Zhao Tuo, Wang Hailong, Ma Hong, Wang Hao, Chen Bo, Deng Yulin
School of Life Science, Beijing Institute of Technology, Beijing 100081, China.
Int J Mol Sci. 2016 Apr 5;17(4):386. doi: 10.3390/ijms17040386.
Radiation is of clinical importance during glioma therapy; however, vasculature damage is observed over the treatment course. This type of tissue damage might lead to starvation conditions, affecting tumor metastasis. To test this possibility, we compared starvation conditions in conjunction with radiation treatment to monitor metastatic ability in the U251 glioma cell line. Transcriptome, western blot, and immunofluorescence analyses were used to measure the RNA and protein expression changes of the U251 cells after various treatments. We found that starvation combined with radiation treatment yielded the most significant expression changes in metastasis-related factors compared to that in the control groups. In addition, a metastasis assay was used to directly measure the metastatic ability of the treated cells, which confirmed that the U251 cells treated with starvation combined with radiation possessed the highest metastatic ability. Furthermore, bioinformatics analysis demonstrated that SP1 represented a common transcription factor associated with changes in metastasis-related factors. Blocking SP1 activity by an inhibitor suppressed the starvation-plus-radiation treatment-mediated enhancement of U251 cell metastasis. Our study provides the first evidence that starvation caused by radiation might play a significant role in enhancing the ability of the glioma cell line U251 to metastasize via regulation of the transcription factor SP1.
在胶质瘤治疗过程中,辐射具有临床重要性;然而,在整个治疗过程中会观察到血管损伤。这种类型的组织损伤可能会导致营养缺乏状况,影响肿瘤转移。为了验证这种可能性,我们将营养缺乏状况与放射治疗相结合,以监测U251胶质瘤细胞系中的转移能力。利用转录组、蛋白质免疫印迹和免疫荧光分析来测量各种处理后U251细胞的RNA和蛋白质表达变化。我们发现,与对照组相比,饥饿联合放射治疗在转移相关因子方面产生了最显著的表达变化。此外,采用转移试验直接测量处理后细胞的转移能力,证实饥饿联合放射治疗的U251细胞具有最高的转移能力。此外,生物信息学分析表明,SP1是一种与转移相关因子变化相关的常见转录因子。用抑制剂阻断SP1活性可抑制饥饿加放射治疗介导的U251细胞转移增强。我们的研究首次证明,辐射引起的饥饿可能通过调节转录因子SP1在增强胶质瘤细胞系U251的转移能力方面发挥重要作用。