| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| glnB | nadE | STM2561 | STM1310 | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | NAD synthetase; Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source. | 0.472 |
| glnB | purG | STM2561 | STM2565 | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | 0.500 |
| glnB | yfhA | STM2561 | STM2562 | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | EBP family; similar to E. coli putative 2-component transcriptional regulator (AAC75607.1); Blastp hit to AAC75607.1 (444 aa), 95% identity in aa 1 - 444. | 0.813 |
| glnB | yfhG | STM2561 | STM2563 | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.908 |
| glnB | yfhK | STM2561 | STM2564 | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | Putative sensory kinase in regulatory system; Similar to E. coli putative 2-component sensor protein (AAC75609.1); Blastp hit to AAC75609.1 (496 aa), 87% identity in aa 19 - 496. | 0.831 |
| grxB | yfhG | STM1165 | STM2563 | Glutaredoxin 2; Similar to E. coli glutaredoxin 2 (AAC74148.1); Blastp hit to AAC74148.1 (215 aa), 85% identity in aa 1 - 215. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.510 |
| hemY | yfhD | STM3935 | STM2567 | Similar to E. coli a late step of protoheme IX synthesis (AAC76805.1); Blastp hit to AAC76805.1 (398 aa), 95% identity in aa 1 - 398. | Putative periplasmic amino acid binding protein; Murein-degrading enzyme that degrades murein glycan strands and insoluble, high-molecular weight murein sacculi, with the concomitant formation of a 1,6-anhydromuramoyl product. Lytic transglycosylases (LTs) play an integral role in the metabolism of the peptidoglycan (PG) sacculus. Their lytic action creates space within the PG sacculus to allow for its expansion as well as for the insertion of various structures such as secretion systems and flagella. In the N-terminal section; belongs to the bacterial solute- binding protein 3 family. | 0.566 |
| hemY | yfhG | STM3935 | STM2563 | Similar to E. coli a late step of protoheme IX synthesis (AAC76805.1); Blastp hit to AAC76805.1 (398 aa), 95% identity in aa 1 - 398. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.650 |
| nadE | glnB | STM1310 | STM2561 | NAD synthetase; Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source. | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | 0.472 |
| nadE | purG | STM1310 | STM2565 | NAD synthetase; Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source. | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | 0.612 |
| nadE | yfhG | STM1310 | STM2563 | NAD synthetase; Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.521 |
| pgtA | yfhG | STM2396 | STM2563 | Activator protein; Member of the two-component regulatory system PgtB/PgtA that regulates the inducible phosphoglycerate transport system. When activated by PgtB it acts in conjunction with sigma-54 as a transcriptional activator. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.478 |
| purG | glnB | STM2565 | STM2561 | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | 0.500 |
| purG | nadE | STM2565 | STM1310 | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | NAD synthetase; Catalyzes the ATP-dependent amidation of deamido-NAD to form NAD. Uses ammonia as a nitrogen source. | 0.612 |
| purG | yfhD | STM2565 | STM2567 | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | Putative periplasmic amino acid binding protein; Murein-degrading enzyme that degrades murein glycan strands and insoluble, high-molecular weight murein sacculi, with the concomitant formation of a 1,6-anhydromuramoyl product. Lytic transglycosylases (LTs) play an integral role in the metabolism of the peptidoglycan (PG) sacculus. Their lytic action creates space within the PG sacculus to allow for its expansion as well as for the insertion of various structures such as secretion systems and flagella. In the N-terminal section; belongs to the bacterial solute- binding protein 3 family. | 0.809 |
| purG | yfhG | STM2565 | STM2563 | Phosphoribosylformylglycinamidine synthetase; Phosphoribosylformylglycinamidine synthase involved in the purines biosynthetic pathway. Catalyzes the ATP-dependent conversion of formylglycinamide ribonucleotide (FGAR) and glutamine to yield formylglycinamidine ribonucleotide (FGAM) and glutamate. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.463 |
| truA | yfhG | STM2368 | STM2563 | Pseudouridylate synthase I; Formation of pseudouridine at positions 38, 39 and 40 in the anticodon stem and loop of transfer RNAs. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.542 |
| yfhA | glnB | STM2562 | STM2561 | EBP family; similar to E. coli putative 2-component transcriptional regulator (AAC75607.1); Blastp hit to AAC75607.1 (444 aa), 95% identity in aa 1 - 444. | Regulatory protein (P-II) for nitrogen assimilation by glutamine synthetase (ATase); P-II indirectly controls the transcription of the glutamine synthetase gene (GlnA). P-II prevents NR-II-catalyzed conversion of NR- I to NR-I-phosphate, the transcriptional activator of GlnA. When P-II is uridylylated to P-II-UMP, these events are reversed. When the ratio of Gln to 2-ketoglutarate decreases, P-II is uridylylated to P-II-UMP, which causes the deadenylation of glutamine synthetase by GlnE, so activating the enzyme (By similarity). | 0.813 |
| yfhA | yfhG | STM2562 | STM2563 | EBP family; similar to E. coli putative 2-component transcriptional regulator (AAC75607.1); Blastp hit to AAC75607.1 (444 aa), 95% identity in aa 1 - 444. | Putative transcriptional regulator of two-component regulator protein (EBP familiiy); EBP family; similar to E. coli putative alpha helix protein (AAC75608.1); Blastp hit to AAC75608.1 (237 aa), 63% identity in aa 1 - 234. | 0.912 |
| yfhA | yfhK | STM2562 | STM2564 | EBP family; similar to E. coli putative 2-component transcriptional regulator (AAC75607.1); Blastp hit to AAC75607.1 (444 aa), 95% identity in aa 1 - 444. | Putative sensory kinase in regulatory system; Similar to E. coli putative 2-component sensor protein (AAC75609.1); Blastp hit to AAC75609.1 (496 aa), 87% identity in aa 19 - 496. | 0.999 |