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Published on: January 7, 2019
Analysis of MicroRNA Expression Profiling Involved in MC-LR-Induced Cytotoxicity by High-Throughput Sequencing
Junguo Ma1, Yuanyuan Li2, Lan Yao3
1College of Life Science, Henan Normal University, Xinxiang 453007, Henan, China. mjunguo_1378@126.com.
Abstract:
In recent years, microRNAs (miRNAs) in toxicology have attracted great attention. However, the underlying mechanism of miRNAs in the cytotoxicity of microcystin-LR (MC-LR) is lacking. The objective of this study is to analyze miRNA profiling in HepG2 cells after 24 h of MC-LR-exposure to affirm whether and how miRNAs were involved in the cytotoxicity of MC-LR. The results showed that totally 21 and 37 miRNAs were found to be significantly altered in the MC-LR treated cells at concentrations of 10 and 50 μM, respectively, when compared to the control cells. In these two groups, 37,566 and 39,174 target genes were predicted, respectively. The further analysis showed that MC-LR-exposure promoted the expressions of has-miR-149-3p, has-miR-449c-5p, and has-miR-454-3p while suppressed the expressions of has-miR-4286, has-miR-500a-3p, has-miR-500a-5p, and has-miR-500b-5p in MC-LR-treated groups when compared to the control group. Moreover, the result of qPCR confirmed the above result, suggesting that these miRNAs may be involved in MC-LR-hepatotoxicity and they may play an important role in the hepatitis and liver cancer caused by MC-LR. The target genes for differentially expressed miRNAs in MC-LR treatment groups were significantly enriched to totally 23 classes of GO, in which three were significantly enriched in both 10 and 50 μM MC-LR groups. Moreover, the results of KEGG pathway analysis showed that MC-LR-exposure altered some important signaling pathways such as MAPK, biosynthesis of secondary metabolites, and pyrimidine and purine metabolism, which were possibly negatively regulated by the corresponding miRNAs and might play important role in MC-LR-mediated cytotoxicity in HepG2 cells.
Insights
MicroRNA (miRNA) profiling in HepG2 cells revealed significant changes after microcystin-LR (MC-LR) exposure. These altered miRNAs are implicated in MC-LR-induced liver toxicity and may contribute to liver cancer.
Area of Science:
- Toxicology
- Molecular Biology
- Hepatotoxicity
Background:
- MicroRNAs (miRNAs) are increasingly recognized for their role in toxicology.
- The specific mechanisms of miRNA involvement in microcystin-LR (MC-LR) cytotoxicity remain unclear.
- Understanding miRNA dysregulation is crucial for assessing MC-LR risks.
Purpose of the Study:
- To investigate miRNA expression profiles in HepG2 cells following MC-LR exposure.
- To identify specific miRNAs involved in MC-LR-induced cytotoxicity.
- To elucidate the potential role of these miRNAs in MC-LR-mediated liver damage and disease.
Main Methods:
- HepG2 cells were exposed to varying concentrations of MC-LR (10 and 50 μM) for 24 hours.
- miRNA sequencing was performed to analyze global miRNA expression changes.
- Quantitative real-time PCR (qPCR) was used to validate key miRNA expression alterations.
- Bioinformatic analyses including target gene prediction, Gene Ontology (GO) enrichment, and KEGG pathway analysis were conducted.
Main Results:
- MC-LR exposure significantly altered the expression of 21 miRNAs at 10 μM and 37 miRNAs at 50 μM.
- Specific miRNAs such as has-miR-149-3p, has-miR-449c-5p, and has-miR-454-3p were upregulated, while others were downregulated.
- KEGG pathway analysis indicated alterations in MAPK signaling, secondary metabolite biosynthesis, and nucleotide metabolism pathways.
- GO enrichment analysis identified key biological processes affected by MC-LR exposure.
Conclusions:
- MC-LR exposure induces significant changes in miRNA expression in HepG2 cells.
- Dysregulated miRNAs are likely involved in the hepatotoxicity mechanism of MC-LR.
- These findings suggest a potential role for specific miRNAs in MC-LR-induced hepatitis and liver cancer.
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