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The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis

EphB4 and its cognitive ligand ephrinB2 play an important role in embryonic vessel development and vascular remodeling. In addition, several reports suggest that this receptor ligand pair is also involved in pathologic vessel formation in adults including tumor angiogenesis. Eph/ephrin signaling is...

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Autores principales: Martiny-Baron, Georg, Holzer, Philipp, Billy, Eric, Schnell, Christian, Brueggen, Joseph, Ferretti, Mireille, Schmiedeberg, Niko, Wood, Jeanette M., Furet, Pascal, Imbach, Patricia
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2941628/
https://www.ncbi.nlm.nih.gov/pubmed/20803239
http://dx.doi.org/10.1007/s10456-010-9183-z
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author Martiny-Baron, Georg
Holzer, Philipp
Billy, Eric
Schnell, Christian
Brueggen, Joseph
Ferretti, Mireille
Schmiedeberg, Niko
Wood, Jeanette M.
Furet, Pascal
Imbach, Patricia
author_facet Martiny-Baron, Georg
Holzer, Philipp
Billy, Eric
Schnell, Christian
Brueggen, Joseph
Ferretti, Mireille
Schmiedeberg, Niko
Wood, Jeanette M.
Furet, Pascal
Imbach, Patricia
author_sort Martiny-Baron, Georg
collection PubMed
description EphB4 and its cognitive ligand ephrinB2 play an important role in embryonic vessel development and vascular remodeling. In addition, several reports suggest that this receptor ligand pair is also involved in pathologic vessel formation in adults including tumor angiogenesis. Eph/ephrin signaling is a complex phenomena characterized by receptor forward signaling through the tyrosine kinase of the receptor and ephrin reverse signaling through various protein–protein interaction domains and phosphorylation motifs of the ephrin ligands. Therefore, interfering with EphR/ephrin signaling by the means of targeted gene ablation, soluble receptors, dominant negative mutants or antisense molecules often does not allow to discriminate between inhibition of Eph/ephrin forward and reverse signaling. We developed a specific small molecular weight kinase inhibitor of the EphB4 kinase, NVP-BHG712, which inhibits EphB4 kinase activity in the low nanomolar range in cellular assays showed high selectivity for targeting the EphB4 kinase when profiled against other kinases in biochemical as well as in cell based assays. Furthermore, NVP-BHG712 shows excellent pharmacokinetic properties and potently inhibits EphB4 autophosphorylation in tissues after oral administration. In vivo, NVP-BHG712 inhibits VEGF driven vessel formation, while it has only little effects on VEGF receptor (VEGFR) activity in vitro or in cellular assays. The data shown here suggest a close cross talk between the VEGFR and EphR signaling during vessel formation. In addition to its established function in vascular remodeling and endothelial arterio-venous differentiation, EphB4 forward signaling appears to be an important mediator of VEGF induced angiogenesis since inhibition of EphB4 forward signaling is sufficient to inhibit VEGF induced angiogenesis.
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spelling pubmed-29416282010-10-07 The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis Martiny-Baron, Georg Holzer, Philipp Billy, Eric Schnell, Christian Brueggen, Joseph Ferretti, Mireille Schmiedeberg, Niko Wood, Jeanette M. Furet, Pascal Imbach, Patricia Angiogenesis Original Paper EphB4 and its cognitive ligand ephrinB2 play an important role in embryonic vessel development and vascular remodeling. In addition, several reports suggest that this receptor ligand pair is also involved in pathologic vessel formation in adults including tumor angiogenesis. Eph/ephrin signaling is a complex phenomena characterized by receptor forward signaling through the tyrosine kinase of the receptor and ephrin reverse signaling through various protein–protein interaction domains and phosphorylation motifs of the ephrin ligands. Therefore, interfering with EphR/ephrin signaling by the means of targeted gene ablation, soluble receptors, dominant negative mutants or antisense molecules often does not allow to discriminate between inhibition of Eph/ephrin forward and reverse signaling. We developed a specific small molecular weight kinase inhibitor of the EphB4 kinase, NVP-BHG712, which inhibits EphB4 kinase activity in the low nanomolar range in cellular assays showed high selectivity for targeting the EphB4 kinase when profiled against other kinases in biochemical as well as in cell based assays. Furthermore, NVP-BHG712 shows excellent pharmacokinetic properties and potently inhibits EphB4 autophosphorylation in tissues after oral administration. In vivo, NVP-BHG712 inhibits VEGF driven vessel formation, while it has only little effects on VEGF receptor (VEGFR) activity in vitro or in cellular assays. The data shown here suggest a close cross talk between the VEGFR and EphR signaling during vessel formation. In addition to its established function in vascular remodeling and endothelial arterio-venous differentiation, EphB4 forward signaling appears to be an important mediator of VEGF induced angiogenesis since inhibition of EphB4 forward signaling is sufficient to inhibit VEGF induced angiogenesis. Springer Netherlands 2010-08-29 2010 /pmc/articles/PMC2941628/ /pubmed/20803239 http://dx.doi.org/10.1007/s10456-010-9183-z Text en © The Author(s) 2010 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Original Paper
Martiny-Baron, Georg
Holzer, Philipp
Billy, Eric
Schnell, Christian
Brueggen, Joseph
Ferretti, Mireille
Schmiedeberg, Niko
Wood, Jeanette M.
Furet, Pascal
Imbach, Patricia
The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title_full The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title_fullStr The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title_full_unstemmed The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title_short The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis
title_sort small molecule specific ephb4 kinase inhibitor nvp-bhg712 inhibits vegf driven angiogenesis
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2941628/
https://www.ncbi.nlm.nih.gov/pubmed/20803239
http://dx.doi.org/10.1007/s10456-010-9183-z
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