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Published on: March 23, 2020
The Proapoptotic Gene Bad Regulates Brain Development via p53-Mediated Stress Signals in Zebrafish
Jo-Chi Hung1, Jen-Leih Wu2, Huei-Ching Li1
1Laboratory of Molecular Virology and Biotechnology, Institute of Biotechnology, National Cheng Kung University, Tainan 701, Taiwan.
Abstract:
Studies have shown that the BH3-only domain Bad regulates brain development via the control of programmed cell death (PCD), but very few studies have addressed its effect on the molecular signaling of brain development in the system. In this work, we examined the novel role of zebrafish Bad in initial programmed cell death for brain morphogenesis through the priming of p53-mediated stress signaling. In a biological function study on the knockdown of Bad by morpholino oligonucleotides, at 24 h post-fertilization (hpf) Bad defects induced abnormal hindbrain development, as determined in a tissue section by means of HE staining which traced the damaged hindbrain. Then, genome-wide approaches for monitoring either the upregulation of apoptotic-related genes (11.8%) or the downregulation of brain development-related genes (29%) at the 24 hpf stage were implemented. The p53/caspase-8-mediated apoptotic death pathway was strongly involved, with the pathway being strongly reversed in a p53 mutant (p53) line during Bad knockdown. Furthermore, we propose the involvement of a p53-mediated stress signal which is correlated with regulating Bad loss-mediated brain defects. We found that some major genes in brain development, such as crybb1, pva1b5, irx4a, pax7a, and fabp7a, were dramatically restored in the p53 line, and brain development recovered to return movement behavior to normal. Our findings suggest that Bad is required for (PCD) control, exerting a p53 stress signal on caspase-8/tBid-mediated death signaling and brain development-related gene regulation.
Insights
Zebrafish Bad protein is crucial for normal brain development by controlling programmed cell death (PCD) and p53-mediated stress signaling, ensuring proper gene regulation and preventing hindbrain defects.
Area of Science:
- Developmental Biology
- Molecular Biology
- Neuroscience
Background:
- The BH3-only protein Bad regulates programmed cell death (PCD) and influences brain development.
- Its specific role in molecular signaling during brain development remains underexplored.
Purpose of the Study:
- To investigate the novel role of zebrafish Bad in programmed cell death during brain morphogenesis.
- To elucidate the involvement of p53-mediated stress signaling in Bad-regulated brain development.
Main Methods:
- Knockdown of zebrafish Bad using morpholino oligonucleotides.
- HE staining for hindbrain tissue analysis at 24 hours post-fertilization (hpf).
- Genome-wide gene expression analysis and utilization of a p53 mutant zebrafish line.
Main Results:
- Bad knockdown led to abnormal hindbrain development and altered expression of apoptotic and brain development genes.
- The p53/caspase-8 apoptotic pathway was implicated, and its activity was reversed in p53 mutant lines.
- Restoration of brain development genes and normal motor behavior was observed in the p53 mutant line.
Conclusions:
- Zebrafish Bad is essential for controlling PCD and brain development.
- Bad loss-mediated brain defects are linked to a p53-mediated stress signal impacting caspase-8/tBid signaling and gene regulation.

