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PDBsum entry 4at4

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protein ligands links
Transferase PDB id
4at4

 

 

 

 

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Contents
Protein chain
292 a.a.
Ligands
T6E
Waters ×292
PDB id:
4at4
Name: Transferase
Title: Crystal structure of trkb kinase domain in complex with ex429
Structure: Bdnf/nt-3 growth factors receptor. Chain: a. Fragment: kinase domain, residues 543-838. Synonym: gp145-trkb, trk-b, neurotrophic tyrosine kinase receptor type 2, trkb tyrosine kinase, tropomyosin-related kinase b. Engineered: yes
Source: Homo sapiens. Human. Organism_taxid: 9606. Expressed in: spodoptera frugiperda. Expression_system_taxid: 7108. Expression_system_cell_line: sf21.
Resolution:
2.36Å     R-factor:   0.183     R-free:   0.217
Authors: T.Bertrand,M.Kothe,J.Liu,A.Dupuy,A.Rak,P.F.Berne,S.Davis, T.Gladysheva,C.Valtre,J.Y.Crenne,M.Mathieu
Key ref: T.Bertrand et al. (2012). The crystal structures of TrkA and TrkB suggest key regions for achieving selective inhibition. J Mol Biol, 423, 439-453. PubMed id: 22902478
Date:
03-May-12     Release date:   22-Aug-12    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chain
Pfam   ArchSchema ?
Q16620  (NTRK2_HUMAN) -  BDNF/NT-3 growth factors receptor from Homo sapiens
Seq:
Struc:
 
Seq:
Struc:
822 a.a.
292 a.a.*
Key:    PfamA domain  Secondary structure  CATH domain
* PDB and UniProt seqs differ at 3 residue positions (black crosses)

 Enzyme reactions 
   Enzyme class: E.C.2.7.10.1  - receptor protein-tyrosine kinase.
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]
      Reaction: L-tyrosyl-[protein] + ATP = O-phospho-L-tyrosyl-[protein] + ADP + H+
L-tyrosyl-[protein]
+ ATP
= O-phospho-L-tyrosyl-[protein]
+ ADP
+ H(+)
Molecule diagrams generated from .mol files obtained from the KEGG ftp site

 

 
    Added reference    
 
 
J Mol Biol 423:439-453 (2012)
PubMed id: 22902478  
 
 
The crystal structures of TrkA and TrkB suggest key regions for achieving selective inhibition.
T.Bertrand, M.Kothe, J.Liu, A.Dupuy, A.Rak, P.F.Berne, S.Davis, T.Gladysheva, C.Valtre, J.Y.Crenne, M.Mathieu.
 
  ABSTRACT  
 
The Trk family of neurotrophin receptors, which includes the three highly homologous proteins TrkA, TrkB and TrkC, is strongly associated with central and peripheral nervous system processes. Trk proteins are also of interest in oncology, since Trk activation has been observed in several cancer types. While Trk kinases are attractive oncology targets, selectivity might be more of an issue than for other kinases due to potential CNS side effects if several Trk kinases are simultaneously targeted. In order to address this issue, we present here the first structures of human TrkA and TrkB kinase domains and three complexes between TrkB and Trk inhibitors. These structures reveal different conformations of the kinase domain and suggest new regions of selectivity among the Trk family.
 

 

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