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.
Knowledge-based Evidence
from curated databases
textmining
Assay-based Predictions
experimentally determined
co-expression
Genomic Predictions
gene neighborhood
gene co-occurrence
gene fusions
Your Input:
Neighborhood
Gene Fusion
Co-occurrence
Co-expression
Experiments
Databases
Textmining
[Homology]
Score
TRXA-2Hypothetical thioredoxin; Predicted by orpheus program; predicted by glimmer program; Belongs to the thioredoxin family. (108 aa)    
Predicted Functional Partners:
PBPRB1551
Hypothetical thioredoxin reductase; Predicted by orpheus program; predicted by glimmer program.
 
 
 0.959
grdA2
Putative glycine reductase complex selenoprotein A; In the first step of glycine, betaine and sarcosine reductases, the substrate is bound to component PB via a Schiff base intermediate. Then the PB-activated substrate is nucleophilically attacked by the selenol anion of component PA to transform it to a carboxymethylated selenoether and the respective amine. By action of component PC, acetyl phosphate is formed, leaving component PA in its oxidized state. Finally component PA becomes reduced by the thioredoxin system to start a new catalytic cycle of reductive deamination (By similarity).
 
   
 0.799
grdA1
Putative selenoprotein A of glycine-reductase; In the first step of glycine, betaine and sarcosine reductases, the substrate is bound to component PB via a Schiff base intermediate. Then the PB-activated substrate is nucleophilically attacked by the selenol anion of component PA to transform it to a carboxymethylated selenoether and the respective amine. By action of component PC, acetyl phosphate is formed, leaving component PA in its oxidized state. Finally component PA becomes reduced by the thioredoxin system to start a new catalytic cycle of reductive deamination (By similarity).
 
   
 0.751
C1025
Putative thioredoxin reductase; Predicted by orpheus program; predicted by glimmer program.
 
 
 0.750
GROEL
Putative chaperonin GroEL; Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions.
   
 
 0.741
FABH4
Hypothetical glycine reductase protein C; Predicted by orpheus program; predicted by glimmer program.
 
   
 0.723
PLSX2
Hypothetical Fatty acid/phospholipid biosynthesis enzyme; Predicted by orpheus program; predicted by glimmer program.
 
     0.717
GRDB
Hypothetical glycine reductase complex selenoprotein B; Predicted by orpheus program; predicted by glimmer program.
 
   
 0.705
GRDE
Hypothetical glycine reductase proprotein GrdE; Predicted by orpheus program; predicted by glimmer program.
 
   
 0.700
EF2567
Hypothetical selenophosphate synthase; Synthesizes selenophosphate from selenide and ATP.
     
 0.685
Your Current Organism:
Photobacterium profundum
NCBI taxonomy Id: 298386
Other names: P. profundum SS9, Photobacterium SS9, Photobacterium profundum SS9, Photobacterium profundum str. SS9, Photobacterium profundum strain SS9, Photobacterium sp. (strain SS9), Photobacterium sp. SS9, deep-sea eubacterium SS9
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