The RGD motif in fibronectin is essential for development but dispensable for fibril assembly

Seiichiro Takahashi, Michael Leiss, Markus Moser, Tomoo Ohashi, Tomoe Kitao, Dominik Heckmann, Alexander Pfeifer, Horst Kessler, Junichi Takagi, Harold P. Erickson, Reinhard Fässler

Research output: Contribution to journalArticlepeer-review

168 Scopus citations

Abstract

Fibronectin (FN) is secreted as a disulfide-bonded FN dimer. Each subunit contains three types of repeating modules: FN-I, FN-II, and FN-III. The interactions of α5β1 or αv integrins with the RGD motif of FN-III repeat 10 (FN-III10) are considered an essential step in the assembly of FN fibrils. To test this hypothesis in vivo, we replaced the RGD motif with the inactive RGE in mice. FN-RGE homozygous embryos die at embryonic day 10 with shortened posterior trunk, absent tail bud-derived somites, and severe vascular defects resembling the phenotype of α5 integrin-deficient mice. Surprisingly, the absence of a functional RGD motif in FN did not compromise assembly of an FN matrix in mutant embryos or on mutant cells. Matrix assembly assays and solid-phase binding assays reveal that αvβ3 integrin assembles FN-RGE by binding an isoDGR motif in FN-I5, which is generated by the nonenzymatic rearrangement of asparagines (N) into an iso-aspartate (iso-D). Our findings demonstrate that FN contains a novel motif for integrin binding and fibril formation whose activity is controlled by amino acid modification.

Original languageEnglish
Pages (from-to)167-178
Number of pages12
JournalJournal of Cell Biology
Volume178
Issue number1
DOIs
StatePublished - 2 Jul 2007

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