spacer
spacer

PDBsum entry 1rfa

Go to PDB code: 
protein links
Serine/threonine-protein kinase PDB id
1rfa

 

 

 

 

Loading ...

 
JSmol PyMol  
Contents
Protein chain
78 a.a. *
* Residue conservation analysis
PDB id:
1rfa
Name: Serine/threonine-protein kinase
Title: Nmr solution structure of the ras-binding domain of c-raf-1
Structure: Raf1. Chain: a. Fragment: ras binding domain, residues 55 - 132 with an additional ala at the n-terminus. Synonym: raf-rbd, c-raf-1. Engineered: yes
Source: Homo sapiens. Human. Organism_taxid: 9606. Organ: fetal liver. Expressed in: escherichia coli. Expression_system_taxid: 562.
NMR struc: 30 models
Authors: S.D.Emerson,V.S.Madison,R.E.Palermo,D.S.Waugh,J.E.Scheffler,K.- L.Tsao,S.E.Kiefer,S.P.Liu,D.C.Fry
Key ref:
S.D.Emerson et al. (1995). Solution structure of the Ras-binding domain of c-Raf-1 and identification of its Ras interaction surface. Biochemistry, 34, 6911-6918. PubMed id: 7766599 DOI: 10.1021/bi00021a001
Date:
26-Apr-95     Release date:   20-Jun-96    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chain
Pfam   ArchSchema ?
P04049  (RAF1_HUMAN) -  RAF proto-oncogene serine/threonine-protein kinase from Homo sapiens
Seq:
Struc:
 
Seq:
Struc:
648 a.a.
78 a.a.
Key:    PfamA domain  Secondary structure  CATH domain

 Enzyme reactions 
   Enzyme class: E.C.2.7.11.1  - non-specific serine/threonine protein kinase.
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]
      Reaction:
1. L-seryl-[protein] + ATP = O-phospho-L-seryl-[protein] + ADP + H+
2. L-threonyl-[protein] + ATP = O-phospho-L-threonyl-[protein] + ADP + H+
L-seryl-[protein]
+ ATP
= O-phospho-L-seryl-[protein]
+ ADP
+ H(+)
L-threonyl-[protein]
+ ATP
= O-phospho-L-threonyl-[protein]
+ ADP
+ H(+)
Molecule diagrams generated from .mol files obtained from the KEGG ftp site

 

 
    reference    
 
 
DOI no: 10.1021/bi00021a001 Biochemistry 34:6911-6918 (1995)
PubMed id: 7766599  
 
 
Solution structure of the Ras-binding domain of c-Raf-1 and identification of its Ras interaction surface.
S.D.Emerson, V.S.Madison, R.E.Palermo, D.S.Waugh, J.E.Scheffler, K.L.Tsao, S.E.Kiefer, S.P.Liu, D.C.Fry.
 
  ABSTRACT  
 
The structure of the Ras-binding domain of human c-Raf-1 (residues 55-132) has been determined in solution by nuclear magnetic resonance (NMR) spectroscopy. Following complete assignment of the backbone and side-chain 1H, 15N, and 13C resonances, the structure was calculated using the program CHARMM. Over 1300 NOE-derived constraints were applied, resulting in a detailed structure. The fold of Raf55-132 consists of a five-stranded beta-sheet, a 12-residue alpha-helix, and an additional one-turn helix. It is similar to those of ubiquitin and the IgG-binding domain of protein G, although the three proteins share very little sequence identity. The surface of Raf55-132 that interacts with Ras has been identified by monitoring perturbation of line widths and chemical shifts of 15N-labeled Raf55-132 resonances during titration with unlabeled Ras-GMPPNP. The Ras-binding site is contained within a spatially contiguous patch comprised of the N-terminal beta-hairpin and the C-terminal end of the alpha-helix.
 

Literature references that cite this PDB file's key reference

  PubMed id Reference
19776012 C.Kiel, D.Filchtinski, M.Spoerner, G.Schreiber, H.R.Kalbitzer, and C.Herrmann (2009).
Improved binding of raf to Ras.GDP is correlated with biological activity.
  J Biol Chem, 284, 31893-31902.  
19801192 G.Fuentes, and A.Valencia (2009).
Ras classical effectors: new tales from in silico complexes.
  Trends Biochem Sci, 34, 533-539.  
19096503 C.Kiel, D.Aydin, and L.Serrano (2008).
Association rate constants of ras-effector interactions are evolutionarily conserved.
  PLoS Comput Biol, 4, e1000245.  
18537106 K.Furihata, S.Shimotakahara, and M.Tashiro (2008).
An efficient use of the WATERGATE W5 sequence for observing a ligand binding with a protein receptor.
  Magn Reson Chem, 46, 799-802.  
18354782 L.E.Goldfinger (2008).
Choose your own path: specificity in Ras GTPase signaling.
  Mol Biosyst, 4, 293-299.  
17256769 D.O.Cicero, G.M.Contessa, T.A.Pertinhez, M.Gallo, A.M.Katsuyama, M.Paci, C.S.Farah, and A.Spisni (2007).
Solution structure of ApaG from Xanthomonas axonopodis pv. citri reveals a fibronectin-3 fold.
  Proteins, 67, 490-500.
PDB code: 2f1e
17555829 D.T.Leicht, V.Balan, A.Kaplun, V.Singh-Gupta, L.Kaplun, M.Dobson, and G.Tzivion (2007).
Raf kinases: function, regulation and role in human cancer.
  Biochim Biophys Acta, 1773, 1196-1212.  
17517604 E.Hwang, K.S.Ryu, K.Pääkkönen, P.Güntert, H.K.Cheong, D.S.Lim, J.O.Lee, Y.H.Jeon, and C.Cheong (2007).
Structural insight into dimeric interaction of the SARAH domains from Mst1 and RASSF family proteins in the apoptosis pathway.
  Proc Natl Acad Sci U S A, 104, 9236-9241.
PDB code: 2jo8
17295314 S.Tomić, B.Bertosa, T.Wang, and R.C.Wade (2007).
COMBINE analysis of the specificity of binding of Ras proteins to their effectors.
  Proteins, 67, 435-447.  
16928684 M.Kukimoto-Niino, T.Takagi, R.Akasaka, K.Murayama, T.Uchikubo-Kamo, T.Terada, M.Inoue, S.Watanabe, A.Tanaka, Y.Hayashizaki, T.Kigawa, M.Shirouzu, and S.Yokoyama (2006).
Crystal structure of the RUN domain of the RAP2-interacting protein x.
  J Biol Chem, 281, 31843-31853.
PDB codes: 2cxf 2cxl 2dwg 2dwk
16283145 D.C.Fry, and L.T.Vassilev (2005).
Targeting protein-protein interactions for cancer therapy.
  J Mol Med, 83, 955-963.  
16214894 F.X.Campbell-Valois, K.Tarassov, and S.W.Michnick (2005).
Massive sequence perturbation of a small protein.
  Proc Natl Acad Sci U S A, 102, 14988-14993.  
15476289 S.Shimotakahara, K.Furihata, and M.Tashiro (2005).
Application of NMR screening techniques for observing ligand binding with a protein receptor.
  Magn Reson Chem, 43, 69-72.  
15653425 E.J.Helmreich (2004).
Structural flexibility of small GTPases. Can it explain their functional versatility?
  Biol Chem, 385, 1121-1136.  
14648622 H.Gohlke, and D.A.Case (2004).
Converging free energy estimates: MM-PB(GB)SA studies on the protein-protein complex Ras-Raf.
  J Comput Chem, 25, 238-250.  
15211515 H.Gohlke, L.A.Kuhn, and D.A.Case (2004).
Change in protein flexibility upon complex formation: analysis of Ras-Raf using molecular dynamics and a molecular framework approach.
  Proteins, 56, 322-337.  
14514689 D.Owen, P.N.Lowe, D.Nietlispach, C.E.Brosnan, D.Y.Chirgadze, P.J.Parker, T.L.Blundell, and H.R.Mott (2003).
Molecular dissection of the interaction between the small G proteins Rac1 and RhoA and protein kinase C-related kinase 1 (PRK1).
  J Biol Chem, 278, 50578-50587.
PDB code: 1urf
14596413 H.Utsumi, H.Seki, K.Yamaguchi, and M.Tashiro (2003).
Segment identification of a ligand binding with a protein receptor using multidimensional T1rho-, diffusion-filtered and diffusion-ordered NOESY experiments.
  Anal Sci, 19, 1441-1443.  
  12586692 J.Ash, C.Wu, R.Larocque, M.Jamal, W.Stevens, M.Osborne, D.Y.Thomas, and M.Whiteway (2003).
Genetic analysis of the interface between Cdc42p and the CRIB domain of Ste20p in Saccharomyces cerevisiae.
  Genetics, 163, 9.  
12649439 S.D.Emerson, R.Palermo, C.M.Liu, J.W.Tilley, L.Chen, W.Danho, V.S.Madison, D.N.Greeley, G.Ju, and D.C.Fry (2003).
NMR characterization of interleukin-2 in complexes with the IL-2Ralpha receptor component, and with low molecular weight compounds that inhibit the IL-2/IL-Ralpha interaction.
  Protein Sci, 12, 811-822.  
11179219 G.G.Kelley, S.E.Reks, J.M.Ondrako, and A.V.Smrcka (2001).
Phospholipase C(epsilon): a novel Ras effector.
  EMBO J, 20, 743-754.  
11709168 K.Scheffzek, P.Grünewald, S.Wohlgemuth, W.Kabsch, H.Tu, M.Wigler, A.Wittinghofer, and C.Herrmann (2001).
The Ras-Byr2RBD complex: structural basis for Ras effector recognition in yeast.
  Structure, 9, 1043-1050.
PDB code: 1k8r
11709167 W.Gronwald, F.Huber, P.Grünewald, M.Spörner, S.Wohlgemuth, C.Herrmann, and H.R.Kalbitzer (2001).
Solution structure of the Ras binding domain of the protein kinase Byr2 from Schizosaccharomyces pombe.
  Structure, 9, 1029-1041.
PDB code: 1i35
10684602 D.Owen, H.R.Mott, E.D.Laue, and P.N.Lowe (2000).
Residues in Cdc42 that specify binding to individual CRIB effector proteins.
  Biochemistry, 39, 1243-1250.  
10821674 J.L.Baber, D.Levens, D.Libutti, and N.Tjandra (2000).
Chemical shift mapped DNA-binding sites and 15N relaxation analysis of the C-terminal KH domain of heterogeneous nuclear ribonucleoprotein K.
  Biochemistry, 39, 6022-6032.  
  10386876 A.M.Wyndham, R.T.Baker, and G.Chelvanayagam (1999).
The Ubp6 family of deubiquitinating enzymes contains a ubiquitin-like domain: SUb.
  Protein Sci, 8, 1268-1275.  
10364219 B.Bauer, G.Mirey, I.R.Vetter, J.A.García-Ranea, A.Valencia, A.Wittinghofer, J.H.Camonis, and R.H.Cool (1999).
Effector recognition by the small GTP-binding proteins Ras and Ral.
  J Biol Chem, 274, 17763-17770.  
  10210183 J.Zeng, M.Fridman, H.Maruta, H.R.Treutlein, and T.Simonson (1999).
Protein-protein recognition: an experimental and computational study of the R89K mutation in Raf and its effect on Ras binding.
  Protein Sci, 8, 50-64.  
10213614 M.Shirouzu, K.Hashimoto, A.Kikuchi, and S.Yokoyama (1999).
Double-mutant analysis of the interaction of Ras with the Ras-binding domain of RGL.
  Biochemistry, 38, 5103-5110.  
10619026 R.Maesaki, K.Ihara, T.Shimizu, S.Kuroda, K.Kaibuchi, and T.Hakoshima (1999).
The structural basis of Rho effector recognition revealed by the crystal structure of human RhoA complexed with the effector domain of PKN/PRK1.
  Mol Cell, 4, 793-803.
PDB code: 1cxz
9753431 D.Esser, B.Bauer, R.M.Wolthuis, A.Wittinghofer, R.H.Cool, and P.Bayer (1998).
Structure determination of the Ras-binding domain of the Ral-specific guanine nucleotide exchange factor Rlf.
  Biochemistry, 37, 13453-13462.
PDB code: 1rlf
9727061 J.B.Pracyk, K.Tanaka, D.D.Hegland, K.S.Kim, R.Sethi, I.I.Rovira, D.R.Blazina, L.Lee, J.T.Bruder, I.Kovesdi, P.J.Goldshmidt-Clermont, K.Irani, and T.Finkel (1998).
A requirement for the rac1 GTPase in the signal transduction pathway leading to cardiac myocyte hypertrophy.
  J Clin Invest, 102, 929-937.  
9600925 M.K.Greene, K.Maskos, and S.J.Landry (1998).
Role of the J-domain in the cooperation of Hsp40 with Hsp70.
  Proc Natl Acad Sci U S A, 95, 6108-6113.  
9537740 N.V.Anantha, M.Azam, and R.D.Sheardy (1998).
Porphyrin binding to quadrupled T4G4.
  Biochemistry, 37, 2709-2714.  
9109646 D.S.Garrett, Y.J.Seok, A.Peterkofsky, G.M.Clore, and A.M.Gronenborn (1997).
Identification by NMR of the binding surface for the histidine-containing phosphocarrier protein HPr on the N-terminal domain of enzyme I of the Escherichia coli phosphotransferase system.
  Biochemistry, 36, 4393-4398.  
9342335 J.Ma, and M.Karplus (1997).
Molecular switch in signal transduction: reaction paths of the conformational changes in ras p21.
  Proc Natl Acad Sci U S A, 94, 11905-11910.  
9253406 L.Huang, X.Weng, F.Hofer, G.S.Martin, and S.H.Kim (1997).
Three-dimensional structure of the Ras-interacting domain of RalGDS.
  Nat Struct Biol, 4, 609-615.
PDB code: 1lxd
9434896 M.Geyer, and A.Wittinghofer (1997).
GEFs, GAPs, GDIs and effectors: taking a closer (3D) look at the regulation of Ras-related GTP-binding proteins.
  Curr Opin Struct Biol, 7, 786-792.  
9302994 M.Geyer, C.Herrmann, S.Wohlgemuth, A.Wittinghofer, and H.R.Kalbitzer (1997).
Structure of the Ras-binding domain of RalGEF and implications for Ras binding and signalling.
  Nat Struct Biol, 4, 694-699.
PDB code: 2rgf
9242920 S.R.Sprang (1997).
G protein mechanisms: insights from structural analysis.
  Annu Rev Biochem, 66, 639-678.  
9230043 Y.Ito, K.Yamasaki, J.Iwahara, T.Terada, A.Kamiya, M.Shirouzu, Y.Muto, G.Kawai, S.Yokoyama, E.D.Laue, M.Wälchli, T.Shibata, S.Nishimura, and T.Miyazawa (1997).
Regional polysterism in the GTP-bound form of the human c-Ha-Ras protein.
  Biochemistry, 36, 9109-9119.
PDB code: 1aa9
8605626 C.Block, R.Janknecht, C.Herrmann, N.Nassar, and A.Wittinghofer (1996).
Quantitative structure-activity analysis correlating Ras/Raf interaction in vitro to Raf activation in vivo.
  Nat Struct Biol, 3, 244-251.  
8768906 F.McCormick, and A.Wittinghofer (1996).
Interactions between Ras proteins and their effectors.
  Curr Opin Biotechnol, 7, 449-456.  
8710867 H.R.Mott, J.W.Carpenter, S.Zhong, S.Ghosh, R.M.Bell, and S.L.Campbell (1996).
The solution structure of the Raf-1 cysteine-rich domain: a novel ras and phospholipid binding site.
  Proc Natl Acad Sci U S A, 93, 8312-8317.
PDB codes: 1faq 1far
8634239 M.S.McAlister, H.R.Mott, P.A.van der Merwe, I.D.Campbell, S.J.Davis, and P.C.Driscoll (1996).
NMR analysis of interacting soluble forms of the cell-cell recognition molecules CD2 and CD48.
  Biochemistry, 35, 5982-5991.  
8756680 S.Grzesiek, S.J.Stahl, P.T.Wingfield, and A.Bax (1996).
The CD4 determinant for downregulation by HIV-1 Nef directly binds to Nef. Mapping of the Nef binding surface by NMR.
  Biochemistry, 35, 10256-10261.  
8548282 B.Bax, and H.Jhoti (1995).
Protein-protein interactions. Putting the pieces together.
  Curr Biol, 5, 1119-1121.  
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 code is shown on the right.

 

spacer

spacer