| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| RSc0051 | RSc0053 | RSc0051 | RSc0053 | Putative predicted sam-dependent methyltransferase protein. | Hypothetical protein of unknown function duf484. | 0.684 |
| RSc0051 | gatB | RSc0051 | RSc0054 | Putative predicted sam-dependent methyltransferase protein. | Probable aspartyl/glutamyl-trna(asn/gln) amidotransferase subunit b (asp/glu-adt subunit b) protein; Allows the formation of correctly charged Asn-tRNA(Asn) or Gln-tRNA(Gln) through the transamidation of misacylated Asp-tRNA(Asn) or Glu-tRNA(Gln) in organisms which lack either or both of asparaginyl- tRNA or glutaminyl-tRNA synthetases. The reaction takes place in the presence of glutamine and ATP through an activated phospho-Asp- tRNA(Asn) or phospho-Glu-tRNA(Gln); Belongs to the GatB/GatE family. GatB subfamily. | 0.649 |
| RSc0051 | xerC1 | RSc0051 | RSc0052 | Putative predicted sam-dependent methyltransferase protein. | Probable tyrosine recombinase xerc 1 protein; Site-specific tyrosine recombinase, which acts by catalyzing the cutting and rejoining of the recombining DNA molecules. The XerC- XerD complex is essential to convert dimers of the bacterial chromosome into monomers to permit their segregation at cell division. It also contributes to the segregational stability of plasmids (By similarity). | 0.699 |
| RSc0053 | RSc0051 | RSc0053 | RSc0051 | Hypothetical protein of unknown function duf484. | Putative predicted sam-dependent methyltransferase protein. | 0.684 |
| RSc0053 | dapF | RSc0053 | RSc0137 | Hypothetical protein of unknown function duf484. | Diaminopimelate epimerase (dap epimerase) protein; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | 0.718 |
| RSc0053 | gatB | RSc0053 | RSc0054 | Hypothetical protein of unknown function duf484. | Probable aspartyl/glutamyl-trna(asn/gln) amidotransferase subunit b (asp/glu-adt subunit b) protein; Allows the formation of correctly charged Asn-tRNA(Asn) or Gln-tRNA(Gln) through the transamidation of misacylated Asp-tRNA(Asn) or Glu-tRNA(Gln) in organisms which lack either or both of asparaginyl- tRNA or glutaminyl-tRNA synthetases. The reaction takes place in the presence of glutamine and ATP through an activated phospho-Asp- tRNA(Asn) or phospho-Glu-tRNA(Gln); Belongs to the GatB/GatE family. GatB subfamily. | 0.782 |
| RSc0053 | xerC1 | RSc0053 | RSc0052 | Hypothetical protein of unknown function duf484. | Probable tyrosine recombinase xerc 1 protein; Site-specific tyrosine recombinase, which acts by catalyzing the cutting and rejoining of the recombining DNA molecules. The XerC- XerD complex is essential to convert dimers of the bacterial chromosome into monomers to permit their segregation at cell division. It also contributes to the segregational stability of plasmids (By similarity). | 0.890 |
| dapF | RSc0053 | RSc0137 | RSc0053 | Diaminopimelate epimerase (dap epimerase) protein; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | Hypothetical protein of unknown function duf484. | 0.718 |
| dapF | xerC1 | RSc0137 | RSc0052 | Diaminopimelate epimerase (dap epimerase) protein; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | Probable tyrosine recombinase xerc 1 protein; Site-specific tyrosine recombinase, which acts by catalyzing the cutting and rejoining of the recombining DNA molecules. The XerC- XerD complex is essential to convert dimers of the bacterial chromosome into monomers to permit their segregation at cell division. It also contributes to the segregational stability of plasmids (By similarity). | 0.595 |
| dnaA | ftsK | RSc3442 | RSc2341 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | 0.585 |
| dnaA | ftsK1 | RSc3442 | RSp0884 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Probable dna translocase ftsk 1. transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) [...] | 0.571 |
| dnaA | parA2 | RSc3442 | RSc3326 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Putative chromosome partitioning protein para. | 0.673 |
| dnaA | parB2 | RSc3442 | RSc3325 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Putative chromosome partitioning protein parb; Belongs to the ParB family. | 0.754 |
| dnaA | recR | RSc3442 | RSc1194 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Probable recombination protein recr; May play a role in DNA repair. It seems to be involved in an RecBC-independent recombinational process of DNA repair. It may act with RecF and RecO. | 0.828 |
| dnaA | xerC1 | RSc3442 | RSc0052 | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | Probable tyrosine recombinase xerc 1 protein; Site-specific tyrosine recombinase, which acts by catalyzing the cutting and rejoining of the recombining DNA molecules. The XerC- XerD complex is essential to convert dimers of the bacterial chromosome into monomers to permit their segregation at cell division. It also contributes to the segregational stability of plasmids (By similarity). | 0.588 |
| ftsK | dnaA | RSc2341 | RSc3442 | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | Probable chromosomal replication initiator protein dnaa; Plays an important role in the initiation and regulation of chromosomal replication. Binds to the origin of replication; it binds specifically double-stranded DNA at a 9 bp consensus (dnaA box): 5'- TTATC[CA]A[CA]A-3'. DnaA binds to ATP and to acidic phospholipids. | 0.585 |
| ftsK | parA2 | RSc2341 | RSc3326 | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | Putative chromosome partitioning protein para. | 0.744 |
| ftsK | parB2 | RSc2341 | RSc3325 | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | Putative chromosome partitioning protein parb; Belongs to the ParB family. | 0.800 |
| ftsK | recR | RSc2341 | RSc1194 | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | Probable recombination protein recr; May play a role in DNA repair. It seems to be involved in an RecBC-independent recombinational process of DNA repair. It may act with RecF and RecO. | 0.558 |
| ftsK | xerC1 | RSc2341 | RSc0052 | Probable cell division ftsk transmembrane protein; Essential cell division protein that coordinates cell division and chromosome segregation. The N-terminus is involved in assembly of the cell-division machinery. The C-terminus functions as a DNA motor that moves dsDNA in an ATP-dependent manner towards the dif recombination site, which is located within the replication terminus region. Translocation stops specifically at Xer-dif sites, where FtsK interacts with the Xer recombinase, allowing activation of chromosome unlinking by recombination. FtsK orienting polar sequences (KOPS) guid [...] | Probable tyrosine recombinase xerc 1 protein; Site-specific tyrosine recombinase, which acts by catalyzing the cutting and rejoining of the recombining DNA molecules. The XerC- XerD complex is essential to convert dimers of the bacterial chromosome into monomers to permit their segregation at cell division. It also contributes to the segregational stability of plasmids (By similarity). | 0.702 |