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PMID: 14992721 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The core FH2 domain of diaphanous-related formins is an elongated actin binding protein that inhibits polymerization.

Molecular cell ·Vol. 13 ·No. 4 ·2004-02-27 ·Pages 511-22

Shimada A, Nyitrai M, Vetter IR, Kühlmann D, Bugyi B, Narumiya S, Geeves MA, Wittinghofer A

Abstract

Diaphanous-related formins (Drf) are activated by Rho GTP binding proteins and induce polymerization of unbranched actin filaments. They contain three formin homology domains. Evidence as to the effect of formins on actin polymerization were obtained using FH2/FH1 constructs of various length from different Drfs. Here we define the core FH2 domain as a proteolytically stable domain of approximately 338 residues. The monomeric FH2 domains from mDia1 and mDia3 inhibit polymerization of actin and can bind in a 1:1 complex with F-actin at micromolar concentrations. The X-ray structure analysis of the domain shows an elongated, crescent-shaped molecule consisting of three helical subdomains. The most highly conserved regions of the domain span a distance of 75 A and are both required for barbed-end inhibition. A construct containing an additional 72 residue linker has dramatically different properties: It oligomerizes and induces actin polymerization at subnanomolar concentration.

MeSH Terms
Actins/chemistry,metabolism Alanine/metabolism Amino Acid Motifs Amino Acid Sequence Amino Acid Substitution Animals Conserved Sequence Crystallography, X-Ray Kinetics Mice Models, Molecular Molecular Sequence Data Protein Binding Protein Structure, Secondary Protein Structure, Tertiary Sequence Homology, Amino Acid
Chemicals
Actins Alanine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Shimada Atsushi
Max-Planck Institut für Molekulare Physiologie, Otto Hahn Strasse 11, D-44227 Dortmund, Germany.
Nyitrai Miklós
Vetter Ingrid R
Kühlmann Dorothee
Bugyi Beáta
Narumiya Shuh
Geeves Michael A
Wittinghofer Alfred
Article Info
Journal
Molecular cell
Abbr.
Mol Cell
ISSN
1097-2765
Published
2004-02-27
Pages
511-22
Language
English
Region
United States
NLM ID
9802571
Subset
IM
Databases
PDB
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