Loading...
Thumbnail Image
Publication

The structure of FMNL2-Cdc42 yields insights into the mechanism of lamellipodia and filopodia formation.

Kühn, Sonja
Erdmann, Constanze
Kage, Frieda
Block, Jennifer
Schwenkmezger, Lisa
Steffen, Anika
Rottner, Klemens
Geyer, Matthias
Citations
Altmetric:
Advisors
Editors
Other Contributors
Issue Date
2015
Submitted date
Other Titles
Abstract
Formins are actin polymerization factors that elongate unbranched actin filaments at the barbed end. Rho family GTPases activate Diaphanous-related formins through the relief of an autoregulatory interaction. The crystal structures of the N-terminal domains of human FMNL1 and FMNL2 in complex with active Cdc42 show that Cdc42 mediates contacts with all five armadillo repeats of the formin with specific interactions formed by the Rho-GTPase insert helix. Mutation of three residues within Rac1 results in a gain-of-function mutation for FMNL2 binding and reconstitution of the Cdc42 phenotype in vivo. Dimerization of FMNL1 through a parallel coiled coil segment leads to formation of an umbrella-shaped structure that—together with Cdc42—spans more than 15 nm in diameter. The two interacting FMNL-Cdc42 heterodimers expose six membrane interaction motifs on a convex protein surface, the assembly of which may facilitate actin filament elongation at the leading edge of lamellipodia and filopodia.
Citation
The structure of FMNL2-Cdc42 yields insights into the mechanism of lamellipodia and filopodia formation. 2015, 6:7088 Nat Commun
Publisher
PubMed ID
PubMed Central ID
Additional Links
Embedded video
Type
Article
Language
en
Description
Series/Report no.
ISSN
2041-1723
EISSN
ISBN
ISMN
Gov't Doc #
Sponsors
License