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Analysis of Apoptosis in Zebrafish Embryos by Whole-mount Immunofluorescence to Detect Activated Caspase 3
Published on: December 20, 2013
Loss of ribosomal protein L11 affects zebrafish embryonic development through a p53-dependent apoptotic response
Anirban Chakraborty1, Tamayo Uechi, Sayomi Higa
1Frontier Science Research Center, University of Miyazaki, Miyazaki, Japan.
Abstract:
Ribosome is responsible for protein synthesis in all organisms and ribosomal proteins (RPs) play important roles in the formation of a functional ribosome. L11 was recently shown to regulate p53 activity through a direct binding with MDM2 and abrogating the MDM2-induced p53 degradation in response to ribosomal stress. However, the studies were performed in cell lines and the significance of this tumor suppressor function of L11 has yet to be explored in animal models. To investigate the effects of the deletion of L11 and its physiological relevance to p53 activity, we knocked down the rpl11 gene in zebrafish and analyzed the p53 response. Contrary to the cell line-based results, our data indicate that an L11 deficiency in a model organism activates the p53 pathway. The L11-deficient embryos (morphants) displayed developmental abnormalities primarily in the brain, leading to embryonic lethality within 6-7 days post fertilization. Extensive apoptosis was observed in the head region of the morphants, thus correlating the morphological defects with apparent cell death. A decrease in total abundance of genes involved in neural patterning of the brain was observed in the morphants, suggesting a reduction in neural progenitor cells. Upregulation of the genes involved in the p53 pathway were observed in the morphants. Simultaneous knockdown of the p53 gene rescued the developmental defects and apoptosis in the morphants. These results suggest that ribosomal dysfunction due to the loss of L11 activates a p53-dependent checkpoint response to prevent improper embryonic development.
Insights
Loss of ribosomal protein L11 in zebrafish activates the p53 pathway, causing developmental defects and embryonic lethality. This highlights L11
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- Ribosomes are essential for protein synthesis.
- Ribosomal protein L11 (L11) regulates p53 activity and MDM2.
- Previous studies on L11's tumor suppressor function were limited to cell lines.
Purpose of the Study:
- To investigate the physiological relevance of L11 in an animal model.
- To explore the effects of L11 deficiency on p53 activity and embryonic development.
Main Methods:
- Knockdown of the rpl11 gene in zebrafish.
- Analysis of p53 pathway activation.
- Assessment of embryonic development and apoptosis.
- Gene expression analysis.
Main Results:
- L11 deficiency in zebrafish (morphants) activated the p53 pathway.
- Morphants exhibited brain developmental abnormalities and embryonic lethality.
- Apoptosis was observed in the head region of morphants.
- Knockdown of p53 rescued the developmental defects.
Conclusions:
- Ribosomal dysfunction due to L11 loss activates a p53-dependent checkpoint.
- This checkpoint prevents improper embryonic development.
- L11 plays a crucial role in embryonic development through p53 regulation.

