| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| SO_3759 | SO_4002 | SO_3759 | SO_4002 | Diguanylate cyclase with GAF sensory domain. | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | 0.818 |
| SO_3759 | glnE | SO_3759 | SO_3760 | Diguanylate cyclase with GAF sensory domain. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.612 |
| SO_3762 | glnE | SO_3762 | SO_3760 | Membrane protein of unknown function DUF350. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.580 |
| SO_4002 | SO_3759 | SO_4002 | SO_3759 | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | Diguanylate cyclase with GAF sensory domain. | 0.818 |
| SO_4002 | glnE | SO_4002 | SO_3760 | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.630 |
| SO_4002 | guaA | SO_4002 | SO_3292 | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | GMP synthase (glutamine-hydrolysing) GuaA; Catalyzes the synthesis of GMP from XMP. | 0.723 |
| SO_4002 | tyrA | SO_4002 | SO_1362 | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | Bifunctional chorismate mutase T/prephenate dehydrogenase TyrA. | 0.667 |
| ampC | glnE | SO_2388 | SO_3760 | Class C beta-lactamase AmpC. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.810 |
| glnA | glnD | SO_4410 | SO_1626 | Glutamine synthetase GlnA. | protein-P-II uridylyltransferase GlnD; Modifies, by uridylylation and deuridylylation, the PII regulatory proteins (GlnB and homologs), in response to the nitrogen status of the cell that GlnD senses through the glutamine level. Under low glutamine levels, catalyzes the conversion of the PII proteins and UTP to PII-UMP and PPi, while under higher glutamine levels, GlnD hydrolyzes PII-UMP to PII and UMP (deuridylylation). Thus, controls uridylylation state and activity of the PII proteins, and plays an important role in the regulation of nitrogen assimilation and metabolism. | 0.526 |
| glnA | glnE | SO_4410 | SO_3760 | Glutamine synthetase GlnA. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.747 |
| glnA | guaA | SO_4410 | SO_3292 | Glutamine synthetase GlnA. | GMP synthase (glutamine-hydrolysing) GuaA; Catalyzes the synthesis of GMP from XMP. | 0.699 |
| glnD | glnA | SO_1626 | SO_4410 | protein-P-II uridylyltransferase GlnD; Modifies, by uridylylation and deuridylylation, the PII regulatory proteins (GlnB and homologs), in response to the nitrogen status of the cell that GlnD senses through the glutamine level. Under low glutamine levels, catalyzes the conversion of the PII proteins and UTP to PII-UMP and PPi, while under higher glutamine levels, GlnD hydrolyzes PII-UMP to PII and UMP (deuridylylation). Thus, controls uridylylation state and activity of the PII proteins, and plays an important role in the regulation of nitrogen assimilation and metabolism. | Glutamine synthetase GlnA. | 0.526 |
| glnD | glnE | SO_1626 | SO_3760 | protein-P-II uridylyltransferase GlnD; Modifies, by uridylylation and deuridylylation, the PII regulatory proteins (GlnB and homologs), in response to the nitrogen status of the cell that GlnD senses through the glutamine level. Under low glutamine levels, catalyzes the conversion of the PII proteins and UTP to PII-UMP and PPi, while under higher glutamine levels, GlnD hydrolyzes PII-UMP to PII and UMP (deuridylylation). Thus, controls uridylylation state and activity of the PII proteins, and plays an important role in the regulation of nitrogen assimilation and metabolism. | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | 0.850 |
| glnE | SO_3759 | SO_3760 | SO_3759 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | Diguanylate cyclase with GAF sensory domain. | 0.612 |
| glnE | SO_3762 | SO_3760 | SO_3762 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | Membrane protein of unknown function DUF350. | 0.580 |
| glnE | SO_4002 | SO_3760 | SO_4002 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | Two component signal transduction system hybrid histidine kinase/response regulator with PAS sensory domain. | 0.630 |
| glnE | ampC | SO_3760 | SO_2388 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | Class C beta-lactamase AmpC. | 0.810 |
| glnE | glnA | SO_3760 | SO_4410 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | Glutamine synthetase GlnA. | 0.747 |
| glnE | glnD | SO_3760 | SO_1626 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | protein-P-II uridylyltransferase GlnD; Modifies, by uridylylation and deuridylylation, the PII regulatory proteins (GlnB and homologs), in response to the nitrogen status of the cell that GlnD senses through the glutamine level. Under low glutamine levels, catalyzes the conversion of the PII proteins and UTP to PII-UMP and PPi, while under higher glutamine levels, GlnD hydrolyzes PII-UMP to PII and UMP (deuridylylation). Thus, controls uridylylation state and activity of the PII proteins, and plays an important role in the regulation of nitrogen assimilation and metabolism. | 0.850 |
| glnE | guaA | SO_3760 | SO_3292 | [glutamate-ammonia-ligase] adenylyltransferase GlnE; Involved in the regulation of glutamine synthetase GlnA, a key enzyme in the process to assimilate ammonia. When cellular nitrogen levels are high, the C-terminal adenylyl transferase (AT) inactivates GlnA by covalent transfer of an adenylyl group from ATP to specific tyrosine residue of GlnA, thus reducing its activity. Conversely, when nitrogen levels are low, the N-terminal adenylyl removase (AR) activates GlnA by removing the adenylyl group by phosphorolysis, increasing its activity. The regulatory region of GlnE binds the signal [...] | GMP synthase (glutamine-hydrolysing) GuaA; Catalyzes the synthesis of GMP from XMP. | 0.585 |