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
Cooccurrence
Coexpression
Experiments
Databases
Textmining
[Homology]
Score
csdAPutative selenocysteine lyase; Similar to E. coli orf, hypothetical protein (AAC75852.1); Blastp hit to AAC75852.1 (401 aa), 89% identity in aa 1 - 401. (401 aa)    
Predicted Functional Partners:
ygdK
Putative SufE protein probably involved in Fe-S center assembly; Similar to E. coli orf, hypothetical protein (AAC75853.1); Blastp hit to AAC75853.1 (147 aa), 88% identity in aa 1 - 144.
 
 0.995
sufC
Putative transport protein; ABC superfamily (atp_bind); similar to E. coli putative ATP-binding component of a transport system (AAC74752.1); Blastp hit to AAC74752.1 (248 aa), 92% identity in aa 1 - 248.
  
 0.974
ynhA
Putative SufE protein; Participates in cysteine desulfuration mediated by SufS. Cysteine desulfuration mobilizes sulfur from L-cysteine to yield L- alanine and constitutes an essential step in sulfur metabolism for biosynthesis of a variety of sulfur-containing biomolecules. Functions as a sulfur acceptor for SufS, by mediating the direct transfer of the sulfur atom from the S-sulfanylcysteine of SufS, an intermediate product of cysteine desulfuration process; Belongs to the SufE family.
 
 0.961
nifU
NifU homolog; A scaffold on which IscS assembles Fe-S clusters. It is likely that Fe-S cluster coordination is flexible as the role of this complex is to build and then hand off Fe-S clusters.
  
 
 0.950
sufB
Putative ABC transporter; Similar to E. coli orf, hypothetical protein (AAC74753.1); Blastp hit to AAC74753.1 (508 aa), 96% identity in aa 14 - 508.
 
 0.931
sufD
Iron-sulfur component of FhuF stability protein; Similar to E. coli orf, hypothetical protein (AAC74751.1); Blastp hit to AAC74751.1 (423 aa), 79% identity in aa 1 - 421.
 
 0.911
srmB
ATP-dependent RNA helicase; DEAD-box RNA helicase involved in the assembly of the 50S ribosomal subunit at low temperature. Exhibits RNA-stimulated ATP hydrolysis and RNA unwinding activity; Belongs to the DEAD box helicase family. SrmB subfamily.
      
 0.895
rhlE
Putative ATP-dependent RNA helicase; DEAD-box RNA helicase involved in ribosome assembly. Has RNA- dependent ATPase activity and unwinds double-stranded RNA.
      
 0.859
osmW
Putative binding-protein-dependent transport system; Part of the OsmU ABC transporter complex, which is involved in the uptake of osmoprotectants such as choline-O-sulfate and glycine betaine. Probably responsible for the translocation of the substrate across the membrane.
      
 0.859
rhlB
Putative helicase; DEAD-box RNA helicase involved in RNA degradation. Has RNA- dependent ATPase activity and unwinds double-stranded RNA. Belongs to the DEAD box helicase family. RhlB subfamily.
      
 0.684
Your Current Organism:
Salmonella enterica Typhimurium
NCBI taxonomy Id: 99287
Other names: S. enterica subsp. enterica serovar Typhimurium str. LT2, Salmonella enterica subsp. enterica serovar Typhimurium LT2, Salmonella enterica subsp. enterica serovar Typhimurium str. LT2, Salmonella enterica subsp. enterica serovar Typhimurium strain LT2, Salmonella enterica subsp. enterica serovar Typhimurium strain LT2-LTL2, Salmonella typhimurium LT2
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