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Relationships between Rap1b, affinity modulation of integrin αIIbβ3 and the actin cytoskeleton

  • Alessandra Bertoni
  • , Seiji Tadokoro
  • , Koji Eto
  • , Nisar Pampori
  • , Leslie V. Parise
  • , Gilbert C. White
  • , Sanford J. Shattil

Research output: Contribution to journalArticlepeer-review

Abstract

The affinity of integrin αIIbβ3for fibrinogen is controlled by inside-out signals that are triggered by agonists like thrombin. Agonist treatment of platelets also activates Rap1b, a small GTPase known to promote integrin-dependent adhesion of other cells. Therefore, we investigated the role of Rap1b in αIIbβ3function by viral transduction of GFP-Rapl chimeras into murine megakaryocytes, which exhibit inside-out signaling similar to platelets. Expression of constitutively active GFP-Rap1b (V12) had no effect on unstimulated megakaryocytes, but it greatly augmented fibrinogen binding to αIIbβ3induced by a PAR4 thrombin receptor agonist (p < 0.01). The Rap1b effect was cell-autonomous and was prevented by pre-treating cells with cytochalasin D or latrunculin A to inhibit actin polymerization. Raplb-dependent fibrinogen binding to megakaryocytes was blocked by POW-2, a novel monovalent antibody Fab fragment specific for high affinity murine αIIbβ3In contrast to GFP-Rap1b (V12), expression of GFP-RaplGAP, which deactivates endogenous Rapl, inhibited agonist-induced fibrinogen binding (p < 0.01), as did dominant-negative GFP-Rap1b (N17) (p < 0.05). None of these treatments affected surface expression of αIIbβ3. These studies establish that Rap1b can augment agonist-induced ligand binding to αIIbβ3 through effects on integrin affinity, possibly by modulating αIIbβ3interactions with the actin cytoskeleton.

Original languageEnglish
Pages (from-to)25715-25721
Number of pages7
JournalJournal of Biological Chemistry
Volume277
Issue number28
DOIs
Publication statusPublished - 12 Jul 2002
Externally publishedYes

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