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Published on: March 3, 2018
Molecular Network-Based Identification of Competing Endogenous RNAs in Thyroid Carcinoma
Minjia Lu1, Xingyu Xu2, Baohang Xi3
1College of Life Sciences, Zhejiang Sci-Tech University, Hangzhou 310018, China. luminjia1120@163.com.
Abstract:
RNAs may act as competing endogenous RNAs (ceRNAs), a critical mechanism in determining gene expression regulations in many cancers. However, the roles of ceRNAs in thyroid carcinoma remains elusive. In this study, we have developed a novel pipeline called Molecular Network-based Identification of ceRNA (MNIceRNA) to identify ceRNAs in thyroid carcinoma. MNIceRNA first constructs micro RNA (miRNA)-messenger RNA (mRNA)long non-coding RNA (lncRNA) networks from miRcode database and weighted correlation network analysis (WGCNA), based on which to identify key drivers of differentially expressed RNAs between normal and tumor samples. It then infers ceRNAs of the identified key drivers using the long non-coding competing endogenous database (lnCeDB). We applied the pipeline into The Cancer Genome Atlas (TCGA) thyroid carcinoma data. As a result, 598 lncRNAs, 1025 mRNAs, and 90 microRNA (miRNAs) were inferred to be differentially expressed between normal and thyroid cancer samples. We then obtained eight key driver miRNAs, among which hsa-mir-221 and hsa-mir-222 were key driver RNAs identified by both miRNA-mRNA-lncRNA and WGCNA network. In addition, hsa-mir-375 was inferred to be significant for patients' survival with 34 associated ceRNAs, among which RUNX2, DUSP6 and SEMA3D are known oncogenes regulating cellular proliferation and differentiation in thyroid cancer. These ceRNAs are critical in revealing the secrets behind thyroid cancer progression and may serve as future therapeutic biomarkers.
Insights
This study introduces MNIceRNA, a new method to identify competing endogenous RNAs (ceRNAs) in thyroid cancer. It reveals key ceRNAs, including specific microRNAs and oncogenes, offering potential therapeutic targets for thyroid carcinoma.
Area of Science:
- Molecular biology
- Genomics
- Cancer research
Background:
- Competing endogenous RNAs (ceRNAs) regulate gene expression in cancers.
- The role of ceRNAs in thyroid carcinoma is not well understood.
Purpose of the Study:
- To develop and apply a novel pipeline, MNIceRNA, for identifying ceRNAs in thyroid carcinoma.
- To uncover key ceRNAs involved in thyroid cancer progression and identify potential therapeutic biomarkers.
Main Methods:
- Constructed miRNA-mRNA-lncRNA networks using miRcode and WGCNA.
- Identified key drivers of differentially expressed RNAs.
- Inferred ceRNAs using the lnCeDB database.
- Applied the pipeline to TCGA thyroid carcinoma data.
Main Results:
- Identified 598 differentially expressed lncRNAs, 1025 mRNAs, and 90 miRNAs.
- Eight key driver miRNAs were identified, with hsa-mir-221 and hsa-mir-222 highlighted by both network analyses.
- hsa-mir-375 was linked to patient survival, with 34 associated ceRNAs, including oncogenes RUNX2, DUSP6, and SEMA3D.
Conclusions:
- MNIceRNA effectively identifies ceRNAs in thyroid carcinoma.
- Identified ceRNAs, particularly those linked to hsa-mir-375, are crucial for understanding thyroid cancer progression.
- These findings suggest potential novel therapeutic biomarkers for thyroid cancer treatment.
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