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

 
   
Your Input:
aceK
Isocitrate dehydrogenase kinase/phosphatase; Bifunctional enzyme which can phosphorylate or dephosphorylate isocitrate dehydrogenase (IDH) on a specific serine residue. This is a regulatory mechanism which enables bacteria to bypass the Krebs cycle via the glyoxylate shunt in response to the source of carbon. When bacteria are grown on glucose, IDH is fully active and unphosphorylated, but when grown on acetate or ethanol, the activity of IDH declines drastically concomitant with its phosphorylation (By similarity) (603 aa)
(Burkholderia thailandensis)
Predicted Functional Partners:
BTH_II1306
Thiaminase I precursor (Thiamine pyridinylase) (476 aa)
       0.899
ribD-2
Riboflavin biosynthesis protein RibD (389 aa)
       0.899
BTH_II0583
Thiamine-phosphate pyrophosphorylase ThiE, putative (196 aa)
       0.899
wecB
UDP-N-acetylglucosamine 2-epimerase (476 aa)
       0.899
BTH_I3005
Thiamine-phosphate pyrophosphorylase (364 aa)
       0.899
BTH_I2432
Oxidoreductase, zinc-binding dehydrogenase family (363 aa)
       0.899
xylA
Xylose isomerase (496 aa)
       0.899
ribD-1
Riboflavin biosynthesis protein RibD (378 aa)
       0.899
ribE
Riboflavin synthase, alpha subunit (209 aa)
       0.899
ribH
6,7-dimethyl-8-ribityllumazine synthase; Riboflavin synthase is a bifunctional enzyme complex c [...] (191 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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additional (white) nodes         or: network depth