Arp2/3 complex is an evolutionarily conserved assembly of seven subunits with a key role in cellular motility. In response to various signals it mediates the assembly of branched actin filament networks during cellular movements. We propose a range of complementary methods to learn how nucleotides and activating peptides influence the conformation of Arp2/3 complex and how Arp2/3 complex forms actin filament branches. (1) The Pollard and Almo labs will use X-ray crystallography and radiation foot printing to provide high resolution structures of active conformations of Arp2/3 complex to document the conformational changes required to activate the complex for nucleating actin filaments and map interactions between the protein components of branches including the side of the mother filament. (2) The Rosen lab will use NMR to analyze activator peptide binding to Arp2/3 complex and conformational changes induced by activator peptides and nucleotides. (3) The Hanein and Volkmann labs will use electron cryomicroscopy and single-particle analysis to identify individual subunits in a range of conformationaI states of Arp2/3 complex with various bound nucleotides and activating peptides. They will also reconstruct Arp2/3 complex bound to the side of an actin filament and the structure of actin filament branches formed by Arp2/3 complex. (4) The Li lab will prepare novel forms of yeast Arp2/3 complex with isotopically labeled subunits for NMR and tagged subunits for labeling with gold for electron microscopy. The Li lab will use mutagenesis to generate Arp2/3 complex with faulty nucleotide binding or hydrolysis or other defects to trap conformational states useful for analysis of structures, biochemical pathways and physiological mechanisms.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Program Projects (P01)
Project #
5P01GM066311-02
Application #
6756476
Study Section
Special Emphasis Panel (ZRG1-CDF-4 (01))
Program Officer
Rodewald, Richard D
Project Start
2003-06-10
Project End
2008-05-31
Budget Start
2004-06-01
Budget End
2005-05-31
Support Year
2
Fiscal Year
2004
Total Cost
$1,750,517
Indirect Cost
Name
Yale University
Department
Biochemistry
Type
Schools of Arts and Sciences
DUNS #
043207562
City
New Haven
State
CT
Country
United States
Zip Code
06520
Anderson, Karen L; Page, Christopher; Swift, Mark F et al. (2017) Nano-scale actin-network characterization of fibroblast cells lacking functional Arp2/3 complex. J Struct Biol 197:312-321
Wang, Pei-Shan; Chou, Fu-Sheng; Ramachandran, Sreekumar et al. (2016) Crucial roles of the Arp2/3 complex during mammalian corticogenesis. Development 143:2741-52
Pollard, Thomas D (2016) Actin and Actin-Binding Proteins. Cold Spring Harb Perspect Biol 8:
Page, Christopher; Hanein, Dorit; Volkmann, Niels (2015) Accurate membrane tracing in three-dimensional reconstructions from electron cryotomography data. Ultramicroscopy 155:20-26
Jurgenson, Christopher T; Pollard, Thomas D (2015) Crystals of the Arp2/3 complex in two new space groups with structural information about actin-related protein 2 and potential WASP binding sites. Acta Crystallogr F Struct Biol Commun 71:1161-8
Li, Yongchao; Wang, Pei-Shan; Lucas, George et al. (2015) ARP2/3 complex is required for directional migration of neural stem cell-derived oligodendrocyte precursors in electric fields. Stem Cell Res Ther 6:41
Tee, Yee Han; Shemesh, Tom; Thiagarajan, Visalatchi et al. (2015) Cellular chirality arising from the self-organization of the actin cytoskeleton. Nat Cell Biol 17:445-57
Suraneni, Praveen; Fogelson, Ben; Rubinstein, Boris et al. (2015) A mechanism of leading-edge protrusion in the absence of Arp2/3 complex. Mol Biol Cell 26:901-12
Volkmann, Niels; Page, Christopher; Li, Rong et al. (2014) Three-dimensional reconstructions of actin filaments capped by Arp2/3 complex. Eur J Cell Biol 93:179-83
Volkmann, Niels (2014) The joys and perils of flexible fitting. Adv Exp Med Biol 805:137-55

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