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Differentiation of a Human Neural Stem Cell Line on Three Dimensional Cultures, Analysis of MicroRNA and Putative Target Genes
Published on: April 12, 2015
MicroRNA-195 targets ADP-ribosylation factor-like protein 2 to induce apoptosis in human embryonic stem cell-derived
1Key Laboratory of Stem Cell Biology, Institute of Health Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences/Shanghai JiaoTong University School of Medicine, Shanghai, China.
Abstract:
Neural progenitor cells (NPCs) derived from human embryonic stem cells (hESCs) have great potential in cell therapy, drug screening and toxicity testing of neural degenerative diseases. However, the molecular regulation of their proliferation and apoptosis, which needs to be revealed before clinical application, is largely unknown. MicroRNA miR-195 is known to be expressed in the brain and is involved in a variety of proapoptosis or antiapoptosis processes in cancer cells. Here, we defined the proapoptotic role of miR-195 in NPCs derived from two independent hESC lines (human embryonic stem cell-derived neural progenitor cells, hESC-NPCs). Overexpression of miR-195 in hESC-NPCs induced extensive apoptotic cell death. Consistently, global transcriptional microarray analyses indicated that miR-195 primarily regulated genes associated with apoptosis in hESC-NPCs. Mechanistically, a small GTP-binding protein ADP-ribosylation factor-like protein 2 (ARL2) was identified as a direct target of miR-195. Silencing ARL2 in hESC-NPCs provoked an apoptotic phenotype resembling that of miR-195 overexpression, revealing for the first time an essential role of ARL2 for the survival of human NPCs. Moreover, forced expression of ALR2 could abolish the cell number reduction caused by miR-195 overexpression. Interestingly, we found that paraquat, a neurotoxin, not only induced apoptosis but also increased miR-195 and reduced ARL2 expression in hESC-NPCs, indicating the possible involvement of miR-195 and ARL2 in neurotoxin-induced NPC apoptosis. Notably, inhibition of miR-195 family members could block neurotoxin-induced NPC apoptosis. Collectively, miR-195 regulates cell apoptosis in a context-dependent manner through directly targeting ARL2. The finding of the critical role of ARL2 for the survival of human NPCs and association of miR-195 and ARL2 with neurotoxin-induced apoptosis have important implications for understanding molecular mechanisms that control NPC survival and would facilitate our manipulation of the neurological pathogenesis.
Insights
MicroRNA miR-195 promotes apoptosis in human embryonic stem cell-derived neural progenitor cells (hESC-NPCs) by targeting ARL2. This finding is crucial for understanding neurotoxin-induced cell death and developing new therapies.
Area of Science:
- Stem cell biology
- Molecular neuroscience
- MicroRNA research
Background:
- Human embryonic stem cell-derived neural progenitor cells (hESC-NPCs) hold therapeutic promise for neurodegenerative diseases.
- Understanding the molecular regulation of hESC-NPC proliferation and apoptosis is critical for clinical applications.
- MicroRNA miR-195 is implicated in apoptosis in cancer cells, but its role in neural progenitor cells is unclear.
Purpose of the Study:
- To define the role of miR-195 in the apoptosis of hESC-NPCs.
- To identify the molecular targets of miR-195 in hESC-NPCs.
- To investigate the involvement of miR-195 and its targets in neurotoxin-induced NPC apoptosis.
Main Methods:
- Overexpression and silencing of miR-195 and ARL2 in hESC-NPCs.
- Global transcriptional microarray analysis.
- Apoptosis assays and cell counting.
- Treatment with the neurotoxin paraquat.
Main Results:
- Overexpression of miR-195 induced significant apoptotic cell death in hESC-NPCs.
- ADP-ribosylation factor-like protein 2 (ARL2) was identified as a direct target of miR-195.
- Silencing ARL2 mimicked miR-195 overexpression-induced apoptosis, while ARL2 overexpression rescued miR-195's effect.
- Paraquat induced apoptosis by increasing miR-195 and decreasing ARL2 expression.
- Inhibition of miR-195 family members blocked paraquat-induced apoptosis.
Conclusions:
- miR-195 plays a proapoptotic role in hESC-NPCs by directly targeting ARL2.
- ARL2 is essential for human NPC survival.
- The miR-195/ARL2 pathway is involved in neurotoxin-induced NPC apoptosis.
- These findings have implications for understanding NPC survival mechanisms and neurological pathogenesis.
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