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Hepatocyte-specific Ablation in Zebrafish to Study Biliary-driven Liver Regeneration
Published on: May 20, 2015
MiR-145 mediates zebrafish hepatic outgrowth through progranulin A signaling
Ya-Wen Li1,2, Keng-Yu Chiang2,3, Yen-Hsing Li4
1Graduate Institute of Life Sciences, National Defense Medical Center, Taipei, Taiwan.
Abstract:
MicroRNAs (miRs) are mRNA-regulatory molecules that fine-tune gene expression and modulate both processes of development and tumorigenesis. Our previous studies identified progranulin A (GrnA) as a growth factor which induces zebrafish hepatic outgrowth through MET signaling. We also found that miR-145 is one of potential fine-tuning regulators of GrnA involved in embryonic hepatic outgrowth. The low level of miR-145 seen in hepatocarinogenesis has been shown to promote pathological liver growth. However, little is known about the regulatory mechanism of miR-145 in embryonic liver development. In this study, we demonstrate a significant decrease in miR-145 expression during hepatogenesis. We modulate miR-145 expression in zebrafish embryos by injection with a miR-145 mimic or a miR-145 hairpin inhibitor. Altered embryonic liver outgrowth is observed in response to miR-145 expression modulation. We also confirm a critical role of miR-145 in hepatic outgrowth by using whole-mount in situ hybridization. Loss of miR-145 expression in embryos results in hepatic cell proliferation, and vice versa. Furthermore, we demonstrate that GrnA is a target of miR-145 and GrnA-induced MET signaling is also regulated by miR-145 as determined by luciferase reporter assay and gene expression analysis, respectively. In addition, co-injection of GrnA mRNA with miR-145 mimic or MO-GrnA with miR-145 inhibitor restores the liver defects caused by dysregulation of miR-145 expression. In conclusion, our findings suggest an important role of miR-145 in regulating GrnA-dependent hepatic outgrowth in zebrafish embryonic development.
Insights
MicroRNA-145 (miR-145) regulates embryonic liver growth by controlling the progranulin A (GrnA) growth factor. Lower miR-145 levels promote liver overgrowth, while higher levels inhibit it.
Area of Science:
- Developmental Biology
- Molecular Biology
- Zebrafish Embryogenesis
Background:
- MicroRNAs (miRs) are key regulators of gene expression in development and disease.
- Progranulin A (GrnA) is a growth factor that promotes zebrafish liver outgrowth via MET signaling.
- miR-145 is implicated in hepatocarcinogenesis, but its role in embryonic liver development is unclear.
Purpose of the Study:
- To investigate the role of miR-145 in zebrafish embryonic liver development.
- To elucidate the regulatory mechanism of miR-145 on GrnA and MET signaling.
- To determine how miR-145 expression levels impact hepatic outgrowth.
Main Methods:
- Modulation of miR-145 expression in zebrafish embryos using mimics and inhibitors.
- Whole-mount in situ hybridization to assess hepatic outgrowth.
- Luciferase reporter assays and gene expression analysis to study target interactions.
- Co-injection experiments to rescue liver defects.
Main Results:
- miR-145 expression significantly decreases during zebrafish hepatogenesis.
- Altered miR-145 levels directly impact embryonic liver outgrowth; loss of miR-145 leads to proliferation, while its increase inhibits growth.
- GrnA is a direct target of miR-145, and GrnA-induced MET signaling is also regulated by miR-145.
- Restoration of miR-145 levels or GrnA levels/activity rescues liver defects.
Conclusions:
- miR-145 plays a critical role in regulating embryonic liver development in zebrafish.
- The study highlights a novel regulatory axis involving miR-145, GrnA, and MET signaling in hepatic outgrowth.
- Findings suggest miR-145 as a potential target for modulating liver growth in developmental contexts.

