STRING 9.05 
  GPR18 protein (Homo sapiens) - STRING network view
 

This is the evidence view. Different line colors represent the types of evidence for the association.

 
   
Your Input:
GPR18
G protein-coupled receptor 18; Receptor for N-arachidonyl glycine. The activity of this receptor is mediated by G proteins which inhibit adenylyl cyclase. May contribute to regulation of the immune system (331 aa)
(Homo sapiens)
Predicted Functional Partners:
CXCR6
chemokine (C-X-C motif) receptor 6; Receptor for the C-X-C chemokine CXCL16. Used as a corecept [...] (342 aa)
    0.927
S1PR4
sphingosine-1-phosphate receptor 4; Receptor for the lysosphingolipid sphingosine 1- phosphate [...] (384 aa)
      0.926
CCR5
chemokine (C-C motif) receptor 5; Receptor for a number of inflammatory CC-chemokines including [...] (352 aa)
     0.925
CCR7
chemokine (C-C motif) receptor 7; Receptor for the MIP-3-beta chemokine. Probable mediator of E [...] (378 aa)
    0.923
CCL5
chemokine (C-C motif) ligand 5; Chemoattractant for blood monocytes, memory T-helper cells and [...] (91 aa)
      0.916
RGS18
regulator of G-protein signaling 18; Inhibits signal transduction by increasing the GTPase acti [...] (235 aa)
      0.915
CCL19
chemokine (C-C motif) ligand 19; May play a role not only in inflammatory and immunological res [...] (98 aa)
     0.911
S1PR1
sphingosine-1-phosphate receptor 1; Receptor for the lysosphingolipid sphingosine 1- phosphate [...] (382 aa)
     0.910
CXCL9
chemokine (C-X-C motif) ligand 9; Cytokine that affects the growth, movement, or activation sta [...] (125 aa)
      0.910
P2RY14
purinergic receptor P2Y, G-protein coupled, 14; Receptor for UDP-glucose and other UDP-sugar co [...] (338 aa)
    0.909
 
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Info & Parameters ...
Network Display - Nodes are either colored (if they are directly linked to the input - as in the table) or white (nodes of a higher iteration/depth). Edges, i.e. predicted functional links, consist of up to eight lines: one color for each type of evidence. Hover or click to reveal more information about the node/edge.

Active Prediction Methods:
Neighborhood Gene Fusion Co-occurrence
Co-expression Experiments Databases Textmining
 
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