| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| ADL58522.1 | ADL58524.1 | MTBMA_c09270 | MTBMA_c09290 | Predicted DNA double-strand repair ATPase Rad50. | Predicted ATPase. | 0.885 |
| ADL58522.1 | ADL59339.1 | MTBMA_c09270 | MTBMA_c17710 | Predicted DNA double-strand repair ATPase Rad50. | Predicted replication factor A. | 0.891 |
| ADL58522.1 | fen | MTBMA_c09270 | MTBMA_c02180 | Predicted DNA double-strand repair ATPase Rad50. | Flap structure-specific endonuclease; Structure-specific nuclease with 5'-flap endonuclease and 5'- 3' exonuclease activities involved in DNA replication and repair. During DNA replication, cleaves the 5'-overhanging flap structure that is generated by displacement synthesis when DNA polymerase encounters the 5'-end of a downstream Okazaki fragment. Binds the unpaired 3'-DNA end and kinks the DNA to facilitate 5' cleavage specificity. Cleaves one nucleotide into the double-stranded DNA from the junction in flap DNA, leaving a nick for ligation. Also involved in the base excision repair [...] | 0.970 |
| ADL58522.1 | lig | MTBMA_c09270 | MTBMA_c01660 | Predicted DNA double-strand repair ATPase Rad50. | ATP-dependent DNA ligase; DNA ligase that seals nicks in double-stranded DNA during DNA replication, DNA recombination and DNA repair. | 0.842 |
| ADL58522.1 | mre11 | MTBMA_c09270 | MTBMA_c09280 | Predicted DNA double-strand repair ATPase Rad50. | Predicted DNA double-strand repair nuclease Mre11; Part of the Rad50/Mre11 complex, which is involved in the early steps of DNA double-strand break (DSB) repair. The complex may facilitate opening of the processed DNA ends to aid in the recruitment of HerA and NurA. Mre11 binds to DSB ends and has both double-stranded 3'-5' exonuclease activity and single-stranded endonuclease activity. Belongs to the MRE11/RAD32 family. | 0.999 |
| ADL58522.1 | pan | MTBMA_c09270 | MTBMA_c11240 | Predicted DNA double-strand repair ATPase Rad50. | Predicted proteasome-activating nucleotidase; ATPase which is responsible for recognizing, binding, unfolding and translocation of substrate proteins into the archaeal 20S proteasome core particle. Is essential for opening the gate of the 20S proteasome via an interaction with its C-terminus, thereby allowing substrate entry and access to the site of proteolysis. Thus, the C- termini of the proteasomal ATPase function like a 'key in a lock' to induce gate opening and therefore regulate proteolysis. Unfolding activity requires energy from ATP hydrolysis, whereas ATP binding alone promot [...] | 0.964 |
| ADL58522.1 | radA | MTBMA_c09270 | MTBMA_c17700 | Predicted DNA double-strand repair ATPase Rad50. | DNA repair and recombination protein RadA; Involved in DNA repair and in homologous recombination. Binds and assemble on single-stranded DNA to form a nucleoprotein filament. Hydrolyzes ATP in a ssDNA-dependent manner and promotes DNA strand exchange between homologous DNA molecules. | 0.826 |
| ADL58522.1 | radB | MTBMA_c09270 | MTBMA_c02710 | Predicted DNA double-strand repair ATPase Rad50. | Predicted DNA repair and recombination protein RadB; Involved in DNA repair and in homologous recombination. May regulate the cleavage reactions of the branch-structured DNA. Has a very weak ATPase activity that is not stimulated by DNA. Binds DNA but does not promote DNA strands exchange. | 0.797 |
| ADL58522.1 | top6A | MTBMA_c09270 | MTBMA_c13900 | Predicted DNA double-strand repair ATPase Rad50. | Type II DNA topoisomerase VI, subunit A; Relaxes both positive and negative superturns and exhibits a strong decatenase activity; Belongs to the TOP6A family. | 0.798 |
| ADL58522.1 | topA | MTBMA_c09270 | MTBMA_c02100 | Predicted DNA double-strand repair ATPase Rad50. | DNA topoisomerase I; 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 [...] | 0.913 |
| ADL58524.1 | ADL58522.1 | MTBMA_c09290 | MTBMA_c09270 | Predicted ATPase. | Predicted DNA double-strand repair ATPase Rad50. | 0.885 |
| ADL58524.1 | mre11 | MTBMA_c09290 | MTBMA_c09280 | Predicted ATPase. | Predicted DNA double-strand repair nuclease Mre11; Part of the Rad50/Mre11 complex, which is involved in the early steps of DNA double-strand break (DSB) repair. The complex may facilitate opening of the processed DNA ends to aid in the recruitment of HerA and NurA. Mre11 binds to DSB ends and has both double-stranded 3'-5' exonuclease activity and single-stranded endonuclease activity. Belongs to the MRE11/RAD32 family. | 0.937 |
| ADL59339.1 | ADL58522.1 | MTBMA_c17710 | MTBMA_c09270 | Predicted replication factor A. | Predicted DNA double-strand repair ATPase Rad50. | 0.891 |
| ADL59339.1 | fen | MTBMA_c17710 | MTBMA_c02180 | Predicted replication factor A. | Flap structure-specific endonuclease; Structure-specific nuclease with 5'-flap endonuclease and 5'- 3' exonuclease activities involved in DNA replication and repair. During DNA replication, cleaves the 5'-overhanging flap structure that is generated by displacement synthesis when DNA polymerase encounters the 5'-end of a downstream Okazaki fragment. Binds the unpaired 3'-DNA end and kinks the DNA to facilitate 5' cleavage specificity. Cleaves one nucleotide into the double-stranded DNA from the junction in flap DNA, leaving a nick for ligation. Also involved in the base excision repair [...] | 0.776 |
| ADL59339.1 | lig | MTBMA_c17710 | MTBMA_c01660 | Predicted replication factor A. | ATP-dependent DNA ligase; DNA ligase that seals nicks in double-stranded DNA during DNA replication, DNA recombination and DNA repair. | 0.724 |
| ADL59339.1 | mre11 | MTBMA_c17710 | MTBMA_c09280 | Predicted replication factor A. | Predicted DNA double-strand repair nuclease Mre11; Part of the Rad50/Mre11 complex, which is involved in the early steps of DNA double-strand break (DSB) repair. The complex may facilitate opening of the processed DNA ends to aid in the recruitment of HerA and NurA. Mre11 binds to DSB ends and has both double-stranded 3'-5' exonuclease activity and single-stranded endonuclease activity. Belongs to the MRE11/RAD32 family. | 0.954 |
| ADL59339.1 | radA | MTBMA_c17710 | MTBMA_c17700 | Predicted replication factor A. | DNA repair and recombination protein RadA; Involved in DNA repair and in homologous recombination. Binds and assemble on single-stranded DNA to form a nucleoprotein filament. Hydrolyzes ATP in a ssDNA-dependent manner and promotes DNA strand exchange between homologous DNA molecules. | 0.987 |
| ADL59339.1 | radB | MTBMA_c17710 | MTBMA_c02710 | Predicted replication factor A. | Predicted DNA repair and recombination protein RadB; Involved in DNA repair and in homologous recombination. May regulate the cleavage reactions of the branch-structured DNA. Has a very weak ATPase activity that is not stimulated by DNA. Binds DNA but does not promote DNA strands exchange. | 0.918 |
| ADL59339.1 | top6A | MTBMA_c17710 | MTBMA_c13900 | Predicted replication factor A. | Type II DNA topoisomerase VI, subunit A; Relaxes both positive and negative superturns and exhibits a strong decatenase activity; Belongs to the TOP6A family. | 0.443 |
| ADL59339.1 | topA | MTBMA_c17710 | MTBMA_c02100 | Predicted replication factor A. | DNA topoisomerase I; 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 [...] | 0.954 |