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Published on: December 2, 2014
Zebrafish WNK lysine deficient protein kinase 1 (wnk1) affects angiogenesis associated with VEGF signaling
Ju-Geng Lai1, Su-Mei Tsai1, Hsiao-Chen Tu2
1Institute of Molecular and Genomic Medicine, National Health Research Institutes, Zhunan Town, Miaoli, Taiwan, ROC.
Abstract:
The WNK1 (WNK lysine deficient protein kinase 1) protein is a serine/threonine protein kinase with emerging roles in cancer. WNK1 causes hypertension and hyperkalemia when overexpressed and cardiovascular defects when ablated in mice. In this study, the role of Wnk1 in angiogenesis was explored using the zebrafish model. There are two zebrafish wnk1 isoforms, wnk1a and wnk1b, and both contain all the functional domains found in the human WNK1 protein. Both isoforms are expressed in the embryo at the initiation of angiogenesis and in the posterior cardinal vein (PCV), similar to fms-related tyrosine kinase 4 (flt4). Using morpholino antisense oligonucleotides against wnk1a and wnk1b, we observed that wnk1 morphants have defects in angiogenesis in the head and trunk, similar to flk1/vegfr2 morphants. Furthermore, both wnk1a and wnk1b mRNA can partially rescue the defects in vascular formation caused by flk1/vegfr2 knockdown. Mutation of the kinase domain or the Akt/PI3K phosphorylation site within wnk1 destroys this rescue capability. The rescue experiments provide evidence that wnk1 is a downstream target for Vegfr2 (vascular endothelial growth factor receptor-2) and Akt/PI3K signaling and thereby affects angiogenesis in zebrafish embryos. Furthermore, we found that knockdown of vascular endothelial growth factor receptor-2 (flk1/vegfr2) or vascular endothelial growth factor receptor-3 (flt4/vegfr3) results in a decrease in wnk1a expression, as assessed by in situ hybridization and q-RT-PCR analysis. Thus, the Vegf/Vegfr signaling pathway controls angiogenesis in zebrafish via Akt kinase-mediated phosphorylation and activation of Wnk1 as well as transcriptional regulation of wnk1 expression.
Insights
WNK1 (WNK lysine deficient protein kinase 1) is crucial for zebrafish angiogenesis. Its activity is regulated by Vegfr2 and Akt/PI3K signaling, impacting blood vessel formation.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cardiovascular Biology
Background:
- WNK1 (WNK lysine deficient protein kinase 1) is a serine/threonine kinase implicated in cancer, hypertension, and cardiovascular defects.
- Its precise role in angiogenesis, the formation of new blood vessels, remains largely unexplored.
Purpose of the Study:
- To investigate the function of WNK1 in embryonic angiogenesis using the zebrafish model.
- To elucidate the signaling pathways regulating WNK1's role in vascular development.
Main Methods:
- Utilized zebrafish morpholino antisense oligonucleotides to knockdown wnk1a and wnk1b isoforms.
- Performed rescue experiments with wnk1a and wnk1b mRNA following flk1/vegfr2 knockdown.
- Investigated the impact of kinase domain and Akt/PI3K phosphorylation site mutations on WNK1 function.
- Assessed wnk1a expression via in situ hybridization and q-RT-PCR after flk1/vegfr2 or flt4/vegfr3 knockdown.
Main Results:
- WNK1 knockdown in zebrafish embryos resulted in significant defects in head and trunk angiogenesis.
- WNK1 isoforms (wnk1a and wnk1b) partially rescued vascular formation defects caused by flk1/vegfr2 knockdown.
- Mutations in WNK1's kinase domain or Akt/PI3K phosphorylation site abolished its rescue capability.
- Knockdown of Vegfr2 or Vegfr3 led to decreased wnk1a expression, indicating transcriptional regulation by the Vegf/Vegfr pathway.
Conclusions:
- WNK1 plays a critical role in zebrafish embryonic angiogenesis.
- WNK1 acts downstream of Vegfr2 and Akt/PI3K signaling pathways.
- The Vegf/Vegfr signaling pathway controls angiogenesis by regulating WNK1 activity and expression.
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