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PDBsum entry 1pgu

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protein metals Protein-protein interface(s) links
Protein binding PDB id
1pgu

 

 

 

 

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Contents
Protein chains
606 a.a. *
Metals
_ZN ×2
Waters ×474
* Residue conservation analysis
PDB id:
1pgu
Name: Protein binding
Title: Yeast actin interacting protein 1 (aip1), se-met protein, monoclinic crystal form
Structure: Actin interacting protein 1. Chain: a, b. Engineered: yes. Mutation: yes
Source: Saccharomyces cerevisiae. Baker's yeast. Organism_taxid: 4932. Gene: aip1 or ymr092c or ym9582.17c. Expressed in: escherichia coli. Expression_system_taxid: 562.
Resolution:
2.30Å     R-factor:   0.202     R-free:   0.257
Authors: W.C.Voegtli,A.Y.Madrona,D.K.Wilson
Key ref:
W.C.Voegtli et al. (2003). The structure of Aip1p, a WD repeat protein that regulates Cofilin-mediated actin depolymerization. J Biol Chem, 278, 34373-34379. PubMed id: 12807914 DOI: 10.1074/jbc.M302773200
Date:
28-May-03     Release date:   15-Jul-03    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chains
Pfam   ArchSchema ?
P46680  (AIP1_YEAST) -  Actin-interacting protein 1 from Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
Seq:
Struc:
 
Seq:
Struc:
615 a.a.
606 a.a.*
Key:    PfamA domain  Secondary structure  CATH domain
* PDB and UniProt seqs differ at 1 residue position (black cross)

 

 
DOI no: 10.1074/jbc.M302773200 J Biol Chem 278:34373-34379 (2003)
PubMed id: 12807914  
 
 
The structure of Aip1p, a WD repeat protein that regulates Cofilin-mediated actin depolymerization.
W.C.Voegtli, A.Y.Madrona, D.K.Wilson.
 
  ABSTRACT  
 
Actin-interacting protein 1 (Aip1p) is a 67-kDa WD repeat protein known to regulate the depolymerization of actin filaments by cofilin and is conserved in organisms ranging from yeast to mammals. The crystal structure of Aip1p from Saccharomyces cerevisiae was determined to a 2.3-A resolution and a final crystallographic R-factor of 0.204. The structure reveals that the overall fold is formed by two connected seven-bladed beta-propellers and has important implications for the structure of Aip1 from other organisms and WD repeat-containing proteins in general. These results were unexpected because a maximum of 10 WD repeats had been reported in the literature for this protein using sequence data. The surfaces of the beta-propellers formed by the D-A and B-C loops are positioned adjacent to one another, giving Aip1p a shape that resembles an open "clamshell." The mapping of conserved residues to the structure of Aip1p reveals dense patches of conserved residues on the surface of one beta-propeller and at the interface of the two beta-propellers. These two patches of conserved residues suggest a potential binding site for F-actin on Aip1p and that the orientation of the beta-propellers with respect to one another plays a role in binding an actin-cofilin complex. In addition, the conserved interface between the domains is mediated by a number of interactions that appear to impart rigidity between the two domains of Aip1p and may make a large substrate-induced conformational change difficult.
 
  Selected figure(s)  
 
Figure 2.
FIG. 2. Stereoview of 2F[o] - F[c] electron density map contoured at 1.4 for residues 336-340, 350-354, and Trp-362 which confer rigidity at the -propeller interface.
Figure 3.
FIG. 3. Surface representations of Aip1p. A, Aip1p colored according to electrostatic potential: red, -10 kT; white, 0 kT; and blue, +10 kT. The molecule is in the same orientation as in Fig. 1A. B, Aip1p colored according to sequence conservation as defined under "Results." Regions of the molecular surface formed by conserved residues are colored purple. Orientation is the same as in A. C and D, Aip1p colored in the same manner as in A and B, respectively. The molecule is rotated 180° on the y axis relative to its orientation in A and B.
 
  The above figures are reprinted by permission from the ASBMB: J Biol Chem (2003, 278, 34373-34379) copyright 2003.  
  Figures were selected by an automated process.  

Literature references that cite this PDB file's key reference

  PubMed id Reference
21468892 C.Xu, and J.Min (2011).
Structure and function of WD40 domain proteins.
  Protein Cell, 2, 202-214.
PDB codes: 3e0c 3fm0 3i2n 3ow8
21220123 S.Yuan, X.Yu, M.Topf, L.Dorstyn, S.Kumar, S.J.Ludtke, and C.W.Akey (2011).
Structure of the Drosophila apoptosome at 6.9 å resolution.
  Structure, 19, 128-140.
PDB codes: 1vt4 3iz8
20668166 C.H.Choi, H.Patel, and D.L.Barber (2010).
Expression of actin-interacting protein 1 suppresses impaired chemotaxis of Dictyostelium cells lacking the Na+-H+ exchanger NHE1.
  Mol Biol Cell, 21, 3162-3170.  
20887964 H.G.Kim, J.W.Ahn, I.Kurth, R.Ullmann, H.T.Kim, A.Kulharya, K.S.Ha, Y.Itokawa, I.Meliciani, W.Wenzel, D.Lee, G.Rosenberger, M.Ozata, D.P.Bick, R.J.Sherins, T.Nagase, M.Tekin, S.H.Kim, C.H.Kim, H.H.Ropers, J.F.Gusella, V.Kalscheuer, C.Y.Choi, and L.C.Layman (2010).
WDR11, a WD protein that interacts with transcription factor EMX1, is mutated in idiopathic hypogonadotropic hypogonadism and Kallmann syndrome.
  Am J Hum Genet, 87, 465-479.  
20462491 S.Yuan, X.Yu, M.Topf, S.J.Ludtke, X.Wang, and C.W.Akey (2010).
Structure of an apoptosome-procaspase-9 CARD complex.
  Structure, 18, 571-583.
PDB codes: 3iyt 3iza
19377484 C.K.Lau, J.L.Bachorik, and G.Dreyfuss (2009).
Gemin5-snRNA interaction reveals an RNA binding function for WD repeat domains.
  Nat Struct Mol Biol, 16, 486-491.  
18372636 M.B.Heintzelman, and M.J.Mateer (2008).
GpMyoF, a WD40 repeat-containing myosin associated with the myonemes of Gregarina polymorpha.
  J Parasitol, 94, 158-168.  
  19204818 N.V.Valeyev, A.K.Downing, J.Sondek, and C.Deane (2008).
Electrostatic and Functional Analysis of the Seven-Bladed WD beta-Propellers.
  Evol Bioinform Online, 4, 203-216.  
17680689 T.J.Stevens, and M.Paoli (2008).
RCC1-like repeat proteins: a pangenomic, structurally diverse new superfamily of beta-propeller domains.
  Proteins, 70, 378-387.  
17392788 D.A.Hattendorf, A.Andreeva, A.Gangar, P.J.Brennwald, and W.I.Weis (2007).
Structure of the yeast polarity protein Sro7 reveals a SNARE regulatory mechanism.
  Nature, 446, 567-571.
PDB code: 2oaj
17473878 D.Fasshauer, and R.Jahn (2007).
Budding insights on cell polarity.
  Nat Struct Mol Biol, 14, 360-362.  
17565945 N.Ren, J.Charlton, and P.N.Adler (2007).
The flare gene, which encodes the AIP1 protein of Drosophila, functions to regulate F-actin disassembly in pupal epidermal cells.
  Genetics, 176, 2223-2234.  
17876170 P.Y.Cho, T.I.Kim, S.Li, S.J.Hong, M.H.Choi, S.T.Hong, and Y.E.Chung (2007).
Metacercarial proteins interacting with WD40-repeat protein of Clonorchis sinensis.
  Korean J Parasitol, 45, 229-232.  
16959963 J.B.Moseley, and B.L.Goode (2006).
The yeast actin cytoskeleton: from cellular function to biochemical mechanism.
  Microbiol Mol Biol Rev, 70, 605-645.  
16525019 K.Mohri, K.Ono, R.Yu, S.Yamashiro, and S.Ono (2006).
Enhancement of actin-depolymerizing factor/cofilin-dependent actin disassembly by actin-interacting protein 1 is required for organized actin filament assembly in the Caenorhabditis elegans body wall muscle.
  Mol Biol Cell, 17, 2190-2199.  
16611742 K.Okada, H.Ravi, E.M.Smith, and B.L.Goode (2006).
Aip1 and cofilin promote rapid turnover of yeast actin patches and cables: a coordinated mechanism for severing and capping filaments.
  Mol Biol Cell, 17, 2855-2868.  
16421248 M.G.Clark, J.Teply, B.K.Haarer, S.C.Viggiano, D.Sept, and D.C.Amberg (2006).
A genetic dissection of Aip1p's interactions leads to a model for Aip1p-cofilin cooperative activities.
  Mol Biol Cell, 17, 1971-1984.  
16314568 J.Perry, N.Kleckner, and G.V.Börner (2005).
Bioinformatic analyses implicate the collaborating meiotic crossover/chiasma proteins Zip2, Zip3, and Spo22/Zip4 in ubiquitin labeling.
  Proc Natl Acad Sci U S A, 102, 17594-17599.  
15152089 A.Y.Madrona, and D.K.Wilson (2004).
The structure of Ski8p, a protein regulating mRNA degradation: Implications for WD protein structure.
  Protein Sci, 13, 1557-1565.
PDB code: 1sq9
15539076 J.Moyersoen, J.Choe, E.Fan, W.G.Hol, and P.A.Michels (2004).
Biogenesis of peroxisomes and glycosomes: trypanosomatid glycosome assembly is a promising new drug target.
  FEMS Microbiol Rev, 28, 603-643.  
15478216 R.Mears, R.A.Craven, S.Hanrahan, N.Totty, C.Upton, S.L.Young, P.Patel, P.J.Selby, and R.E.Banks (2004).
Proteomic analysis of melanoma-derived exosomes by two-dimensional polyacrylamide gel electrophoresis and mass spectrometry.
  Proteomics, 4, 4019-4031.  
15340168 Z.Cheng, Y.Liu, C.Wang, R.Parker, and H.Song (2004).
Crystal structure of Ski8p, a WD-repeat protein with dual roles in mRNA metabolism and meiotic recombination.
  Protein Sci, 13, 2673-2684.
PDB code: 1s4u
14621980 S.Ono (2003).
Regulation of actin filament dynamics by actin depolymerizing factor/cofilin and actin-interacting protein 1: new blades for twisted filaments.
  Biochemistry, 42, 13363-13370.  
The most recent references are shown first. Citation data come partly from CiteXplore and partly from an automated harvesting procedure. Note that this is likely to be only a partial list as not all journals are covered by either method. However, we are continually building up the citation data so more and more references will be included with time. Where a reference describes a PDB structure, the PDB codes are shown on the right.

 

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