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Published on: July 20, 2019
Anti-PTK7 Monoclonal Antibodies Inhibit Angiogenesis by Suppressing PTK7 Function
Si Won Oh1, Won-Sik Shin1, Seung-Taek Lee1
1Department of Biochemistry, College of Life Science and Biotechnology, Yonsei University, Seoul 03722, Korea.
Abstract:
PTK7, a catalytically defective receptor protein tyrosine kinase, promotes angiogenesis by activating KDR through direct interaction and induction of KDR oligomerization. This study developed anti-PTK7 monoclonal antibodies (mAbs) to regulate angiogenesis by inhibiting PTK7 function. The effect of anti-PTK7 mAbs on vascular endothelial growth factor (VEGF)-induced angiogenic phenotypes in human umbilical vascular endothelial cells (HUVECs) was examined. Analysis of mAb binding with PTK7 deletion mutants revealed that mAb-43 and mAb-52 recognize immunoglobulin (Ig) domain 2 of PTK7, whereas mAb-32 and mAb-50 recognize Ig domains 6-7. Anti-PTK7 mAbs inhibited VEGF-induced adhesion and wound healing in HUVECs. mAb-32, mAb-43, and mAb-52 dose-dependently mitigated VEGF-induced migration and invasion in HUVECs without exerting cytotoxic effects. Additionally, mAb-32, mAb-43, and mAb-52 inhibited capillary-like tube formation in HUVECs, and mAb-32 and mAb-43 suppressed angiogenesis ex vivo (aortic ring assay) and in vivo (Matrigel plug assay). Furthermore, mAb-32 and mAb-43 downregulated VEGF-induced KDR activation and downstream signaling and inhibited PTK7-KDR interaction in PTK7-overexpressing and KDR-overexpressing HEK293 cells. Thus, anti-PTK7 mAbs inhibit angiogenic phenotypes by blocking PTK7-KDR interaction. These findings indicate that anti-PTK7 mAbs that neutralize PTK7 function can alleviate impaired angiogenesis-associated pathological conditions, such as cancer metastasis.
Insights
Monoclonal antibodies targeting Protein Tyrosine Kinase 7 (PTK7) effectively inhibit angiogenesis by blocking its interaction with KDR. These PTK7 antibodies show potential for treating angiogenesis-related diseases like cancer metastasis.
Area of Science:
- Molecular Biology
- Cell Biology
- Immunology
Background:
- Protein Tyrosine Kinase 7 (PTK7) is a catalytically defective receptor tyrosine kinase.
- PTK7 promotes angiogenesis by activating KDR through direct interaction and KDR oligomerization.
Purpose of the Study:
- To develop anti-PTK7 monoclonal antibodies (mAbs) to regulate angiogenesis.
- To investigate the mechanism by which anti-PTK7 mAbs inhibit PTK7 function and downstream signaling.
Main Methods:
- Development and characterization of anti-PTK7 mAbs.
- Assessment of mAb binding sites on PTK7 deletion mutants.
- Evaluation of anti-PTK7 mAb effects on VEGF-induced angiogenic phenotypes in HUVECs, including adhesion, wound healing, migration, invasion, and tube formation.
- Inhibition of angiogenesis in ex vivo (aortic ring) and in vivo (Matrigel plug) assays.
- Analysis of downstream signaling pathways and PTK7-KDR interaction in HEK293 cells.
Main Results:
- Anti-PTK7 mAbs (mAb-32, mAb-43, mAb-52) recognize specific domains of PTK7.
- These mAbs inhibited VEGF-induced angiogenesis in HUVECs and ex vivo/in vivo models without cytotoxicity.
- mAb-32 and mAb-43 downregulated VEGF-induced KDR activation and signaling.
- Anti-PTK7 mAbs blocked the interaction between PTK7 and KDR.
Conclusions:
- Anti-PTK7 mAbs effectively inhibit angiogenic phenotypes by blocking the PTK7-KDR interaction.
- These mAbs hold therapeutic potential for pathological conditions associated with impaired angiogenesis, such as cancer metastasis.
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