| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| elaA | phnO | STM2312 | STM4287 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | 0.861 |
| elaA | rimI | STM2312 | STM4558 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Modification of 30S ribosomal subunit protein S18; Acetylates the N-terminal alanine of ribosomal protein S18. | 0.861 |
| elaA | rimJ | STM2312 | STM1167 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Similar to E. coli acetylation of N-terminal alanine of 30S ribosomal subunit protein S5 (AAC74150.1); Blastp hit to AAC74150.1 (194 aa), 95% identity in aa 1 - 194. | 0.859 |
| elaA | rimL | STM2312 | STM1611 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Acetyl transferase; Modifies N-terminal serine of 50S ribosomal subunit protein L7/L12; similar to E. coli acetylation of N-terminal serine of 30S ribosomal subunit protein L7; acetyl transferase (AAC74509.1); Blastp hit to AAC74509.1 (179 aa), 67% identity in aa 1 - 178. | 0.769 |
| elaA | yhhY | STM2312 | STM3546 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Putative transferase; Similar to E. coli orf, hypothetical protein (AAC76466.1); Blastp hit to AAC76466.1 (162 aa), 82% identity in aa 1 - 162. | 0.859 |
| elaA | yiaC | STM2312 | STM3643 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Putative acetyltransferase; Similar to E. coli orf, hypothetical protein (AAC76574.1); Blastp hit to AAC76574.1 (146 aa), 60% identity in aa 1 - 145. | 0.919 |
| elaA | yjaB | STM2312 | STM4181 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Putative acetyltransferase; N-epsilon-lysine acetyltransferase that catalyzes acetylation of a large number of proteins; Belongs to the acetyltransferase family. | 0.919 |
| elaA | ypfI | STM2312 | STM2485 | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | Putative acetyltransferase; Catalyzes the formation of N(4)-acetylcytidine (ac(4)C) at the wobble position of tRNA(Met), by using acetyl-CoA as an acetyl donor and ATP (or GTP). | 0.817 |
| phnO | elaA | STM4287 | STM2312 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Putative acyltransferase; Similar to E. coli orf, hypothetical protein (AAC75327.1); Blastp hit to AAC75327.1 (153 aa), 80% identity in aa 1 - 153. | 0.861 |
| phnO | phnW | STM4287 | STM0431 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | 2-aminoethylphosphonate transport; Involved in phosphonate degradation. | 0.985 |
| phnO | phnX | STM4287 | STM0432 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | 2-aminoethylphosphonate transport; Involved in phosphonate degradation. | 0.860 |
| phnO | rimI | STM4287 | STM4558 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Modification of 30S ribosomal subunit protein S18; Acetylates the N-terminal alanine of ribosomal protein S18. | 0.953 |
| phnO | rimJ | STM4287 | STM1167 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Similar to E. coli acetylation of N-terminal alanine of 30S ribosomal subunit protein S5 (AAC74150.1); Blastp hit to AAC74150.1 (194 aa), 95% identity in aa 1 - 194. | 0.857 |
| phnO | rimL | STM4287 | STM1611 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Acetyl transferase; Modifies N-terminal serine of 50S ribosomal subunit protein L7/L12; similar to E. coli acetylation of N-terminal serine of 30S ribosomal subunit protein L7; acetyl transferase (AAC74509.1); Blastp hit to AAC74509.1 (179 aa), 67% identity in aa 1 - 178. | 0.864 |
| phnO | yhhY | STM4287 | STM3546 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Putative transferase; Similar to E. coli orf, hypothetical protein (AAC76466.1); Blastp hit to AAC76466.1 (162 aa), 82% identity in aa 1 - 162. | 0.870 |
| phnO | yiaC | STM4287 | STM3643 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Putative acetyltransferase; Similar to E. coli orf, hypothetical protein (AAC76574.1); Blastp hit to AAC76574.1 (146 aa), 60% identity in aa 1 - 145. | 0.952 |
| phnO | yjaB | STM4287 | STM4181 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Putative acetyltransferase; N-epsilon-lysine acetyltransferase that catalyzes acetylation of a large number of proteins; Belongs to the acetyltransferase family. | 0.951 |
| phnO | ypfI | STM4287 | STM2485 | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | Putative acetyltransferase; Catalyzes the formation of N(4)-acetylcytidine (ac(4)C) at the wobble position of tRNA(Met), by using acetyl-CoA as an acetyl donor and ATP (or GTP). | 0.859 |
| phnW | phnO | STM0431 | STM4287 | 2-aminoethylphosphonate transport; Involved in phosphonate degradation. | Putative regulator in phn operon; Aminoalkylphosphonate N-acetyltransferase which is able to acetylate a range of aminoalkylphosphonic acids, including (S)-1- aminoethylphosphonate ((S)-1AEP) and 2-aminoethylphosphonate, using acetyl-CoA as acetyl donor. Its physiological role in S.typhimurium is unclear. However, by acetylating (S)-1AEP, PhnO would protect against the deleterious effects of (S)-1AEP, a structural analog of D-alanine that has antibacterial properties. | 0.985 |
| phnW | phnX | STM0431 | STM0432 | 2-aminoethylphosphonate transport; Involved in phosphonate degradation. | 2-aminoethylphosphonate transport; Involved in phosphonate degradation. | 0.999 |