| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| SO_4341 | yiiM | SO_4341 | SO_4456 | Uncharacterized protein. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.608 |
| SO_4455 | SO_4457 | SO_4455 | SO_4457 | COG3296 family membrane protein. | Diguanylate cyclase. | 0.491 |
| SO_4455 | yiiM | SO_4455 | SO_4456 | COG3296 family membrane protein. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.666 |
| SO_4457 | SO_4455 | SO_4457 | SO_4455 | Diguanylate cyclase. | COG3296 family membrane protein. | 0.491 |
| SO_4457 | yiiM | SO_4457 | SO_4456 | Diguanylate cyclase. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.570 |
| cysJ | yedY | SO_3738 | SO_2042 | Sulfite reductase (NADPH) flavoprotein subunit CysJ; Component of the sulfite reductase complex that catalyzes the 6-electron reduction of sulfite to sulfide. This is one of several activities required for the biosynthesis of L-cysteine from sulfate. The flavoprotein component catalyzes the electron flow from NADPH -> FAD -> FMN to the hemoprotein component; Belongs to the NADPH-dependent sulphite reductase flavoprotein subunit CysJ family. In the C-terminal section; belongs to the flavoprotein pyridine nucleotide cytochrome reductase family. | Oxidoreductase molybdenum-binding subunit YedY; Part of the MsrPQ system that repairs oxidized periplasmic proteins containing methionine sulfoxide residues (Met-O), using respiratory chain electrons. Thus protects these proteins from oxidative-stress damage caused by reactive species of oxygen and chlorine generated by the host defense mechanisms. MsrPQ is essential for the maintenance of envelope integrity under bleach stress, rescuing a wide series of structurally unrelated periplasmic proteins from methionine oxidation. The catalytic subunit MsrP is non-stereospecific, being able t [...] | 0.466 |
| cysJ | yiiM | SO_3738 | SO_4456 | Sulfite reductase (NADPH) flavoprotein subunit CysJ; Component of the sulfite reductase complex that catalyzes the 6-electron reduction of sulfite to sulfide. This is one of several activities required for the biosynthesis of L-cysteine from sulfate. The flavoprotein component catalyzes the electron flow from NADPH -> FAD -> FMN to the hemoprotein component; Belongs to the NADPH-dependent sulphite reductase flavoprotein subunit CysJ family. In the C-terminal section; belongs to the flavoprotein pyridine nucleotide cytochrome reductase family. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.715 |
| moaD | moaE | SO_4450 | SO_4449 | Molybdenum cofactor biosynthesis protein D MoaD. | Molybdenum cofactor biosynthesis protein E MoaE. | 0.999 |
| moaD | mobB/moeA | SO_4450 | SO_4723 | Molybdenum cofactor biosynthesis protein D MoaD. | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | 0.956 |
| moaD | nuoE | SO_4450 | SO_1018 | Molybdenum cofactor biosynthesis protein D MoaD. | NADH-ubiquinone oxidoreductase subunit E NuoE. | 0.430 |
| moaD | yiiM | SO_4450 | SO_4456 | Molybdenum cofactor biosynthesis protein D MoaD. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.539 |
| moaE | moaD | SO_4449 | SO_4450 | Molybdenum cofactor biosynthesis protein E MoaE. | Molybdenum cofactor biosynthesis protein D MoaD. | 0.999 |
| moaE | mobB/moeA | SO_4449 | SO_4723 | Molybdenum cofactor biosynthesis protein E MoaE. | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | 0.997 |
| moaE | nuoE | SO_4449 | SO_1018 | Molybdenum cofactor biosynthesis protein E MoaE. | NADH-ubiquinone oxidoreductase subunit E NuoE. | 0.448 |
| moaE | yedY | SO_4449 | SO_2042 | Molybdenum cofactor biosynthesis protein E MoaE. | Oxidoreductase molybdenum-binding subunit YedY; Part of the MsrPQ system that repairs oxidized periplasmic proteins containing methionine sulfoxide residues (Met-O), using respiratory chain electrons. Thus protects these proteins from oxidative-stress damage caused by reactive species of oxygen and chlorine generated by the host defense mechanisms. MsrPQ is essential for the maintenance of envelope integrity under bleach stress, rescuing a wide series of structurally unrelated periplasmic proteins from methionine oxidation. The catalytic subunit MsrP is non-stereospecific, being able t [...] | 0.426 |
| moaE | yiiM | SO_4449 | SO_4456 | Molybdenum cofactor biosynthesis protein E MoaE. | MoCo-dependent hydroxylamine resistance protein YiiM. | 0.581 |
| mobB/moeA | moaD | SO_4723 | SO_4450 | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | Molybdenum cofactor biosynthesis protein D MoaD. | 0.956 |
| mobB/moeA | moaE | SO_4723 | SO_4449 | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | Molybdenum cofactor biosynthesis protein E MoaE. | 0.997 |
| mobB/moeA | nuoE | SO_4723 | SO_1018 | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | NADH-ubiquinone oxidoreductase subunit E NuoE. | 0.440 |
| mobB/moeA | yedY | SO_4723 | SO_2042 | Bifunctional tungstopterin-guanine dinucleotide biosynthesis protein MobB/MoeA; Catalyzes the insertion of molybdate into adenylated molybdopterin with the concomitant release of AMP. Belongs to the MoeA family. | Oxidoreductase molybdenum-binding subunit YedY; Part of the MsrPQ system that repairs oxidized periplasmic proteins containing methionine sulfoxide residues (Met-O), using respiratory chain electrons. Thus protects these proteins from oxidative-stress damage caused by reactive species of oxygen and chlorine generated by the host defense mechanisms. MsrPQ is essential for the maintenance of envelope integrity under bleach stress, rescuing a wide series of structurally unrelated periplasmic proteins from methionine oxidation. The catalytic subunit MsrP is non-stereospecific, being able t [...] | 0.643 |