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Authors Li Z, Yao Q, Zhao S, Wang Y, Li Y, Wang Z
Received 21 February 2017
Accepted for publication 19 April 2017
Published 21 June 2017 Volume 2017:10 Pages 3095—3105
DOI https://doi.org/10.2147/OTT.S135312
Checked for plagiarism Yes
Review by Single-blind
Peer reviewers approved by Dr Narasimha Reddy Parine
Peer reviewer comments 2
Editor who approved publication: Dr Yao Dai
Abstract: Esophageal squamous cell carcinoma (ESCC) is one of the most common
malignancies worldwide and occurs at a relatively high frequency in People’s
Republic of China. However, the molecular mechanism underlying ESCC is still
unclear. In this study, the mRNA and long non-coding RNA (lncRNA) expression
profiles of ESCC were downloaded from the Gene Expression Omnibus database, and
then differential co-expression analysis was used to reveal the altered
co-expression relationship of gene pairs in ESCC tumors. A total of 3,709 mRNAs
and 923 lncRNAs were differentially co-expressed between normal and tumor
tissues, and we found that most of the gene pairs lost associations in the
tumor tissues. The differential regulatory networking approach deciphered that
transcriptional dysregulation was ubiquitous in ESCC, and most of the
differentially regulated links were modulated by 37 TFs. Our study also found
that two novel lncRNAs (ADAMTS9-AS1 and AP000696.2) might be essential in the
development of ectoderm and epithelial cells, which could significantly
stratify ESCC patients into high-risk and low-risk groups, and were much better
than traditional clinical tumor markers. Further inspection of two risk groups
showed that the changes in TF-target regulation in the high-risk patients were
significantly higher than those in the low-risk patients. In addition, four
signal transduction-related DCmRNAs (ERBB3 , ENSA , KCNK7 , MFSD5 ), which were
differentially co-expressed with the two lncRNAs, might also have the
predictive capacity. Our findings will enhance the understanding of ESCC
transcriptional dysregulation from a view of cross-link of lncRNA and mRNA, and
the two-lncRNA combination may serve as a novel prognostic biomarker for
clinical applications of ESCC.
Keywords: ESCC, differential co-expression
analysis, differential regulation analysis, dysregulation, lncRNA, prognostic
biomarker
