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鉴定与碳纳米管诱导的肺细胞恶性转化相关的候选 lncRNA 和假基因生物标志物,并预测潜在的预防药物。

Identification of Candidate lncRNA and Pseudogene Biomarkers Associated with Carbon-Nanotube-Induced Malignant Transformation of Lung Cells and Prediction of Potential Preventive Drugs.

机构信息

College of Textile and Clothing Engineering, Soochow University, Suzhou 215123, China.

Shanghai Jing Rui Yang Industrial Co., Ltd., Shanghai 200122, China.

出版信息

Int J Environ Res Public Health. 2022 Mar 2;19(5):2936. doi: 10.3390/ijerph19052936.

Abstract

Mounting evidence has linked carbon nanotube (CNT) exposure with malignant transformation of lungs. Long non-coding RNAs (lncRNAs) and pseudogenes are important regulators to mediate the pathogenesis of diseases, representing potential biomarkers for surveillance of lung carcinogenesis in workers exposed to CNTs and possible targets to develop preventive strategies. The aim of this study was to screen crucial lncRNAs and pseudogenes and predict preventive drugs. GSE41178 (small airway epithelial cells exposed to single- or multi-walled CNTs or dispersant control) and GSE56104 (lung epithelial cells exposed to single-walled CNTs or dispersant control) datasets were downloaded from the Gene Expression Omnibus database. Weighted correlation network analysis was performed for these two datasets, and the turquoise module was preserved and associated with CNT-induced malignant phenotypes. In total, 24 lncRNAs and 112 pseudogenes in this module were identified as differentially expressed in CNT-exposed cells compared with controls. Four lncRNAs (MEG3, ARHGAP5-AS1, LINC00174 and PVT1) and five pseudogenes (MT1JP, MT1L, RPL23AP64, ZNF826P and TMEM198B) were predicted to function by competing endogenous RNA (MEG3/RPL23AP64-hsa-miR-942-5p-CPEB2/PHF21A/BAMBI; ZNF826P-hsa-miR-23a-3p-SYNGAP1, TMEM198B-hsa-miR-15b-5p-SYNGAP1/CLU; PVT1-hsa-miR-423-5p-PSME3) or co-expression (MEG3/MT1L/ZNF826P/MT1JP-ATM; ARHGAP5-AS1-TMED10, LINC00174-NEDD4L, ARHGAP5-AS1/PVT1-NIP7; MT1L/MT1JP-SYNGAP1; MT1L/MT1JP-CLU) mechanisms. The expression levels and prognosis of all genes in the above interaction pairs were validated using lung cancer patient samples. The receiver operating characteristic curve analysis showed the combination of four lncRNAs, five pseudogenes or lncRNAs + pseudogenes were all effective for predicting lung cancer (accuracy >0.8). The comparative toxicogenomics database suggested schizandrin A, folic acid, zinc or gamma-linolenic acid may be preventive drugs by reversing the expression levels of lncRNAs or pseudogenes. In conclusion, this study highlights lncRNAs and pseudogenes as candidate diagnostic biomarkers and drug targets for CNT-induced lung cancer.

摘要

越来越多的证据表明,碳纳米管(CNT)暴露与肺部恶性转化有关。长链非编码 RNA(lncRNA)和假基因是介导疾病发病机制的重要调节剂,代表了 CNT 暴露工人肺癌发生监测的潜在生物标志物和开发预防策略的可能靶点。本研究旨在筛选关键的 lncRNA 和假基因,并预测预防药物。从基因表达综合数据库中下载 GSE41178(小气道上皮细胞暴露于单壁或多壁 CNT 或分散剂对照)和 GSE56104(肺上皮细胞暴露于单壁 CNT 或分散剂对照)数据集。对这两个数据集进行加权相关网络分析,并保留绿松石模块,并将其与 CNT 诱导的恶性表型相关联。在该模块中,共鉴定出 24 个 lncRNA 和 112 个假基因在 CNT 暴露细胞中与对照相比差异表达。在 CNT 暴露细胞中,有四个 lncRNA(MEG3、ARHGAP5-AS1、LINC00174 和 PVT1)和五个假基因(MT1JP、MT1L、RPL23AP64、ZNF826P 和 TMEM198B)被预测通过竞争性内源性 RNA(MEG3/RPL23AP64-hsa-miR-942-5p-CPEB2/PHF21A/BAMBI;ZNF826P-hsa-miR-23a-3p-SYNGAP1、TMEM198B-hsa-miR-15b-5p-SYNGAP1/CLU;PVT1-hsa-miR-423-5p-PSME3)或共表达(MEG3/MT1L/ZNF826P/MT1JP-ATM;ARHGAP5-AS1-TMED10、LINC00174-NEDD4L、ARHGAP5-AS1/PVT1-NIP7;MT1L/MT1JP-SYNGAP1;MT1L/MT1JP-CLU)机制发挥作用。使用肺癌患者样本验证了上述相互作用对中所有基因的表达水平和预后。受试者工作特征曲线分析表明,四个 lncRNA、五个假基因或 lncRNA+假基因的组合均能有效预测肺癌(准确率>0.8)。比较毒理学基因组数据库表明,五味子甲素 A、叶酸、锌或γ-亚麻酸可能通过逆转 lncRNA 或假基因的表达水平成为预防药物。综上所述,本研究强调 lncRNA 和假基因作为 CNT 诱导肺癌的候选诊断生物标志物和药物靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2527/8910615/c0ba5ce4571e/ijerph-19-02936-g001.jpg

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