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PDBsum entry 4on9

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protein ligands metals Protein-protein interface(s) links
Hydrolase PDB id
4on9

 

 

 

 

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Contents
Protein chains
514 a.a.
Ligands
SO4 ×4
Metals
_CL
Waters ×36
PDB id:
4on9
Name: Hydrolase
Title: Dech box helicase domain
Structure: Probable atp-dependent RNA helicase ddx58. Chain: a, b. Fragment: unp residues 230-793. Synonym: dead box protein 58, rig-i-like receptor 1, rlr-1, retinoic acid-inducible gene 1 protein, rig-1, retinoic acid-inducible gene i protein, rig-i. Engineered: yes
Source: Homo sapiens. Human. Organism_taxid: 9606. Gene: ddx58. Expressed in: escherichia coli. Expression_system_taxid: 562
Resolution:
2.71Å     R-factor:   0.221     R-free:   0.258
Authors: T.Deimling,G.Witte,K.P.Hopfner
Key ref: T.Deimling et al. (2014). Crystal and solution structure of the human RIG-I SF2 domain. Acta Crystallogr F Struct Biol Commun, 70, 1027-1031. PubMed id: 25084375 DOI: 10.1107/S2053230X14012230
Date:
28-Jan-14     Release date:   02-Jul-14    
PROCHECK
Go to PROCHECK summary
 Headers
 References

Protein chains
O95786  (DDX58_HUMAN) -  Antiviral innate immune response receptor RIG-I from Homo sapiens
Seq:
Struc:
 
Seq:
Struc:
925 a.a.
514 a.a.
Key:    Secondary structure  CATH domain

 Enzyme reactions 
   Enzyme class: E.C.3.6.4.13  - Rna helicase.
[IntEnz]   [ExPASy]   [KEGG]   [BRENDA]
      Reaction: ATP + H2O = ADP + phosphate + H+
ATP
+ H2O
= ADP
+ phosphate
+ H(+)
Molecule diagrams generated from .mol files obtained from the KEGG ftp site

 

 
    reference    
 
 
DOI no: 10.1107/S2053230X14012230 Acta Crystallogr F Struct Biol Commun 70:1027-1031 (2014)
PubMed id: 25084375  
 
 
Crystal and solution structure of the human RIG-I SF2 domain.
T.Deimling, S.Cui, K.Lammens, K.P.Hopfner, G.Witte.
 
  ABSTRACT  
 
RIG-I is a pathogen-recognition receptor that recognizes viral 5'-triphosphates carrying double-stranded RNA. Upon binding to these microbe-associated molecular patterns (MAMPs), RIG-I forms oligomers and promotes downstream processes that result in type I interferon production and induction of an antiviral state. Here, the crystal structure of the human RIG-I superfamily 2 ATPase domain crystallized in an unusually elongated and open conformation is reported. The elongated structure is probably induced in part by crystal packing, but nevertheless indicates that the domain is intrinsically very flexible. This flexibility might allow substantial structural changes upon substrate binding and oligomerization.
 

 

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