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Investigation of Radiation-induced Transcriptome Profile of Radioresistant Non-small Cell Lung Cancer A549 Cells Using RNA-seq

机译:利用RNA-seq研究放射诱导的非小细胞肺癌A549细胞的转录组谱。

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摘要

Radioresistance is a main impediment to effective radiotherapy for non-small cell lung cancer (NSCLC). Despite several experimental and clinical studies of resistance to radiation, the precise mechanism of radioresistance in NSCLC cells and tissues still remains unclear. This result could be explained by limitation of previous researches such as a partial understanding of the cellular radioresistance mechanism at a single molecule level. In this study, we aimed to investigate extensive radiation responses in radioresistant NSCLC cells and to identify radioresistance-associating factors. For the first time, using RNA-seq, a massive sequencing-based approach, we examined whole-transcriptome alteration in radioresistant NSCLC A549 cells under irradiation, and verified significant radiation-altered genes and their chromosome distribution patterns. Also, bioinformatic approaches (GO analysis and IPA) were performed to characterize the radiation responses in radioresistant A549 cells. We found that epithelial–mesenchymal transition (EMT), migration and inflammatory processes could be meaningfully related to regulation of radiation responses in radioresistant A549 cells. Based on the results of bioinformatic analysis for the radiation-induced transcriptome alteration, we selected seven significant radiation-altered genes (SESN2, FN1, TRAF4, CDKN1A, COX-2, DDB2 and FDXR) and then compared radiation effects in two types of NSCLC cells with different radiosensitivity (radioresistant A549 cells and radiosensitive NCI-H460 cells). Interestingly, under irradiation, COX-2 showed the most significant difference in mRNA and protein expression between A549 and NCI-H460 cells. IR-induced increase of COX-2 expression was appeared only in radioresistant A549 cells. Collectively, we suggest that COX-2 (also known as prostaglandin-endoperoxide synthase 2 (PTGS2)) could have possibility as a putative biomarker for radioresistance in NSCLC cells.
机译:放射抵抗是非小细胞肺癌(NSCLC)有效放射治疗的主要障碍。尽管对放射线的抗性进行了一些实验和临床研究,但NSCLC细胞和组织中放射线抗性的确切机理仍不清楚。可以通过限制以前的研究来解释该结果,例如对单个分子水平的细胞辐射抗性机制的部分理解。在这项研究中,我们旨在调查抗辐射的NSCLC细胞中广泛的辐射反应,并确定辐射抗性相关因素。我们首次使用基于大规模测序的方法RNA-seq,检查了放射线照射下抗辐射的NSCLC A549细胞的整个转录组变化,并验证了显着的辐射改变基因及其染色体分布模式。此外,还进行了生物信息学方法(GO分析和IPA)来表征抗辐射A549细胞中的辐射响应。我们发现上皮-间质转化(EMT),迁移和炎性过程可能与辐射耐受性A549细胞中辐射反应的调节有意义地相关。基于对辐射诱导的转录组改变的生物信息学分析结果,我们选择了七个显着改变辐射的基因(SESN2,FN1,TRAF4,CDKN1A,COX-2,DDB2和FDXR),然后比较了两种NSCLC的辐射效应具有不同放射敏感性的细胞(放射耐受性A549细胞和放射敏感性NCI-H460细胞)。有趣的是,在照射下,COX-2在A549细胞和NCI-H460细胞之间的mRNA和蛋白表达上表现出最显着的差异。 IR诱导的COX-2表达增加仅出现在抗辐射的A549细胞中。总的来说,我们建议COX-2(也称为前列腺素-内过氧化物合酶2(PTGS2))有可能作为NSCLC细胞中抗辐射的公认生物标志物。

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