Related Experiment Video
Updated: Jan 20, 2026

Differentiation of a Human Neural Stem Cell Line on Three Dimensional Cultures, Analysis of MicroRNA and Putative Target Genes
Published on: April 12, 2015
Crosstalk between microRNAs, the putative target genes and the lncRNA network in metabolic diseases
Taís Silveira Assmann1, Fermín I Milagro1, José Alfredo Martínez1
1Department of Nutrition, Food Science and Physiology, Center for Nutrition Research, University of Navarra, 31008 Pamplona, Spain.
Abstract:
MicroRNAs (miRNAs/miRs) are small non‑coding RNAs (ncRNAs) that regulate gene expression. Emerging knowledge has suggested that miRNAs have a role in the pathogenesis of metabolic disorders, supporting the hypothesis that miRNAs may represent potential biomarkers or targets for this set of diseases. However, the current evidence is often controversial. Therefore, the aim of the present study was to determine the associations between miRNAs‑target genes, miRNA‑long ncRNAs (lncRNAs), and miRNAs‑small molecules in human metabolic diseases, including obesity, type 2 diabetes and non‑alcoholic fatty liver disease. The metabolic disease‑related miRNAs were obtained from the Human MicroRNA Disease Database (HMDD) and miR2Disease database. A search on the databases Matrix Decomposition and Heterogeneous Graph Inference (MDHGI) and DisGeNET were also performed. miRNAs target genes were obtained from three independent sources: Microcosm, TargetScan and miRTarBase. The interactions between miRNAs‑lncRNA and miRNA‑small molecules were performed using the miRNet web tool. The network analyses were performed using Cytoscape software. As a result, a total of 20 miRNAs were revealed to be associated with metabolic disorders in the present study. Notably, 6 miRNAs (miR‑17‑5p, miR‑29c‑3p, miR‑34a‑5p, miR‑103a‑3p, miR‑107 and miR‑132‑3p) were found in the four resources (HMDD, miR2Disease, MDHGI, and DisGeNET) used for these analyses, presenting a stronger association with the diseases. Furthermore, the target genes of these miRNAs participate in several pathways previously associated with metabolic diseases. In addition, interactions between miRNA‑lncRNA and miRNA‑small molecules were also found, suggesting that some molecules can modulate gene expression via such an indirect way. Thus, the results of this data mining and integration analysis provide further information on the possible molecular basis of the metabolic disease pathogenesis as well as provide a path to search for potential biomarkers and therapeutic targets concerning metabolic diseases.
Insights
This study identifies 20 microRNAs (miRNAs) linked to metabolic disorders like obesity and diabetes. Six key miRNAs show strong associations, offering potential biomarkers and therapeutic targets for these diseases.
Area of Science:
- Biochemistry and Molecular Biology
- Genetics and Genomics
- Translational Medicine
Background:
- MicroRNAs (miRNAs) are small non-coding RNAs regulating gene expression.
- Emerging evidence suggests miRNAs play a role in metabolic disorders, but findings are often contradictory.
- Metabolic diseases like obesity, type 2 diabetes, and non-alcoholic fatty liver disease pose significant health challenges.
Purpose of the Study:
- To investigate associations between miRNAs, their target genes, long non-coding RNAs (lncRNAs), and small molecules in human metabolic diseases.
- To identify reliable miRNA biomarkers and therapeutic targets for metabolic disorders.
- To elucidate the molecular mechanisms underlying metabolic disease pathogenesis.
Main Methods:
- Data mining and integration from multiple databases (HMDD, miR2Disease, MDHGI, DisGeNET, Microcosm, TargetScan, miRTarBase).
- Utilized miRNet web tool for miRNA-lncRNA and miRNA-small molecule interactions.
- Employed Cytoscape software for network analyses.
Main Results:
- Identified 20 miRNAs associated with metabolic disorders.
- Six miRNAs (miR-17-5p, miR-29c-3p, miR-34a-5p, miR-103a-3p, miR-107, miR-132-3p) were consistently found across four major databases.
- Target genes of these miRNAs are involved in known metabolic disease pathways, and miRNA-lncRNA/small molecule interactions suggest indirect gene regulation.
Conclusions:
- This integrated analysis provides insights into the molecular basis of metabolic diseases.
- Identified key miRNAs and their interactions as potential biomarkers and therapeutic targets.
- Highlights the complex regulatory networks involving miRNAs in metabolic disease pathogenesis.
Related Concept Videos
10:48Differentiation of a Human Neural Stem Cell Line on Three Dimensional Cultures, Analysis of MicroRNA and Putative Target Genes
lncRNA - Long Non-coding RNAs
09:45An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
10:40CRISPR Gene Editing Tool for MicroRNA Cluster Network Analysis
04:41Mapping Alzheimer's Disease Variants to Their Target Genes Using Computational Analysis of Chromatin Configuration
MicroRNAs
