Long Non-Coding RNA- Associated Competing Endogenous RNA Axes in T-Cells in Multiple Sclerosis
Hani Sabaie1,2, Zoha Salkhordeh3, Mohammad Reza Asadi4
1Molecular Medicine Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Abstract:
Multiple sclerosis (MS) is an immune-mediated demyelinating and degenerative disease with unknown etiology. Inappropriate response of T-cells to myelin antigens has an essential role in the pathophysiology of MS. The clinical and pathophysiological complications of MS necessitate identification of potential molecular targets to understand the pathogenic events of MS. Since the functions and regulatory mechanisms of long non-coding RNAs (lncRNAs) acting as competing endogenous RNAs (ceRNAs) in MS are yet uncertain, we conducted a bioinformatics analysis to explain the lncRNA-associated ceRNA axes to clarify molecular regulatory mechanisms involved in T-cells responses in MS. Two microarray datasets of peripheral blood T-cell from subjects with relapsing-remitting MS and matched controls containing data about miRNAs (GSE43590), mRNAs and lncRNAs (GSE43591) were downloaded from the Gene Expression Omnibus database. Differentially expressed miRNAs (DEmiRNAs), mRNAs (DEmRNAs), and lncRNAs (DElncRNAs) were identified by the limma package of the R software. Protein-protein interaction (PPI) network and module were developed using the Search Tool for the Retrieval of Interacting Genes/Proteins (STRING) and the Molecular Complex Detection (MCODE) Cytoscape plugin, respectively. Using DIANA-LncBase and miRTarBase, the lncRNA-associated ceRNA axes was constructed. We conducted a Pearson correlation analysis and selected the positive correlations among the lncRNAs and mRNAs in the ceRNA axes. Lastly, DEmRNAs pathway enrichment was conducted by the Enrichr tool. A ceRNA regulatory relationship among Small nucleolar RNA host gene 1 (SNHG1), hsa-miR-197-3p, YOD1 deubiquitinase (YOD1) and zinc finger protein 101 (ZNF101) and downstream connected genes was identified. Pathway enrichment analysis showed that DEmRNAs were enriched in "Protein processing in endoplasmic reticulum" and "Herpes simplex virus 1 infection" pathways. To our knowledge, this would be the first report of a possible role of SNHG1/hsa-miR-197-3p/YOD1/ZNF101 axes in the pathogenesis of MS. This research remarks on the significance of ceRNAs and prepares new perceptions for discovering the molecular mechanism of MS.
Insights
This study identifies a novel long non-coding RNA (lncRNA) regulatory network involving SNHG1, hsa-miR-197-3p, YOD1, and ZNF101 in T-cells. This finding offers new insights into the molecular mechanisms driving multiple sclerosis (MS) pathogenesis.
Area of Science:
- Immunology
- Genetics
- Bioinformatics
Background:
- Multiple sclerosis (MS) is an immune-mediated disease impacting T-cells, with its exact cause unknown.
- Long non-coding RNAs (lncRNAs) function as competing endogenous RNAs (ceRNAs), but their role in MS pathogenesis remains unclear.
- Understanding T-cell regulatory mechanisms is crucial for identifying therapeutic targets in MS.
Purpose of the Study:
- To elucidate the lncRNA-associated ceRNA axes involved in T-cell responses in MS.
- To identify novel molecular targets for understanding MS pathogenesis.
- To clarify the regulatory mechanisms of lncRNAs in MS.
Main Methods:
- Bioinformatic analysis of microarray datasets (GSE43590, GSE43591) from MS patients and controls.
- Identification of differentially expressed miRNAs, mRNAs, and lncRNAs using R software.
- Construction of lncRNA-ceRNA networks using DIANA-LncBase and miRTarBase, followed by pathway enrichment analysis.
Main Results:
- A novel ceRNA regulatory axis was identified: Small nucleolar RNA host gene 1 (SNHG1)/hsa-miR-197-3p/YOD1 deubiquitinase (YOD1)/zinc finger protein 101 (ZNF101).
- Differentially expressed mRNAs were significantly enriched in "Protein processing in endoplasmic reticulum" and "Herpes simplex virus 1 infection" pathways.
- This study presents the first report on the potential role of the SNHG1/hsa-miR-197-3p/YOD1/ZNF101 axis in MS pathogenesis.
Conclusions:
- The identified SNHG1/hsa-miR-197-3p/YOD1/ZNF101 ceRNA network may play a significant role in MS pathogenesis.
- This research highlights the importance of ceRNAs in understanding MS.
- New perspectives are offered for discovering the molecular mechanisms underlying MS.
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