close STRING v12.5 is now available!
The next version of STRING is ready for use in your analyses: updated networks across STRING newly available directed regulatory networks a new typed view showing functional, physical, and regulatory edges in one network new clustering options and cluster-based layouts … and much more!
Explore STRING v12.5 →
STRINGSTRING
STRING protein interaction network
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
Node Color
colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
Neighborhood
Gene Fusion
Cooccurrence
Coexpression
Experiments
Databases
Textmining
[Homology]
Score
ureCUrease subunit alpha; Ureases catalyze the hydrolysis of urea into ammonia and carbon dioxide; in Helicobacter pylori the ammonia released plays a key role in bacterial survival by neutralizing acids when colonizing the gastric mucosa; the holoenzyme is composed of 3 ureC (alpha) and 3 ureAB (gamma/beta) subunits; Derived by automated computational analysis using gene prediction method: Protein Homology. (571 aa)    
Predicted Functional Partners:
ureB
Urease subunit beta; Ureases catalyze the hydrolysis of urea into ammonia and carbon dioxide; in Helicobacter pylori and Yersinia enterocolitica the ammonia released plays a key role in bacterial survival by neutralizing acids when colonizing the gastric mucosa; the holoenzyme is composed of 3 UreC (alpha) and 3 UreAB (gamma/beta); in Brucella suis the urease encoded by this operon (one of two urease-encoding operons found in its genome) is involved with urease activity, optimum growth, resistance to low-pH killing in-vitro and persistence in-vivo, while the other operon does not seem [...]
 0.999
ureA
Urease subunit gamma; UreA, with UreB and UreC catalyzes the hydrolysis of urea into ammonia and carbon dioxide; nickel metalloenzyme; accessory proteins UreD, UreE, UreF, and UreG are necessary for assembly of the metallocenter; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the urease gamma subunit family.
 0.999
ureF
Urease accessory protein UreF; Required for maturation of urease via the functional incorporation of the urease nickel metallocenter.
 
 
 0.993
ureG
Urease accessory protein UreG; Facilitates the functional incorporation of the urease nickel metallocenter. This process requires GTP hydrolysis, probably effectuated by UreG.
 
  
 0.986
ureE
Urease accessory protein UreE; Involved in urease metallocenter assembly. Binds nickel. Probably functions as a nickel donor during metallocenter assembly. Belongs to the UreE family.
 
  
 0.983
ureD
Urease accessory protein ureD; Required for maturation of urease via the functional incorporation of the urease nickel metallocenter.
 
  
 0.926
KIU48598.1
Arginase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the arginase family.
    
 0.899
KIU51236.1
Urea carboxylase; Derived by automated computational analysis using gene prediction method: Protein Homology.
    
 0.856
KIU52444.1
Phosphohydrolase; Derived by automated computational analysis using gene prediction method: Protein Homology.
       0.799
KIU47162.1
Transposase; Derived by automated computational analysis using gene prediction method: Protein Homology.
    
   0.670
Your Current Organism:
Bradyrhizobium elkanii
NCBI taxonomy Id: 29448
Other names: ATCC 49852, B. elkanii, Bradyrhizobium sp. AK1, Bradyrhizobium sp. AK3, Bradyrhizobium sp. URO14, Bradyrhizobium sp. URO7, Bradyrhizobium sp. mas1, Bradyrhizobium sp. mas10, Bradyrhizobium sp. mas11, Bradyrhizobium sp. mas12, Bradyrhizobium sp. mas17, Bradyrhizobium sp. mas18, Bradyrhizobium sp. mas19, Bradyrhizobium sp. mas20, Bradyrhizobium sp. mas21, Bradyrhizobium sp. mas22, Bradyrhizobium sp. mas23, Bradyrhizobium sp. mas25, Bradyrhizobium sp. mas26, Bradyrhizobium sp. mas27, Bradyrhizobium sp. mas29, Bradyrhizobium sp. mas30, Bradyrhizobium sp. mas31, Bradyrhizobium sp. mas40, Bradyrhizobium sp. mas42, Bradyrhizobium sp. mas6, Bradyrhizobium sp. mas7, Bradyrhizobium sp. mas8, Bradyrhizobium sp. mas9, DSM 11554, IFO 14791, LMG 6134, LMG:6134, NBRC 14791, USDA 76
Server load: medium (42%) [HD]