node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
OLR20460.1 | OLR20548.1 | BH713_07325 | BH713_07790 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Competence protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.569 |
OLR20548.1 | OLR20460.1 | BH713_07790 | BH713_07325 | Competence protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.569 |
OLR21405.1 | OLR21434.1 | BH713_12450 | BH713_12650 | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar biosynthesis protein FliT; Binds flagellar cap subunits (FliD) and seems to prevents their oligomerization prior to its translocation through the flagellum-specific type III export pathway; acts as a repressor of flagellar class 2 operons by preventing FlhD2C2 to bind the promoter and inhibiting the FlhD2C2-dependent transcription; member of the type III cytoplasmic chaperone family; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.742 |
OLR21405.1 | flhC | BH713_12450 | BH713_12445 | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | Transcriptional regulator 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. | 0.999 |
OLR21405.1 | slmA | BH713_12450 | BH713_19850 | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nucleoid occlusion factor SlmA; 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. | 0.518 |
OLR21434.1 | OLR21405.1 | BH713_12650 | BH713_12450 | Flagellar biosynthesis protein FliT; Binds flagellar cap subunits (FliD) and seems to prevents their oligomerization prior to its translocation through the flagellum-specific type III export pathway; acts as a repressor of flagellar class 2 operons by preventing FlhD2C2 to bind the promoter and inhibiting the FlhD2C2-dependent transcription; member of the type III cytoplasmic chaperone family; Derived by automated computational analysis using gene prediction method: Protein Homology. | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.742 |
OLR21434.1 | flhC | BH713_12650 | BH713_12445 | Flagellar biosynthesis protein FliT; Binds flagellar cap subunits (FliD) and seems to prevents their oligomerization prior to its translocation through the flagellum-specific type III export pathway; acts as a repressor of flagellar class 2 operons by preventing FlhD2C2 to bind the promoter and inhibiting the FlhD2C2-dependent transcription; member of the type III cytoplasmic chaperone family; Derived by automated computational analysis using gene prediction method: Protein Homology. | Transcriptional regulator 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. | 0.670 |
flhC | OLR21405.1 | BH713_12445 | BH713_12450 | Transcriptional regulator 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. | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.999 |
flhC | OLR21434.1 | BH713_12445 | BH713_12650 | Transcriptional regulator 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. | Flagellar biosynthesis protein FliT; Binds flagellar cap subunits (FliD) and seems to prevents their oligomerization prior to its translocation through the flagellum-specific type III export pathway; acts as a repressor of flagellar class 2 operons by preventing FlhD2C2 to bind the promoter and inhibiting the FlhD2C2-dependent transcription; member of the type III cytoplasmic chaperone family; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.670 |
flhC | slmA | BH713_12445 | BH713_19850 | Transcriptional regulator 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. | Nucleoid occlusion factor SlmA; 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. | 0.643 |
minC | minE | BH713_11665 | BH713_11675 | Septum site-determining protein MinC; Cell division inhibitor that blocks the formation of polar Z ring septums. Rapidly oscillates between the poles of the cell to destabilize FtsZ filaments that have formed before they mature into polar Z rings. Prevents FtsZ polymerization; Belongs to the MinC family. | Cell division topological specificity factor MinE; Prevents the cell division inhibition by proteins MinC and MinD at internal division sites while permitting inhibition at polar sites. This ensures cell division at the proper site by restricting the formation of a division septum at the midpoint of the long axis of the cell. | 0.953 |
minE | minC | BH713_11675 | BH713_11665 | Cell division topological specificity factor MinE; Prevents the cell division inhibition by proteins MinC and MinD at internal division sites while permitting inhibition at polar sites. This ensures cell division at the proper site by restricting the formation of a division septum at the midpoint of the long axis of the cell. | Septum site-determining protein MinC; Cell division inhibitor that blocks the formation of polar Z ring septums. Rapidly oscillates between the poles of the cell to destabilize FtsZ filaments that have formed before they mature into polar Z rings. Prevents FtsZ polymerization; Belongs to the MinC family. | 0.953 |
slmA | OLR21405.1 | BH713_19850 | BH713_12450 | Nucleoid occlusion factor SlmA; 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. | Flagellar transcriptional activator FlhD; With FlhC is involved in the activation of class 2 flagellar genes and is involved in the regulation of a number of other genetic systems; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.518 |
slmA | flhC | BH713_19850 | BH713_12445 | Nucleoid occlusion factor SlmA; 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. | Transcriptional regulator 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. | 0.643 |