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PDBsum entry 5e3b

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protein ligands metals links
Hydrolase PDB id
5e3b

 

 

 

 

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Contents
Protein chain
148 a.a.
Ligands
EDO
Metals
_NA ×2
Waters ×161
PDB id:
5e3b
Name: Hydrolase
Title: Structure of macrodomain protein from streptomyces coelicolor
Structure: Macrodomain protein. Chain: a. Engineered: yes
Source: Streptomyces coelicolor (strain atcc baa-471 / a3(2) / m145). Organism_taxid: 100226. Strain: atcc baa-471 / a3(2) / m145. Gene: sco6735. Expressed in: escherichia coli. Expression_system_taxid: 562
Resolution:
1.60Å     R-factor:   0.186     R-free:   0.223
Authors: J.Lalic,M.Posavec Marjanovic,D.Perina,I.Sabljic,R.Zaja,B.Plese, M.Imesek,G.Bucca,M.Ahel,H.Cetkovic,M.Luic,A.Mikoc,I.Ahel
Key ref: J.Lalić et al. (2016). Disruption of Macrodomain Protein SCO6735 Increases Antibiotic Production in Streptomyces coelicolor. J Biol Chem, 291, 23175-23187. PubMed id: 27634042
Date:
02-Oct-15     Release date:   28-Sep-16    
PROCHECK
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 Headers
 References

Protein chain
Pfam   ArchSchema ?
Q9X7P1  (Q9X7P1_STRCO) -  Macro domain-containing protein from Streptomyces coelicolor (strain ATCC BAA-471 / A3(2) / M145)
Seq:
Struc:
161 a.a.
148 a.a.
Key:    PfamA domain  Secondary structure  CATH domain

 

 
J Biol Chem 291:23175-23187 (2016)
PubMed id: 27634042  
 
 
Disruption of Macrodomain Protein SCO6735 Increases Antibiotic Production in Streptomyces coelicolor.
J.Lalić, M.Posavec Marjanović, L.Palazzo, D.Perina, I.Sabljić, R.Žaja, T.Colby, B.Pleše, M.Halasz, G.Jankevicius, G.Bucca, M.Ahel, I.Matić, H.Ćetković, M.Luić, A.Mikoč, I.Ahel.
 
  ABSTRACT  
 
ADP-ribosylation is a post-translational modification that can alter the physical and chemical properties of target proteins and that controls many important cellular processes. Macrodomains are evolutionarily conserved structural domains that bind ADP-ribose derivatives and are found in proteins with diverse cellular functions. Some proteins from the macrodomain family can hydrolyze ADP-ribosylated substrates and therefore reverse this post-translational modification. Bacteria and Streptomyces, in particular, are known to utilize protein ADP-ribosylation, yet very little is known about their enzymes that synthesize and remove this modification. We have determined the crystal structure and characterized, both biochemically and functionally, the macrodomain protein SCO6735 from Streptomyces coelicolor This protein is a member of an uncharacterized subfamily of macrodomain proteins. Its crystal structure revealed a highly conserved macrodomain fold. We showed that SCO6735 possesses the ability to hydrolyze PARP-dependent protein ADP-ribosylation. Furthermore, we showed that expression of this protein is induced upon DNA damage and that deletion of this protein in S. coelicolor increases antibiotic production. Our results provide the first insights into the molecular basis of its action and impact on Streptomyces metabolism.
 

 

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