Electrostatic interactions between the Bni1p formin FH2 domain and actin influence actin filament nucleation Journal Article


Authors: Baker, J. L.; Courtemanche, N.; Parton, D. L.; McCullagh, M.; Pollard, T. D.; Voth, G. A.
Article Title: Electrostatic interactions between the Bni1p formin FH2 domain and actin influence actin filament nucleation
Abstract: Formins catalyze nucleation and growth of actin filaments. Here, we study the structure and interactions of actin with the FH2 domain of budding yeast formin Bni1p. We built an all-atom model of the formin dimer on an Oda actin filament 7-mer and studied structural relaxation and interprotein interactions by molecular dynamics simulations. These simulations produced a refined model for the FH2 dimer associated with the barbed end of the filament and showed electrostatic interactions between the formin knob and actin target-binding cleft. Mutations of two formin residues contributing to these interactions (R1423N, K1467L, or both) reduced the interaction energies between the proteins, and in coarse-grained simulations, the formin lost more interprotein contacts with an actin dimer than with an actin 7-mer. Biochemical experiments confirmed a strong influence of these mutations on Bni1p-mediated actin filament nucleation, but not elongation, suggesting that different interactions contribute to these two functions of formins.
Keywords: actin; molecular dynamics; protein interaction; molecular interaction; saccharomycetales; protein structure; observational study; static electricity; x ray diffraction; dimer; actin filament; priority journal; article
Journal Title: Structure
Volume: 23
Issue: 1
ISSN: 0969-2126
Publisher: Cell Press  
Date Published: 2015-01-06
Start Page: 68
End Page: 79
Language: English
DOI: 10.1016/j.str.2014.10.014
PROVIDER: scopus
PMCID: PMC4286494
PUBMED: 25482541
DOI/URL:
Notes: Export Date: 2 February 2015 -- Source: Scopus
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  1. Daniel Lawrence Parton
    9 Parton