| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| ALO40747.1 | ALO41106.1 | PP2015_220 | PP2015_586 | Single-stranded DNA-binding protein; Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism. | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | 0.627 |
| ALO40747.1 | ALO41863.1 | PP2015_220 | PP2015_1354 | Single-stranded DNA-binding protein; Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism. | Pfam:pfam08411 Exonuclease C-terminal. | 0.749 |
| ALO40747.1 | ALO43013.1 | PP2015_220 | PP2015_2523 | Single-stranded DNA-binding protein; Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism. | Pfam:pfam01131 DNA topoisomerase. | 0.650 |
| ALO40747.1 | topA | PP2015_220 | PP2015_1359 | Single-stranded DNA-binding protein; Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism. | DNA topoisomerase 1; Releases the supercoiling and torsional tension of DNA, which is introduced during the DNA replication and transcription, by transiently cleaving and rejoining one strand of the DNA duplex. Introduces a single-strand break via transesterification at a target site in duplex DNA. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA- (5'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 3'-OH DNA strand. The free DNA strand then undergoes passage around the unbroken strand, thus removing DNA supe [...] | 0.969 |
| ALO41103.1 | ALO41105.1 | PP2015_583 | PP2015_585 | Flavodoxin; Low-potential electron donor to a number of redox enzymes. Belongs to the flavodoxin family. | Disulfide bond isomerase; Required for disulfide bond formation in some periplasmic proteins. Acts by transferring its disulfide bond to other proteins and is reduced in the process; Belongs to the thioredoxin family. DsbC subfamily. | 0.764 |
| ALO41103.1 | ALO41106.1 | PP2015_583 | PP2015_586 | Flavodoxin; Low-potential electron donor to a number of redox enzymes. Belongs to the flavodoxin family. | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | 0.675 |
| ALO41103.1 | xerD | PP2015_583 | PP2015_584 | Flavodoxin; Low-potential electron donor to a number of redox enzymes. Belongs to the flavodoxin family. | Tyrosine recombinase XerD; 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. | 0.813 |
| ALO41105.1 | ALO41103.1 | PP2015_585 | PP2015_583 | Disulfide bond isomerase; Required for disulfide bond formation in some periplasmic proteins. Acts by transferring its disulfide bond to other proteins and is reduced in the process; Belongs to the thioredoxin family. DsbC subfamily. | Flavodoxin; Low-potential electron donor to a number of redox enzymes. Belongs to the flavodoxin family. | 0.764 |
| ALO41105.1 | ALO41106.1 | PP2015_585 | PP2015_586 | Disulfide bond isomerase; Required for disulfide bond formation in some periplasmic proteins. Acts by transferring its disulfide bond to other proteins and is reduced in the process; Belongs to the thioredoxin family. DsbC subfamily. | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | 0.783 |
| ALO41105.1 | xerD | PP2015_585 | PP2015_584 | Disulfide bond isomerase; Required for disulfide bond formation in some periplasmic proteins. Acts by transferring its disulfide bond to other proteins and is reduced in the process; Belongs to the thioredoxin family. DsbC subfamily. | Tyrosine recombinase XerD; 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. | 0.862 |
| ALO41106.1 | ALO40747.1 | PP2015_586 | PP2015_220 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Single-stranded DNA-binding protein; Plays an important role in DNA replication, recombination and repair. Binds to ssDNA and to an array of partner proteins to recruit them to their sites of action during DNA metabolism. | 0.627 |
| ALO41106.1 | ALO41103.1 | PP2015_586 | PP2015_583 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Flavodoxin; Low-potential electron donor to a number of redox enzymes. Belongs to the flavodoxin family. | 0.675 |
| ALO41106.1 | ALO41105.1 | PP2015_586 | PP2015_585 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Disulfide bond isomerase; Required for disulfide bond formation in some periplasmic proteins. Acts by transferring its disulfide bond to other proteins and is reduced in the process; Belongs to the thioredoxin family. DsbC subfamily. | 0.783 |
| ALO41106.1 | ALO41863.1 | PP2015_586 | PP2015_1354 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Pfam:pfam08411 Exonuclease C-terminal. | 0.619 |
| ALO41106.1 | ALO42794.1 | PP2015_586 | PP2015_2298 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Pfam:pfam11219 Protein of unknown function (DUF3014). | 0.820 |
| ALO41106.1 | ALO43013.1 | PP2015_586 | PP2015_2523 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Pfam:pfam01131 DNA topoisomerase. | 0.584 |
| ALO41106.1 | dnaG | PP2015_586 | PP2015_2796 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | DNA primase; RNA polymerase that catalyzes the synthesis of short RNA molecules used as primers for DNA polymerase during DNA replication. | 0.622 |
| ALO41106.1 | mfd | PP2015_586 | PP2015_1617 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Transcription-repair-coupling factor; Couples transcription and DNA repair by recognizing RNA polymerase (RNAP) stalled at DNA lesions. Mediates ATP-dependent release of RNAP and its truncated transcript from the DNA, and recruitment of nucleotide excision repair machinery to the damaged site; In the C-terminal section; belongs to the helicase family. RecG subfamily. | 0.591 |
| ALO41106.1 | topA | PP2015_586 | PP2015_1359 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | DNA topoisomerase 1; Releases the supercoiling and torsional tension of DNA, which is introduced during the DNA replication and transcription, by transiently cleaving and rejoining one strand of the DNA duplex. Introduces a single-strand break via transesterification at a target site in duplex DNA. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA- (5'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 3'-OH DNA strand. The free DNA strand then undergoes passage around the unbroken strand, thus removing DNA supe [...] | 0.705 |
| ALO41106.1 | xerD | PP2015_586 | PP2015_584 | Single-stranded-DNA-specific exonuclease, 5'--> 3'-specific; Pfam:pfam01368 DHH family. | Tyrosine recombinase XerD; 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. | 0.756 |