STRING 9.05 
  GSVIVG00016204001 protein (Vitis vinifera) - STRING network view
 

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

 
   
Your Input:
GSVIVG00016204001
RecName- Full=ATP synthase gamma chain;; Produces ATP from ADP in the presence of a proton gradient across the membrane. The gamma chain is believed to be important in regulating ATPase activity and the flow of protons through the CF(0) complex (By similarity) (322 aa)
(Vitis vinifera)
Predicted Functional Partners:
atp1
RecName- Full=ATP synthase subunit alpha;; Produces ATP from ADP in the presence of a proton gr [...] (495 aa)
  0.974
atpA
RecName- Full=ATP synthase subunit alpha; Short=ATPase subunit alpha; EC=3.6.3.14; AltName- Ful [...] (507 aa)
  0.970
GSVIVG00030440001
RecName- Full=ATP synthase subunit beta; EC=3.6.3.14;; Produces ATP from ADP in the presence of [...] (560 aa)
  0.966
GSVIVG00017772001
RecName- Full=ATP synthase subunit beta; EC=3.6.3.14;; Produces ATP from ADP in the presence of [...] (554 aa)
  0.960
GSVIVG00013522001
SubName- Full=Chromosome undetermined scaffold_495, whole genome shotgun sequence; (285 aa)
      0.923
GSVIVG00019017001
SubName- Full=Chromosome chr15 scaffold_19, whole genome shotgun sequence; (206 aa)
   0.908
GSVIVG00028809001
SubName- Full=Chromosome chr13 scaffold_45, whole genome shotgun sequence; (251 aa)
  0.905
GSVIVG00029599001
SubName- Full=Chromosome chr9 scaffold_49, whole genome shotgun sequence; (849 aa)
       0.899
GSVIVG00026188001
SubName- Full=Putative uncharacterized protein (Chromosome chr15 scaffold_37, whole genome shot [...] (222 aa)
       0.899
GSVIVG00024902001
SubName- Full=Chromosome chr4 scaffold_32, whole genome shotgun sequence; (232 aa)
       0.899
 
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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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