...
首页> 外文期刊>Cancer Management and Research >Robust analysis of novel mRNA–lncRNA cross talk based on ceRNA hypothesis uncovers carcinogenic mechanism and promotes diagnostic accuracy in esophageal cancer
【24h】

Robust analysis of novel mRNA–lncRNA cross talk based on ceRNA hypothesis uncovers carcinogenic mechanism and promotes diagnostic accuracy in esophageal cancer

机译:基于ceRNA假设的新型mRNA–lncRNA串扰的鲁棒性分析揭示了食道癌的致癌机制并提高了诊断准确性

获取原文

摘要

Background: ceRNAs have emerged as pivotal players in the regulation of gene expression and play a crucial role in the physiology and development of various cancers. Nevertheless, the function and underlying mechanisms of ceRNAs in esophageal cancer (EC) are still largely unknown. Methods: In this study, profiles of DEmRNAs, DElncRNAs, and DEmiRNAs between normal and EC tumor tissue samples were obtained from the Cancer Genome Atlas database using the DESeq package in R by setting the adjusted P 22 as the cutoff. The ceRNA network (ceRNet) was initially constructed to reveal the interaction of these ceRNAs during carcinogenesis based on the bioinformatics of miRcode, miRDB, miRTarBase, and TargetScan. Then, independent microarray data of GSE6188, GSE89102, and GSE92396 and correlation analysis were used to validate molecular biomarkers in the initial ceRNet. Finally, a least absolute shrinkage and selection operator logistic regression model was built using an oncogenic ceRNet to diagnose EC more accurately. Results: We successfully constructed an oncogenic ceRNet of EC, crosstalk of hsa-miR372-centered CADM2 -ADAMTS9-AS2 and hsa-miR145-centered SERPINE1 -PVT1. In addition, the risk-score model ?0.0053*log2( CADM2 )+0.0168*log2( SERPINE1 )-0.0073*log2(ADAMTS9-AS2)+0.0905*log2(PVT1)+0.0047*log2(hsa-miR372)–0.0193*log2(hsa-miR145), (log2[gene count]) could improve diagnosis of EC with an AUC of 0.988. Conclusion: We identified two novel pairs of ceRNAs in EC and its role of diagnosis. The pairs of hsa-miR372-centered CADM2 -ADAMTS9-AS2 and hsa-miR145-centered SERPINE1 -PVT1 were likely potential carcinogenic mechanisms of EC, and their joint detection could improve diagnostic accuracy.
机译:背景:ceRNAs已成为调节基因表达的关键因素,并在各种癌症的生理和发展中起着至关重要的作用。然而,在食管癌(EC)中ceRNA的功能和潜在机制仍是未知之数。方法:在这项研究中,通过将R上的DESeq软件包设置为R 22的截止值,从癌症基因组图谱数据库中获得正常和EC肿瘤组织样品之间DEmRNA,DElncRNA和DEmiRNA的概况。最初构建了ceRNA网络(ceRNet),以基于miRcode,miRDB,miRTarBase和TargetScan的生物信息学揭示这些ceRNA在致癌过程中的相互作用。然后,使用GSE6188,GSE89102和GSE92396的独立微阵列数据以及相关分析来验证初始ceRNet中的分子生物标记。最后,使用致癌的ceRNet建立了最小绝对收缩和选择算子逻辑回归模型,以更准确地诊断EC。结果:我们成功构建了EC的致癌性ceRNet,以hsa-miR372为中心的CADM2-ADAMTS9-AS2和以hsa-miR145为中心的SERPINE1-PVT1的串扰。此外,风险评分模型为0.0053 * log2(CADM2)+ 0.0168 * log2(SERPINE1)-0.0073 * log2(ADAMTS9-AS2)+ 0.0905 * log2(PVT1)+ 0.0047 * log2(hsa-miR372)–0.0193 * log2(hsa-miR145)(log2 [基因计数])可以改善EC的诊断,AUC为0.988。结论:我们在EC中鉴定出两对新的ceRNA及其对诊断的作用。以hsa-miR372为中心的CADM2-ADAMTS9-AS2和以hsa-miR145为中心的SERPINE1-PVT1对可能是EC的潜在致癌机制,它们的联合检测可以提高诊断的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号