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Long Noncoding RNA FAM201A Mediates the Radiosensitivity of Esophageal Squamous Cell Cancer by Regulating ATM and mTOR Expression via miR-101

机译:长非编码RNA FAM201A通过miR-101调节ATM和mTOR表达介导食管鳞状细胞癌的放射敏感性

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摘要

>Background: The aim of the present study was to identify the potential long non-coding (lnc.)-RNA and its associated molecular mechanisms involved in the regulation of the radiosensitivity of esophageal squamous cell cancer (ESCC) in order to assess whether it could be a biomarker for the prediction of the response to radiotherapy and prognosis in patients with ESCC.>Methods: Microarrays and bioinformatics analysis were utilized to screen the potential lncRNAs associated with radiosensitivity in radiosensitive (n = 3) and radioresistant (n = 3) ESCC tumor tissues. Reverse transcription-quantitative polymerase chain reaction (RT-qPCR) was performed in 35 ESCC tumor tissues (20 radiosensitive and 15 radioresistant tissues, respectively) to validate the lncRNA that contributed the most to the radiosensitivity of ESCC (named the candidate lncRNA). MTT, flow cytometry, and western blot assays were conducted to assess the effect of the candidate lncRNA on radiosensitivity in vitro in ECA109/ECA109R ESCC cells. A mouse xenograft model was established to confirm the function of the candidate lncRNA in the radiosensitivity of ESCC in vivo. The putative downstream target genes regulated by the candidate lncRNA were predicted using Starbase 2.0 software and the TargetScan database. The interactions between the candidate lncRNA and the putative downstream target genes were examined by Luciferase reporter assay, and were confirmed by PCR.>Results: A total of 113 aberrantly expressed lncRNAs were identified by microarray analysis, of which family with sequence similarity 201-member A (FAM201A) was identified as the lncRNA that contributed the most to the radiosensitivity of ESCC. FAM201A was upregulated in radioresistant ESCC tumor tissues and had a poorer short-term response to radiotherapy resulting in inferior overall survival. FAM201A knockdown enhanced the radiosensitivity of ECA109/ECA109R cells by upregulating ataxia telangiectasia mutated (ATM) and mammalian target of rapamycin (mTOR) expression via the negative regulation of miR-101 expression. The mouse xenograft model demonstrated that FAM201A knockdown improved the radiosensitivity of ESCC.>Conclusion: The lncRNA FAM201A, which mediated the radiosensitivity of ESCC by regulating ATM and mTOR expression via miR-101 in the present study, may be a potential biomarker for predicting radiosensitivity and patient prognosis, and may be a therapeutic target for enhancing cancer radiosensitivity in ESCC.
机译:>背景:本研究的目的是确定潜在的长非编码(lnc。)-RNA及其相关的分子机制,参与食管鳞状细胞癌(ESCC)放射敏感性的调节为了评估它是否可以作为预测食管鳞癌患者放疗反应和预后的生物标志物。>方法:利用微阵列和生物信息学分析来筛选与放射敏感性相关的潜在lncRNAs (n = 3)和抗辐射(n = 3)的ESCC肿瘤组织。在35个ESCC肿瘤组织(分别为20个放射敏感性组织和15个放射抗性组织)中进行了逆转录定量聚合酶链反应(RT-qPCR),以验证对ESCC放射敏感性贡献最大的lncRNA(称为候选lncRNA)。进行了MTT,流式细胞仪和western blot分析,以评估候选lncRNA对ECA109 / ECA109R ESCC细胞体外放射敏感性的影响。建立小鼠异种移植模型以证实候选lncRNA在ESCC体内放射敏感性中的功能。使用Starbase 2.0软件和TargetScan数据库预测了由候选lncRNA调控的假定下游靶基因。通过荧光素酶报告基因分析检测候选lncRNA与推定的下游靶基因之间的相互作用,并通过PCR证实。>结果:通过微阵列分析鉴定出总共113个异常表达的lncRNA,属于哪个家族具有序列相似性的201成员A(FAM201A)被鉴定为对ESCC放射敏感性贡献最大的lncRNA。 FAM201A在抗辐射的ESCC肿瘤组织中上调,对放疗的短期反应较差,导致总生存期较差。 FAM201A敲低通过上调miR-101表达的负调控来上调共济失调毛细血管扩张突变(ATM)和哺乳动物雷帕霉素靶标(mTOR)的表达,从而增强ECA109 / ECA109R细胞的放射敏感性。小鼠异种移植模型表明FAM201A敲低可以提高ESCC的放射敏感性。>结论:在本研究中,通过调控miR-101调节ATM和mTOR表达来介导ESCC放射敏感性的lncRNA FAM201A可能是可能是预测放射敏感性和患者预后的潜在生物标记,并且可能是增强ESCC癌症放射敏感性的治疗靶标。

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