| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| AddB | PTH_0913 | PTH_1665 | PTH_0913 | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | Predicted SAM-dependent methyltransferase. | 0.551 |
| AddB | PTH_1043 | PTH_1665 | PTH_1043 | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | 0.442 |
| AddB | RecB | PTH_1665 | PTH_1664 | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | ATP-dependent exoDNAse (exonuclease V) beta subunit; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddA nuclease domain is required for chi fragment generation; this subunit has the helicase and 3' -> 5' nuclease activities; Belongs to the helicase family. AddA subfamily. | 0.999 |
| AddB | SbcD | PTH_1665 | PTH_1666 | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | DNA repair exonuclease. | 0.734 |
| PTH_0913 | AddB | PTH_0913 | PTH_1665 | Predicted SAM-dependent methyltransferase. | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | 0.551 |
| PTH_0913 | RecB | PTH_0913 | PTH_1664 | Predicted SAM-dependent methyltransferase. | ATP-dependent exoDNAse (exonuclease V) beta subunit; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddA nuclease domain is required for chi fragment generation; this subunit has the helicase and 3' -> 5' nuclease activities; Belongs to the helicase family. AddA subfamily. | 0.627 |
| PTH_1043 | AddB | PTH_1043 | PTH_1665 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | ATP-dependentnuclease subunitB; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddB nuclease domain is not required for chi fragment generation; this subunit has 5' -> 3' nuclease activity. | 0.442 |
| PTH_1043 | PolA | PTH_1043 | PTH_1976 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | 0.499 |
| PTH_1043 | RecB | PTH_1043 | PTH_1664 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | ATP-dependent exoDNAse (exonuclease V) beta subunit; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddA nuclease domain is required for chi fragment generation; this subunit has the helicase and 3' -> 5' nuclease activities; Belongs to the helicase family. AddA subfamily. | 0.679 |
| PTH_1043 | SecD | PTH_1043 | PTH_1035 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | Preprotein translocase subunit SecD; Part of the Sec protein translocase complex. Interacts with the SecYEG preprotein conducting channel. SecDF uses the proton motive force (PMF) to complete protein translocation after the ATP-dependent function of SecA. | 0.663 |
| PTH_1043 | SecF | PTH_1043 | PTH_1036 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | Preprotein translocase subunit SecF; Part of the Sec protein translocase complex. Interacts with the SecYEG preprotein conducting channel. SecDF uses the proton motive force (PMF) to complete protein translocation after the ATP-dependent function of SecA. | 0.638 |
| PTH_1043 | TatA | PTH_1043 | PTH_1709 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | Sec-independent protein secretion pathway components; Part of the twin-arginine translocation (Tat) system that transports large folded proteins containing a characteristic twin- arginine motif in their signal peptide across membranes. TatA could form the protein-conducting channel of the Tat system. | 0.493 |
| PTH_1043 | UvrA | PTH_1043 | PTH_2737 | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | Excinuclease ATPase subunit; The UvrABC repair system catalyzes the recognition and processing of DNA lesions. UvrA is an ATPase and a DNA-binding protein. A damage recognition complex composed of 2 UvrA and 2 UvrB subunits scans DNA for abnormalities. When the presence of a lesion has been verified by UvrB, the UvrA molecules dissociate. | 0.834 |
| PolA | PTH_1043 | PTH_1976 | PTH_1043 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | Hypothetical protein; Containing RecJ, Single-stranded DNA-specific exonuclease domain (COG0608) and HELICc, Helicase superfamily c-terminal domain. | 0.499 |
| PolA | RecA | PTH_1976 | PTH_1301 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | RecA/RadA recombinase; Can catalyze the hydrolysis of ATP in the presence of single- stranded DNA, the ATP-dependent uptake of single-stranded DNA by duplex DNA, and the ATP-dependent hybridization of homologous single-stranded DNAs. It interacts with LexA causing its activation and leading to its autocatalytic cleavage; Belongs to the RecA family. | 0.983 |
| PolA | RecB | PTH_1976 | PTH_1664 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | ATP-dependent exoDNAse (exonuclease V) beta subunit; The heterodimer acts as both an ATP-dependent DNA helicase and an ATP-dependent, dual-direction single-stranded exonuclease. Recognizes the chi site generating a DNA molecule suitable for the initiation of homologous recombination. The AddA nuclease domain is required for chi fragment generation; this subunit has the helicase and 3' -> 5' nuclease activities; Belongs to the helicase family. AddA subfamily. | 0.582 |
| PolA | SbcD | PTH_1976 | PTH_1666 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | DNA repair exonuclease. | 0.999 |
| PolA | SecD | PTH_1976 | PTH_1035 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | Preprotein translocase subunit SecD; Part of the Sec protein translocase complex. Interacts with the SecYEG preprotein conducting channel. SecDF uses the proton motive force (PMF) to complete protein translocation after the ATP-dependent function of SecA. | 0.521 |
| PolA | SecF | PTH_1976 | PTH_1036 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | Preprotein translocase subunit SecF; Part of the Sec protein translocase complex. Interacts with the SecYEG preprotein conducting channel. SecDF uses the proton motive force (PMF) to complete protein translocation after the ATP-dependent function of SecA. | 0.484 |
| PolA | UvrA | PTH_1976 | PTH_2737 | DNA polymerase I - 3'-5' exonuclease and polymerase domains; In addition to polymerase activity, this DNA polymerase exhibits 5'-3' exonuclease activity. | Excinuclease ATPase subunit; The UvrABC repair system catalyzes the recognition and processing of DNA lesions. UvrA is an ATPase and a DNA-binding protein. A damage recognition complex composed of 2 UvrA and 2 UvrB subunits scans DNA for abnormalities. When the presence of a lesion has been verified by UvrB, the UvrA molecules dissociate. | 0.728 |