spacer
spacer

PDBsum entry 3ccd

Go to PDB code: 
protein ligands Protein-protein interface(s) links
Transferase PDB id
3ccd

 

 

 

 

Loading ...

 
JSmol PyMol  
Contents
Protein chains
85 a.a. *
Ligands
SO4 ×2
Waters ×199
* Residue conservation analysis
PDB id:
3ccd
Name: Transferase
Title: 1.0 a structure of post-succinimide his15asp hpr
Structure: Phosphocarrier protein hpr. Chain: a, b. Synonym: histidine-containing protein. Engineered: yes. Mutation: yes
Source: Escherichia coli. Gene: ptsh, hpr. Expressed in: escherichia coli.
Resolution:
1.00Å     R-factor:   0.192     R-free:   0.205
Authors: S.Napper,L.Prasad,L.T.J.Delbaere
Key ref: S.Napper et al. (2008). Structural investigation of a phosphorylation-catalyzed, isoaspartate-free, protein succinimide: crystallographic structure of post-succinimide His15Asp histidine-containing protein. Biochemistry, 47, 9486-9496. PubMed id: 18702519
Date:
25-Feb-08     Release date:   21-Oct-08    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chains
Pfam   ArchSchema ?
P0AA04  (PTHP_ECOLI) -  Phosphocarrier protein HPr from Escherichia coli (strain K12)
Seq:
Struc:
85 a.a.
85 a.a.*
Key:    PfamA domain  Secondary structure  CATH domain
* PDB and UniProt seqs differ at 2 residue positions (black crosses)

 Enzyme reactions 
   Enzyme class: E.C.2.7.11.-  - ?????
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]

 

 
Biochemistry 47:9486-9496 (2008)
PubMed id: 18702519  
 
 
Structural investigation of a phosphorylation-catalyzed, isoaspartate-free, protein succinimide: crystallographic structure of post-succinimide His15Asp histidine-containing protein.
S.Napper, L.Prasad, L.T.Delbaere.
 
  ABSTRACT  
 
Aspartates and asparagines can spontaneously cyclize with neighboring main-chain amides to form succinimides. These succinimides hydrolyze to a mixture of isoaspartate and aspartate products. Phosphorylation of aspartates is a common mechanism of protein regulation and increases the propensity for succinimide formation. Although typically regarded as a form of protein damage, we hypothesize succinimides could represent an effective mechanism of phosphoaspartate autophosphatase activity, provided hydrolysis is limited to aspartate products. We previously reported the serendipitous creation of a protein, His15Asp histidine-containing protein (HPr), which undergoes phosphorylation-catalyzed formation of a succinimide whose hydrolysis is seemingly exclusive for aspartate formation. Here, through the high-resolution structure of postsuccinimide His15Asp HPr, we confirm the absence of isoaspartate residues and propose mechanisms for phosphorylation-catalyzed succinimide formation and its directed hydrolysis to aspartate. His15Asp HPr represents the first characterized protein example of an isoaspartate-free succinimide and lends credence to the hypothesis that intramolecular cyclization could represent a physiological mechanism of autophosphatase activity. Furthermore, this indicates that current strategies for succinimide evaluation, based on isoaspartate detection, underestimate the frequencies of these reactions. This is considerably significant for evaluation of protein stability and integrity.
 

 

spacer

spacer