α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.

The arginine-glycine-aspartate (RGD) motif in fibronectin (FN) represents the major binding site for α5β1 and αvβ3 integrins. Mice lacking a functional RGD motif in FN (FN(RGE/RGE)) or α5 integrin develop identical phenotypes characterized by embryonic lethality and a severely shortened posterior tr...

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Main Authors: Amparo Girós, Katja Grgur, Achim Gossler, Mercedes Costell
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3142108?pdf=render
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spelling doaj-912f71416a864ccc8e48fdc27e27393a2020-11-25T01:35:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0167e2200210.1371/journal.pone.0022002α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.Amparo GirósKatja GrgurAchim GosslerMercedes CostellThe arginine-glycine-aspartate (RGD) motif in fibronectin (FN) represents the major binding site for α5β1 and αvβ3 integrins. Mice lacking a functional RGD motif in FN (FN(RGE/RGE)) or α5 integrin develop identical phenotypes characterized by embryonic lethality and a severely shortened posterior trunk with kinked neural tubes. Here we show that the FN(RGE/RGE) embryos arrest both segmentation and axis elongation. The arrest is evident at about E9.0, corresponding to a stage when gastrulation ceases and the tail bud-derived presomitic mesoderm (PSM) induces α5 integrin expression and assumes axis elongation. At this stage cells of the posterior part of the PSM in wild type embryos are tightly coordinated, express somitic oscillator and cyclic genes required for segmentation, and form a tapered tail bud that extends caudally. In contrast, the posterior PSM cells in FN(RGE/RGE) embryos lost their tight associations, formed a blunt tail bud unable to extend the body axis, failed to induce the synchronised expression of Notch1 and cyclic genes and cease the formation of new somites. Mechanistically, the interaction of PSM cells with the RGD motif of FN is required for dynamic formation of lamellipodia allowing motility and cell-cell contact formation, as these processes fail when wild type PSM cells are seeded into a FN matrix derived from FN(RGE/RGE) fibroblasts. Thus, α5β1-mediated adhesion to FN in the PSM regulates the dynamics of membrane protrusions and cell-to-cell communication essential for elongation and segmentation of the body axis.http://europepmc.org/articles/PMC3142108?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Amparo Girós
Katja Grgur
Achim Gossler
Mercedes Costell
spellingShingle Amparo Girós
Katja Grgur
Achim Gossler
Mercedes Costell
α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
PLoS ONE
author_facet Amparo Girós
Katja Grgur
Achim Gossler
Mercedes Costell
author_sort Amparo Girós
title α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
title_short α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
title_full α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
title_fullStr α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
title_full_unstemmed α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
title_sort α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description The arginine-glycine-aspartate (RGD) motif in fibronectin (FN) represents the major binding site for α5β1 and αvβ3 integrins. Mice lacking a functional RGD motif in FN (FN(RGE/RGE)) or α5 integrin develop identical phenotypes characterized by embryonic lethality and a severely shortened posterior trunk with kinked neural tubes. Here we show that the FN(RGE/RGE) embryos arrest both segmentation and axis elongation. The arrest is evident at about E9.0, corresponding to a stage when gastrulation ceases and the tail bud-derived presomitic mesoderm (PSM) induces α5 integrin expression and assumes axis elongation. At this stage cells of the posterior part of the PSM in wild type embryos are tightly coordinated, express somitic oscillator and cyclic genes required for segmentation, and form a tapered tail bud that extends caudally. In contrast, the posterior PSM cells in FN(RGE/RGE) embryos lost their tight associations, formed a blunt tail bud unable to extend the body axis, failed to induce the synchronised expression of Notch1 and cyclic genes and cease the formation of new somites. Mechanistically, the interaction of PSM cells with the RGD motif of FN is required for dynamic formation of lamellipodia allowing motility and cell-cell contact formation, as these processes fail when wild type PSM cells are seeded into a FN matrix derived from FN(RGE/RGE) fibroblasts. Thus, α5β1-mediated adhesion to FN in the PSM regulates the dynamics of membrane protrusions and cell-to-cell communication essential for elongation and segmentation of the body axis.
url http://europepmc.org/articles/PMC3142108?pdf=render
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