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flhC-2 flhC-2 flhD-2 flhD-2 flhD flhD flhC flhC fliL fliL motB motB motA motA fliJ fliJ flgA flgA ttk ttk fliA fliA
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query proteins and first shell of interactors
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second shell of interactors
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proteins of unknown 3D structure
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experimentally determined
Predicted Interactions
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gene fusions
gene co-occurrence
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textmining
co-expression
protein homology
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flhC-2Flagellum biosynthesis transcription activator; Functions in complex with FlhD as a master transcriptional regulator that regulates transcription of several flagellar and non- flagellar operons by binding to their promoter region. Activates expression of class 2 flagellar genes, including fliA, which is a flagellum-specific sigma factor that turns on the class 3 genes. Also regulates genes whose products function in a variety of physiological pathways; Belongs to the FlhC family. (178 aa)    
Predicted Functional Partners:
flhD-2
Flagellar transcriptional activator; Functions in complex with FlhC as a master transcriptional regulator that regulates transcription of several flagellar and non- flagellar operons by binding to their promoter region. Activates expression of class 2 flagellar genes, including fliA, which is a flagellum-specific sigma factor that turns on the class 3 genes. Also regulates genes whose products function in a variety of physiological pathways; Belongs to the FlhD family.
 
 
 0.997
flhD
Flagellar transcriptional activator FlhD; Functions in complex with FlhC as a master transcriptional regulator that regulates transcription of several flagellar and non- flagellar operons by binding to their promoter region. Activates expression of class 2 flagellar genes, including fliA, which is a flagellum-specific sigma factor that turns on the class 3 genes. Also regulates genes whose products function in a variety of physiological pathways; Belongs to the FlhD family.
 
 
 0.978
flhC
Regulator of flagellar biosynthesis FlhC; Functions in complex with FlhD as a master transcriptional regulator that regulates transcription of several flagellar and non- flagellar operons by binding to their promoter region. Activates expression of class 2 flagellar genes, including fliA, which is a flagellum-specific sigma factor that turns on the class 3 genes. Also regulates genes whose products function in a variety of physiological pathways; Belongs to the FlhC family.
  
  
 
0.904
fliL
Flagellar fliL protein; Controls the rotational direction of flagella during chemotaxis; Belongs to the FliL family.
  
   
 0.740
motB
Chemotaxis protein; silverDB:etchr01451.
 
  
 0.700
motA
Chemotaxis protein; silverDB:etchr01450.
 
    0.691
fliJ
Flagellar biosynthesis protein FliJ; Flagellar protein that affects chemotactic events. Belongs to the FliJ family.
  
   
 0.674
flgA
Flagellar biosynthesis; Involved in the assembly process of the P-ring formation. It may associate with FlgF on the rod constituting a structure essential for the P-ring assembly or may act as a modulator protein for the P- ring assembly; Belongs to the FlgA family.
  
  
 0.665
ttk
Putative transcriptional regulator; Required for nucleoid occlusion (NO) phenomenon, which prevents Z-ring formation and cell division over the nucleoid. Acts as a DNA-associated cell division inhibitor that binds simultaneously chromosomal DNA and FtsZ, and disrupts the assembly of FtsZ polymers. SlmA-DNA-binding sequences (SBS) are dispersed on non-Ter regions of the chromosome, preventing FtsZ polymerization at these regions.
  
     0.594
fliA
RNA polymerase sigma factor for flagellar operon; Sigma factors are initiation factors that promote the attachment of RNA polymerase to specific initiation sites and are then released. This sigma factor controls the expression of flagella-related genes; Belongs to the sigma-70 factor family. FliA subfamily.
 
  
 0.593
Your Current Organism:
Erwinia tasmaniensis
NCBI taxonomy Id: 465817
Other names: E. tasmaniensis Et1/99, Erwinia tasmaniensis Et1/99, Erwinia tasmaniensis str. Et1/99, Erwinia tasmaniensis strain Et1/99
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