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PDBsum entry 4jb4

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protein ligands metals Protein-protein interface(s) links
Oxidoreductase PDB id
4jb4

 

 

 

 

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Contents
Protein chains
291 a.a.
Ligands
HEM ×2
Metals
__F ×2
Waters ×36
PDB id:
4jb4
Name: Oxidoreductase
Title: Expression, purification, characterization, and solution nmr study of highly deuterated yeast cytochromE C peroxidase with enhanced solubility
Structure: CytochromE C peroxidase, mitochondrial. Chain: a, c. Fragment: cytochromE-C peroxidase, unp residues 68-361. Synonym: ccp. Engineered: yes. Mutation: yes
Source: Saccharomyces cerevisiae. Baker's yeast. Organism_taxid: 559292. Strain: atcc 204508 / s288c. Gene: ccp1, ccp, cpo, ykr066c. Expressed in: escherichia coli. Expression_system_taxid: 562
Resolution:
2.39Å     R-factor:   0.216     R-free:   0.279
Authors: A.C.Wohlkonig
Key ref: A.N.Volkov et al. (2013). Expression, purification, characterization, and solution nuclear magnetic resonance study of highly deuterated yeast cytochrome C peroxidase with enhanced solubility. Biochemistry, 52, 2165-2175. PubMed id: 23517193 DOI: 10.1021/bi400220w
Date:
19-Feb-13     Release date:   10-Apr-13    
PROCHECK
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 Headers
 References

Protein chains
Pfam   ArchSchema ?
P00431  (CCPR_YEAST) -  Cytochrome c peroxidase, mitochondrial from Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
Seq:
Struc:
361 a.a.
291 a.a.
Key:    PfamA domain  Secondary structure  CATH domain

 Enzyme reactions 
   Enzyme class: E.C.1.11.1.5  - cytochrome-c peroxidase.
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]
      Reaction: 2 Fe(II)-[cytochrome c] + H2O2 + 2 H+ = 2 Fe(III)-[cytochrome c] + 2 H2O
2 × Fe(II)-[cytochrome c]
+ H2O2
+ 2 × H(+)
= 2 × Fe(III)-[cytochrome c]
+ 2 × H2O
      Cofactor: Heme
Heme
Bound ligand (Het Group name = HEM) matches with 95.45% similarity
Molecule diagrams generated from .mol files obtained from the KEGG ftp site

 

 
    Added reference    
 
 
DOI no: 10.1021/bi400220w Biochemistry 52:2165-2175 (2013)
PubMed id: 23517193  
 
 
Expression, purification, characterization, and solution nuclear magnetic resonance study of highly deuterated yeast cytochrome C peroxidase with enhanced solubility.
A.N.Volkov, A.Wohlkonig, S.H.Soror, N.A.van Nuland.
 
  ABSTRACT  
 
Here we present the preparation, biophysical characterization, and nuclear magnetic resonance (NMR) spectroscopy study of yeast cytochrome c peroxidase (CcP) constructs with enhanced solubility. Using a high-yield Escherichia coli expression system, we routinely produced uniformly labeled [(2)H,(13)C,(15)N]CcP samples with high levels of deuterium incorporation (96-99%) and good yields (30-60 mg of pure protein from 1 L of bacterial culture). In addition to simplifying the purification procedure, introduction of a His tag at either protein terminus dramatically increases its solubility, allowing preparation of concentrated, stable CcP samples required for multidimensional NMR spectroscopy. Using a range of biophysical techniques and X-ray crystallography, we demonstrate that the engineered His tags neither perturb the structure of the enzyme nor alter the heme environment or its reactivity toward known ligands. The His-tagged CcP constructs remain catalytically active yet exhibit differences in the interaction with cytochrome c, the physiological binding partner, most likely because of steric occlusion of the high-affinity binding site by the C-terminal His tag. We show that protein perdeuteration greatly increases the quality of the double- and triple-resonance NMR spectra, allowing nearly complete backbone resonance assignments and subsequent study of the CcP by heteronuclear NMR spectroscopy.
 

 

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