry. HeLa cells were treated with a cumulative dose of 50Gy X-rays, over 6months, yielding the resistant sub-line HeLaR. The expressions of GLS2 were measured by Western blot. Radioresistance was tested by colony survival assay. Apoptosis was determined by flow cytometry. The levels of glutathione (GSH), reactive oxygen species (ROS), NAD+/NADH ratio and NADP+/NADPH ratio were detected by quantization assay kit. Xenografts were used to confirm the effect of GLS2 on radioresistance in vivo. The expressions of GLS2 were significantly enhanced in tumor tissues of radioresistant patients compared with that in radiosensitive patients. In vitro, the radioresistant cell line HeLaR exhibited significantly increased GLS2 levels than its parental cell line HeLa. GLS2 silenced radioresistant cell HeLaR shows substantially enhanced radiosensitivity with lower colony survival and higher apoptosis in response to radiation. In vivo, xenografts with GLS2 silenced HeLaR were more sensitive to radiation. At the molecular level, knock-down of GLS2 increased the intracellular ROS levels of HeLaR exposed to irradiation by decreasing the productions of antioxidant GSH, NADH and NADPH. GLS2 may have an important role in radioresistance in cervical cancer patients.
机译:磷酸激活的线粒体谷氨酰胺酶(GLS2)被认为与谷氨酰胺代谢升高有关。它在催化谷氨酰胺水解为谷氨酸中起重要作用。本研究旨在研究GLS2对子宫颈癌放射线抵抗的有效作用。使用免疫组织化学方法在144例人类宫颈癌标本(58幅放射线标本,86幅放射敏感性标本)和15例邻近的正常宫颈标本中检查了GLS2。在6个月内,以50Gy X射线的累积剂量对HeLa细胞进行处理,产生了抗性亚系HeLaR。通过Western印迹检测GLS2的表达。通过菌落存活测定法测试抗辐射性。通过流式细胞术确定细胞凋亡。用定量分析试剂盒检测谷胱甘肽(GSH),活性氧(ROS),NAD + / NADH比和NADP + / NADPH比的水平。使用异种移植物来证实GLS2对体内放射抗性的作用。与放射敏感性患者相比,放射抵抗患者的肿瘤组织中GLS2的表达显着增强。在体外,抗辐射细胞系HeLaR的亲本细胞系HeLa的GLS2水平显着提高。 GLS2沉默的抗辐射细胞HeLaR表现出显着增强的放射敏感性,具有较低的菌落存活率和对辐射的响应较高的凋亡。在体内,GLS2沉默的HeLaR异种移植物对辐射更敏感。在分子水平上,敲低GLS2通过降低抗氧化剂GSH,NADH和NADPH的产生而增加了暴露于辐射的HeLaR的细胞内ROS水平。 GLS2可能在子宫颈癌患者的放射抵抗中起重要作用。

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