PLoS ONE (Jan 2012)

The heterotrimeric laminin coiled-coil domain exerts anti-adhesive effects and induces a pro-invasive phenotype.

  • Patricia Santos-Valle,
  • Irene Guijarro-Muñoz,
  • Angel M Cuesta,
  • Vanesa Alonso-Camino,
  • Maider Villate,
  • Ana Alvarez-Cienfuegos,
  • Francisco J Blanco,
  • Laura Sanz,
  • Luis Alvarez-Vallina

DOI
https://doi.org/10.1371/journal.pone.0039097
Journal volume & issue
Vol. 7, no. 6
p. e39097

Abstract

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Laminins are large heterotrimeric cross-shaped extracellular matrix glycoproteins with terminal globular domains and a coiled-coil region through which the three chains are assembled and covalently linked. Laminins are key components of basement membranes, and they serve as attachment sites for cell adhesion, migration and proliferation. In this work, we produced a recombinant fragment comprising the entire laminin coiled-coil of the α1-, β1-, and γ1-chains that assemble into a stable heterotrimeric coiled-coil structure independently of the rest of the molecule. This domain was biologically active and not only failed to serve as a substrate for cell attachment, spreading and focal adhesion formation but also inhibited cell adhesion to laminin when added to cells in a soluble form at the time of seeding. Furthermore, gene array expression profiling in cells cultured in the presence of the laminin coiled-coil domain revealed up-regulation of genes involved in cell motility and invasion. These findings were confirmed by real-time quantitative PCR and zymography assays. In conclusion, this study shows for the first time that the laminin coiled-coil domain displays anti-adhesive functions and has potential implications for cell migration during matrix remodeling.