STRING 9.05 
  Orai1 protein (Mus musculus) - STRING network view
 

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

 
   
Your Input:
Orai1
ORAI calcium release-activated calcium modulator 1 Gene; Ca(2+) release-activated Ca(2+) (CRAC) channel subunit which mediates Ca(2+) influx following depletion of intracellular Ca(2+) stores and channel activation by the Ca(2+) sensor, STIM1. CRAC channels are the main pathway for Ca(2+) influx in T-cells and promote the immune response to pathogens by activating the transcription factor NFAT (By similarity) (304 aa)
(Mus musculus)
Predicted Functional Partners:
Stim1
stromal interaction molecule 1 Gene; Plays a role in mediating Ca(2+) influx following depletio [...] (685 aa)
     0.995
Itpr1
inositol 1,4,5-triphosphate receptor 1 Gene; Intracellular channel that mediates calcium releas [...] (2749 aa)
      0.911
Itpr3
inositol 1,4,5-triphosphate receptor 3 Gene; Receptor for inositol 1,4,5-trisphosphate, a secon [...] (2670 aa)
      0.909
Itpr2
inositol 1,4,5-triphosphate receptor 2 Gene; Receptor for inositol 1,4,5-trisphosphate, a secon [...] (2701 aa)
       0.899
Calm1
calmodulin 1 Gene; Calmodulin mediates the control of a large number of enzymes and other prote [...] (197 aa)
       0.829
Stim2
stromal interaction molecule 2 Gene; Functions as a highly sensitive Ca(2+) sensor in the endop [...] (820 aa)
       0.643
Efcab4a
EF-hand calcium binding domain 4A Gene (394 aa)
       0.591
ENSMUSG00000076470
T-cell receptor beta chain V region C5 Precursor; Fragment (113 aa)
       0.560
Trpc1
transient receptor potential cation channel, subfamily C, member 1 Gene; Thought to form a rece [...] (809 aa)
       0.554
Trpc3
transient receptor potential cation channel, subfamily C, member 3 Gene; Thought to form a rece [...] (910 aa)
       0.400
 
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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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