| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| AMQ93546.1 | rdgC | ACT75_02930 | ACT75_02935 | Pyrroline-5-carboxylate reductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Recombination-associated protein RdgC; May be involved in recombination. Belongs to the RdgC family. | 0.557 |
| AMQ93546.1 | xerD | ACT75_02930 | ACT75_02925 | Pyrroline-5-carboxylate reductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.774 |
| AMQ94346.1 | gltS | ACT75_07305 | ACT75_05060 | Antibiotic biosynthesis monooxygenase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Sodium:glutamate symporter; Catalyzes the sodium-dependent transport of glutamate. Belongs to the glutamate:Na(+) symporter (ESS) (TC 2.A.27) family. | 0.678 |
| AMQ94346.1 | xerD | ACT75_07305 | ACT75_02925 | Antibiotic biosynthesis monooxygenase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.707 |
| AMQ94801.1 | recR | ACT75_09870 | ACT75_07930 | Cell division protein FtsK; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.627 |
| AMQ94801.1 | xerD | ACT75_09870 | ACT75_02925 | Cell division protein FtsK; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.780 |
| AMQ94922.1 | AMQ94923.1 | ACT75_10540 | ACT75_10545 | Integrase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Relaxase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.743 |
| AMQ94922.1 | xerD | ACT75_10540 | ACT75_02925 | Integrase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.738 |
| AMQ94923.1 | AMQ94922.1 | ACT75_10545 | ACT75_10540 | Relaxase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Integrase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.743 |
| AMQ94923.1 | gltS | ACT75_10545 | ACT75_05060 | Relaxase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Sodium:glutamate symporter; Catalyzes the sodium-dependent transport of glutamate. Belongs to the glutamate:Na(+) symporter (ESS) (TC 2.A.27) family. | 0.521 |
| AMQ94923.1 | xerD | ACT75_10545 | ACT75_02925 | Relaxase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 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. | 0.682 |
| gltS | AMQ94346.1 | ACT75_05060 | ACT75_07305 | Sodium:glutamate symporter; Catalyzes the sodium-dependent transport of glutamate. Belongs to the glutamate:Na(+) symporter (ESS) (TC 2.A.27) family. | Antibiotic biosynthesis monooxygenase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.678 |
| gltS | AMQ94923.1 | ACT75_05060 | ACT75_10545 | Sodium:glutamate symporter; Catalyzes the sodium-dependent transport of glutamate. Belongs to the glutamate:Na(+) symporter (ESS) (TC 2.A.27) family. | Relaxase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.521 |
| gltS | xerD | ACT75_05060 | ACT75_02925 | Sodium:glutamate symporter; Catalyzes the sodium-dependent transport of glutamate. Belongs to the glutamate:Na(+) symporter (ESS) (TC 2.A.27) family. | 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. | 0.641 |
| nusG | sppA | ACT75_07295 | ACT75_01200 | Transcription antiterminator NusG; Participates in transcription elongation, termination and antitermination. | Signal peptide peptidase SppA; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.711 |
| nusG | xerD | ACT75_07295 | ACT75_02925 | Transcription antiterminator NusG; Participates in transcription elongation, termination and antitermination. | 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. | 0.740 |
| rdgC | AMQ93546.1 | ACT75_02935 | ACT75_02930 | Recombination-associated protein RdgC; May be involved in recombination. Belongs to the RdgC family. | Pyrroline-5-carboxylate reductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.557 |
| rdgC | xerD | ACT75_02935 | ACT75_02925 | Recombination-associated protein RdgC; May be involved in recombination. Belongs to the RdgC family. | 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. | 0.633 |
| recR | AMQ94801.1 | ACT75_07930 | ACT75_09870 | 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. | Cell division protein FtsK; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.627 |
| recR | xerD | ACT75_07930 | ACT75_02925 | 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. | 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. | 0.629 |