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Microbead Implantation in the Zebrafish Embryo
Published on: July 30, 2015
Zebrafish Dkk3a protein regulates the activity of myf5 promoter through interaction with membrane receptor integrin
Chuan-Yang Fu1, Ying-Fang Su, Ming-Hsuan Lee
1Institute of Molecular and Cellular Biology, National Taiwan University, Number 1, Section 4, Roosevelt Road, Taipei 106, Taiwan.
Abstract:
Myogenic regulatory factor Myf5 plays important roles in muscle development. In zebrafish myf5, a microRNA (miR), termed miR-3906 or miR-In300, was reported to silence dickkopf-3-related gene (dkk3r or dkk3a), resulting in repression of myf5 promoter activity. However, the membrane receptor that interacts with ligand Dkk3a to control myf5 expression through signal transduction remains unknown. To address this question, we applied immunoprecipitation and LC-MS/MS to screen putative membrane receptors of Dkk3a, and Integrin α6b (Itgα6b) was finally identified. To further confirm this, we used cell surface binding assays, which showed that Dkk3a and Itgα6b were co-expressed at the cell membrane of HEK-293T cells. Cross-linking immunoprecipitation data also showed high affinity of Itgα6b for Dkk3a. We further proved that the β-propeller repeat domains of Itgα6b are key segments bound by Dkk3a. Moreover, when dkk3a and itgα6b mRNAs were co-injected into embryos, luciferase activity was up-regulated 4-fold greater than that of control embryos. In contrast, the luciferase activities of dkk3a knockdown embryos co-injected with itgα6b mRNA and itgα6b knockdown embryos co-injected with dkk3a mRNA were decreased in a manner similar to that in control embryos, respectively. Knockdown of itgα6b resulted in abnormal somite shape, fewer somitic cells, weaker or absent myf5 expression, and reduced the protein level of phosphorylated p38a in somites. These defective phenotypes of trunk muscular development were similar to those of dkk3a knockdown embryos. We demonstrated that the secreted ligand Dkk3a binds to the membrane receptor Itgα6b, which increases the protein level of phosphorylated p38a and activates myf5 promoter activity of zebrafish embryos during myogenesis.
Insights
Zebrafish studies reveal Integrin α6b (Itgα6b) as the membrane receptor for Dkk3a. This interaction activates myf5 expression, crucial for muscle development, by increasing phosphorylated p38a levels.
Area of Science:
- Developmental Biology
- Molecular Biology
- Zebrafish Model Systems
Background:
- Myogenic regulatory factor Myf5 is essential for muscle development.
- MicroRNA miR-3906 (miR-In300) represses Myf5 expression by targeting dickkopf-3-related gene (dkk3a).
- The specific membrane receptor mediating Dkk3a signaling for Myf5 regulation remained unidentified.
Purpose of the Study:
- To identify the membrane receptor that interacts with the ligand Dkk3a.
- To elucidate the role of this receptor-ligand interaction in controlling Myf5 expression via signal transduction.
- To investigate the downstream signaling pathways and developmental consequences in zebrafish myogenesis.
Main Methods:
- Immunoprecipitation and LC-MS/MS to screen for Dkk3a membrane receptors.
- Cell surface binding assays and cross-linking immunoprecipitation to confirm Dkk3a-Integrin α6b (Itgα6b) interaction.
- mRNA co-injection and knockdown experiments in zebrafish embryos, coupled with luciferase reporter assays and analysis of developmental phenotypes.
Main Results:
- Integrin α6b (Itgα6b) was identified as the membrane receptor for Dkk3a, with high-affinity binding confirmed.
- Dkk3a binding to Itgα6b's β-propeller repeat domains enhances luciferase activity, indicating Myf5 promoter activation.
- Itgα6b knockdown phenocopies Dkk3a knockdown, causing abnormal somite development, reduced Myf5 expression, and decreased phosphorylated p38a levels.
Conclusions:
- The secreted ligand Dkk3a binds to the membrane receptor Itgα6b during zebrafish myogenesis.
- This interaction elevates phosphorylated p38a protein levels, subsequently activating the Myf5 promoter.
- The Dkk3a-Itgα6b axis is critical for proper trunk muscular development in zebrafish embryos.

