| Literature DB >> 22193718 |
Dominique Didry1, Francois-Xavier Cantrelle, Clotilde Husson, Pierre Roblin, Anna M Eswara Moorthy, Javier Perez, Christophe Le Clainche, Maud Hertzog, Eric Guittet, Marie-France Carlier, Carine van Heijenoort, Louis Renault.
Abstract
β-Thymosin (βT) and WH2 domains are widespread, intrinsically disordered actin-binding peptides that display significant sequence variability and different regulations of actin self-assembly in motile and morphogenetic processes. Here, we reveal the structural mechanisms by which, in their 1:1 stoichiometric complexes with actin, they either inhibit assembly by sequestering actin monomers like Thymosin-β4, or enhance motility by directing polarized filament assembly like Ciboulot βT. We combined mutational, functional or structural analysis by X-ray crystallography, SAXS (small angle X-ray scattering) and NMR on Thymosin-β4, Ciboulot, TetraThymosinβ and the long WH2 domain of WASP-interacting protein. The latter sequesters G-actin with the same molecular mechanisms as Thymosin-β4. Functionally different βT/WH2 domains differ by distinct dynamics of their C-terminal half interactions with G-actin pointed face. These C-terminal interaction dynamics are controlled by the strength of electrostatic interactions with G-actin. At physiological ionic strength, a single salt bridge with actin located next to their central LKKT/V motif induces G-actin sequestration in both isolated long βT and WH2 domains. The results open perspectives for elucidating the functions of βT/WH2 domains in other modular proteins.Entities:
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Year: 2011 PMID: 22193718 PMCID: PMC3280557 DOI: 10.1038/emboj.2011.461
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598