Article

  • The EMBO Journal (2008) 27, 618 - 628
  • doi:10.1038/emboj.2008.7

Published online: 31 January 2008

The mammalian formin FHOD1 is activated through phosphorylation by ROCK and mediates thrombin-induced stress fibre formation in endothelial cells

Ryu Takeya1,2, Kenichiro Taniguchi1, Shuh Narumiya3 and Hideki Sumimoto1,2

  1. Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan
  2. CREST, Japan Science and Technology Agency, Tokyo, Japan
  3. Department of Pharmacology, Faculty of Medicine, Kyoto University, Kyoto, Japan

Correspondence to:

Hideki Sumimoto, Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan. Tel.: +81 92 642 6806; Fax: +81 92 642 6807; E-mail: hsumi@bioreg.kyushu-u.ac.jp

Received 7 July 2007; Accepted 9 January 2008


Formin-family proteins, in the active state, form actin-based structures such as stress fibres. Their activation mechanisms, however, are largely unknown except that mDia and its closely related formins can be activated by direct binding of the small GTPase Rho or Cdc42. Here we show that the Rho-dependent protein kinase ROCK phosphorylates the C-terminal residues Ser1131, Ser1137, and Thr1141 of formin homology domain protein 1 (FHOD1), a major endothelial formin that is normally autoinhibited by intramolecular interaction between the N- and C-terminal regions. Phosphorylation of FHOD1 at the three residues fully disrupts the autoinhibitory interaction, which culminates in formation of stress fibres. We also demonstrate that, in vascular endothelial cells, thrombin, a vasoactive substance leading to Rho activation, elicits both FHOD1 phosphorylation and stress fibre formation in a ROCK-dependent manner, and that FHOD1 depletion by RNA interference impairs thrombin-induced stress fibre formation. Based on these findings we propose a novel mechanism for activation of formin-family proteins: ROCK, activated by G protein-coupled receptor ligands such as thrombin, directly phosphorylates FHOD1 at the C-terminal region, which renders this formin in the active form, leading to stress fibre formation.

  • Keywords:

    • endothelial cell,
    • FHOD1,
    • formin,
    • ROCK,
    • stress fibre
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