The netrin receptor UNC5B mediates guidance events controlling morphogenesis of the vascular system View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2004-10-27

AUTHORS

Xiaowei Lu, Ferdinand le Noble, Li Yuan, Quingjan Jiang, Benjamin de Lafarge, Daisuke Sugiyama, Christiane Bréant, Filip Claes, Frederik De Smet, Jean-Léon Thomas, Monica Autiero, Peter Carmeliet, Marc Tessier-Lavigne, Anne Eichmann

ABSTRACT

Blood vessels and nerves are complex, branched structures that share a high degree of anatomical similarity. Guidance of vessels and nerves has to be exquisitely regulated to ensure proper wiring of both systems. Several regulators of axon guidance have been identified and some of these are also expressed in endothelial cells; however, the extent to which their guidance functions are conserved in the vascular system is still incompletely understood. We show here that the repulsive netrin receptor UNC5B is expressed by endothelial tip cells of the vascular system. Disruption of the Unc5b gene in mice, or of Unc5b or netrin-1a in zebrafish, leads to aberrant extension of endothelial tip cell filopodia, excessive vessel branching and abnormal navigation. Netrin-1 causes endothelial filopodial retraction, but only when UNC5B is present. Thus, UNC5B functions as a repulsive netrin receptor in endothelial cells controlling morphogenesis of the vascular system. More... »

PAGES

179-186

Journal

TITLE

Nature

ISSUE

7014

VOLUME

432

Identifiers

URI

http://scigraph.springernature.com/pub.10.1038/nature03080

DOI

http://dx.doi.org/10.1038/nature03080

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1031468029

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/15510105


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36 schema:description Blood vessels and nerves are complex, branched structures that share a high degree of anatomical similarity. Guidance of vessels and nerves has to be exquisitely regulated to ensure proper wiring of both systems. Several regulators of axon guidance have been identified and some of these are also expressed in endothelial cells; however, the extent to which their guidance functions are conserved in the vascular system is still incompletely understood. We show here that the repulsive netrin receptor UNC5B is expressed by endothelial tip cells of the vascular system. Disruption of the Unc5b gene in mice, or of Unc5b or netrin-1a in zebrafish, leads to aberrant extension of endothelial tip cell filopodia, excessive vessel branching and abnormal navigation. Netrin-1 causes endothelial filopodial retraction, but only when UNC5B is present. Thus, UNC5B functions as a repulsive netrin receptor in endothelial cells controlling morphogenesis of the vascular system.
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