Structural decoding of netrin-4 reveals a regulatory function towards mature basement membranes.
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BORIS DOI
Date of Publication
November 30, 2016
Publication Type
Article
Division/Institute
Author
Reuten, Raphael | |
Patel, Trushar R | |
McDougall, Matthew | |
Rama, Nicolas | |
Nikodemus, Denise | |
Gibert, Benjamin | |
Delcros, Jean-Guy | |
Prein, Carina | |
Meier, Markus | |
Metzger, Stéphanie | |
Zhou, Zhigang | |
Kaltenberg, Jennifer | |
McKee, Karen K | |
Bald, Tobias | |
Tüting, Thomas | |
Zigrino, Paola | |
Bloch, Wilhelm | |
Clausen-Schaumann, Hauke | |
Poschl, Ernst | |
Yurchenco, Peter D | |
Ehrbar, Martin | |
Mehlen, Patrick | |
Stetefeld, Jörg | |
Koch, Manuel |
Series
Nature communications
ISSN or ISBN (if monograph)
2041-1723
Publisher
Nature Publishing Group
Language
English
Publisher DOI
PubMed ID
27901020
Description
Netrins, a family of laminin-related molecules, have been proposed to act as guidance cues either during nervous system development or the establishment of the vascular system. This was clearly demonstrated for netrin-1 via its interaction with the receptors DCC and UNC5s. However, mainly based on shared homologies with netrin-1, netrin-4 was also proposed to play a role in neuronal outgrowth and developmental/pathological angiogenesis via interactions with netrin-1 receptors. Here, we present the high-resolution structure of netrin-4, which shows unique features in comparison with netrin-1, and show that it does not bind directly to any of the known netrin-1 receptors. We show that netrin-4 disrupts laminin networks and basement membranes (BMs) through high-affinity binding to the laminin γ1 chain. We hypothesize that this laminin-related function is essential for the previously described effects on axon growth promotion and angiogenesis. Our study unveils netrin-4 as a non-enzymatic extracellular matrix protein actively disrupting pre-existing BMs.
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