Cargando…

Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth

Vascular endothelial growth factor receptor‐3 (VEGFR3) signalling promotes lymphangiogenesis. While there are many reported mechanisms of VEGFR3 activation, there is little understanding of how VEGFR3 signalling is attenuated to prevent lymphatic vascular overgrowth and ensure proper lymph vessel de...

Descripción completa

Detalles Bibliográficos
Autores principales: Urner, Sofia, Planas‐Paz, Lara, Hilger, Laura Sophie, Henning, Carina, Branopolski, Anna, Kelly‐Goss, Molly, Stanczuk, Lukas, Pitter, Bettina, Montanez, Eloi, Peirce, Shayn M, Mäkinen, Taija, Lammert, Eckhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331728/
https://www.ncbi.nlm.nih.gov/pubmed/30518533
http://dx.doi.org/10.15252/embj.201899322
_version_ 1783387190216097792
author Urner, Sofia
Planas‐Paz, Lara
Hilger, Laura Sophie
Henning, Carina
Branopolski, Anna
Kelly‐Goss, Molly
Stanczuk, Lukas
Pitter, Bettina
Montanez, Eloi
Peirce, Shayn M
Mäkinen, Taija
Lammert, Eckhard
author_facet Urner, Sofia
Planas‐Paz, Lara
Hilger, Laura Sophie
Henning, Carina
Branopolski, Anna
Kelly‐Goss, Molly
Stanczuk, Lukas
Pitter, Bettina
Montanez, Eloi
Peirce, Shayn M
Mäkinen, Taija
Lammert, Eckhard
author_sort Urner, Sofia
collection PubMed
description Vascular endothelial growth factor receptor‐3 (VEGFR3) signalling promotes lymphangiogenesis. While there are many reported mechanisms of VEGFR3 activation, there is little understanding of how VEGFR3 signalling is attenuated to prevent lymphatic vascular overgrowth and ensure proper lymph vessel development. Here, we show that endothelial cell‐specific depletion of integrin‐linked kinase (ILK) in mouse embryos hyper‐activates VEGFR3 signalling and leads to overgrowth of the jugular lymph sacs/primordial thoracic ducts, oedema and embryonic lethality. Lymphatic endothelial cell (LEC)‐specific deletion of Ilk in adult mice initiates lymphatic vascular expansion in different organs, including cornea, skin and myocardium. Knockdown of ILK in human LECs triggers VEGFR3 tyrosine phosphorylation and proliferation. ILK is further found to impede interactions between VEGFR3 and β1 integrin in vitro and in vivo, and endothelial cell‐specific deletion of an Itgb1 allele rescues the excessive lymphatic vascular growth observed upon ILK depletion. Finally, mechanical stimulation disrupts the assembly of ILK and β1 integrin, releasing the integrin to enable its interaction with VEGFR3. Our data suggest that ILK facilitates mechanically regulated VEGFR3 signalling via controlling its interaction with β1 integrin and thus ensures proper development of lymphatic vessels.
format Online
Article
Text
id pubmed-6331728
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-63317282019-01-16 Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth Urner, Sofia Planas‐Paz, Lara Hilger, Laura Sophie Henning, Carina Branopolski, Anna Kelly‐Goss, Molly Stanczuk, Lukas Pitter, Bettina Montanez, Eloi Peirce, Shayn M Mäkinen, Taija Lammert, Eckhard EMBO J Articles Vascular endothelial growth factor receptor‐3 (VEGFR3) signalling promotes lymphangiogenesis. While there are many reported mechanisms of VEGFR3 activation, there is little understanding of how VEGFR3 signalling is attenuated to prevent lymphatic vascular overgrowth and ensure proper lymph vessel development. Here, we show that endothelial cell‐specific depletion of integrin‐linked kinase (ILK) in mouse embryos hyper‐activates VEGFR3 signalling and leads to overgrowth of the jugular lymph sacs/primordial thoracic ducts, oedema and embryonic lethality. Lymphatic endothelial cell (LEC)‐specific deletion of Ilk in adult mice initiates lymphatic vascular expansion in different organs, including cornea, skin and myocardium. Knockdown of ILK in human LECs triggers VEGFR3 tyrosine phosphorylation and proliferation. ILK is further found to impede interactions between VEGFR3 and β1 integrin in vitro and in vivo, and endothelial cell‐specific deletion of an Itgb1 allele rescues the excessive lymphatic vascular growth observed upon ILK depletion. Finally, mechanical stimulation disrupts the assembly of ILK and β1 integrin, releasing the integrin to enable its interaction with VEGFR3. Our data suggest that ILK facilitates mechanically regulated VEGFR3 signalling via controlling its interaction with β1 integrin and thus ensures proper development of lymphatic vessels. John Wiley and Sons Inc. 2018-12-05 2019-01-15 /pmc/articles/PMC6331728/ /pubmed/30518533 http://dx.doi.org/10.15252/embj.201899322 Text en © 2018 The Authors Open access.
spellingShingle Articles
Urner, Sofia
Planas‐Paz, Lara
Hilger, Laura Sophie
Henning, Carina
Branopolski, Anna
Kelly‐Goss, Molly
Stanczuk, Lukas
Pitter, Bettina
Montanez, Eloi
Peirce, Shayn M
Mäkinen, Taija
Lammert, Eckhard
Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title_full Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title_fullStr Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title_full_unstemmed Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title_short Identification of ILK as a critical regulator of VEGFR3 signalling and lymphatic vascular growth
title_sort identification of ilk as a critical regulator of vegfr3 signalling and lymphatic vascular growth
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331728/
https://www.ncbi.nlm.nih.gov/pubmed/30518533
http://dx.doi.org/10.15252/embj.201899322
work_keys_str_mv AT urnersofia identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT planaspazlara identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT hilgerlaurasophie identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT henningcarina identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT branopolskianna identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT kellygossmolly identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT stanczuklukas identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT pitterbettina identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT montanezeloi identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT peirceshaynm identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT makinentaija identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth
AT lammerteckhard identificationofilkasacriticalregulatorofvegfr3signallingandlymphaticvasculargrowth