首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Increased expression of GRP94 protein is associated with decreased sensitivity to X-rays in cervical cancer cell lines.
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Increased expression of GRP94 protein is associated with decreased sensitivity to X-rays in cervical cancer cell lines.

机译:GRP94蛋白的表达增加与子宫颈癌细胞系对X射线的敏感性降低有关。

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PURPOSE: Radiation therapy is one of the standard treatments for cervical cancer. Glucose regulated protein 94 (GRP94) is a molecular chaperone, which increases in amount after X-ray irradiation. This study examined the involvement of GRP94 in radio-resistance in human cervical cancer cells. MATERIALS AND METHODS: Seven human cervical carcinoma cell lines (HeLa, SKG-I, SKG-IIIb, QG-U, Caski, SiHa and C33A) were examined for basal levels of GRP94 protein by western blotting analysis. Sensitivity to X-ray irradiation of these cell lines was determined with a colony survival assay. The suppression of GRP94 expression was performed using specific small-interfering RNA (siRNA) in HeLa and Caski cells. RESULTS: HeLa cells and QG-U cells, with higher basal levels of GRP94, exhibited a low sensitivity to X-ray cell killing. In HeLa cells, the sensitivity increased when protein GRP94 levels were reduced by specific siRNA transfection. However, a reduction in GRP94 protein had little effect on the X-ray sensitivity of Caski cells, which expressed low basal GRP94 protein levels but showed a low sensitivity to X-rays. CONCLUSIONS: High basal protein levels of GRP94 were correlated with a modest decrease in sensitivity to X-ray cell death in some cervical cancer cell lines. These results suggest that higher GRP94 protein expression is one of the molecular mechanisms causing resistance to radiation, and therefore GRP94 siRNA might be useful in tumor-specific gene therapy by reversing radio-resistance prior to radiation in cervical cancer.
机译:目的:放射治疗是宫颈癌的标准治疗方法之一。葡萄糖调节蛋白94(GRP94)是分子伴侣,在X射线照射后其数量增加。这项研究检查了GRP94参与人类宫颈癌细胞的抗辐射性。材料与方法:通过蛋白质印迹分析检测了7种人宫颈癌细胞系(HeLa,SKG-1,SKG-IIIb,QG-U,Caski,SiHa和C33A)的基础水平。用菌落存活测定法测定这些细胞系对X射线辐射的敏感性。使用HeLa和Caski细胞中的特定小干扰RNA(siRNA)进行GRP94表达的抑制。结果:具有较高基础水平的GRP94的HeLa细胞和QG-U细胞对X射线细胞杀伤的敏感性较低。在HeLa细胞中,当通过特异性siRNA转染降低蛋白质GRP94的水平时,敏感性会提高。但是,GRP94蛋白的减少对Caski细胞的X射线敏感性几乎没有影响,Caski细胞表达低的基础GRP94蛋白质水平,但对X射线敏感性较低。结论:某些宫颈癌细胞系中高水平的基础蛋白GRP94与X射线细胞死亡敏感性的适度降低有关。这些结果表明,较高的GRP94蛋白表达是引起对放射线耐药的分子机制之一,因此GRP94 siRNA通过逆转宫颈癌放射线之前的放射抗性,可能在肿瘤特异性基因治疗中有用。

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