| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| CAZ94683.1 | CAZ94684.1 | ZOBELLIA_612 | ZOBELLIA_613 | Sodium/solute symporter; Sodium/substrate symport is a widespread mechanism of solute transport across cytoplasmic membranes of cells. Thereby the energy stored in an inwardly directed electrochemical sodium gradient (sodium motive force, SMF) is used to drive solute accumulation against a concentration gradient; Contains fourteen transmembrane helices; Localized in the cytoplasmic membrane; Specificity unclear; Belongs to the sodium:solute symporter (SSF) (TC 2.A.21) family. | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | 0.491 |
| CAZ94684.1 | CAZ94683.1 | ZOBELLIA_613 | ZOBELLIA_612 | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | Sodium/solute symporter; Sodium/substrate symport is a widespread mechanism of solute transport across cytoplasmic membranes of cells. Thereby the energy stored in an inwardly directed electrochemical sodium gradient (sodium motive force, SMF) is used to drive solute accumulation against a concentration gradient; Contains fourteen transmembrane helices; Localized in the cytoplasmic membrane; Specificity unclear; Belongs to the sodium:solute symporter (SSF) (TC 2.A.21) family. | 0.491 |
| CAZ94684.1 | CAZ94685.1 | ZOBELLIA_613 | ZOBELLIA_614 | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | Conserved hypothetical membrane protein; Contains two transmembrane helices; Localized in the cytoplasmic membrane; Conserved hypothetical protein. | 0.540 |
| CAZ94684.1 | moaA | ZOBELLIA_613 | ZOBELLIA_3681 | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | Molybdenum cofactor biosynthesis protein A; Catalyzes the cyclization of GTP to (8S)-3',8-cyclo-7,8- dihydroguanosine 5'-triphosphate. | 0.411 |
| CAZ94684.1 | narB/nirB | ZOBELLIA_613 | ZOBELLIA_1625 | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | 0.407 |
| CAZ94684.1 | paaE | ZOBELLIA_613 | ZOBELLIA_1767 | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | Phenylacetic acid degradation NADH oxidoreductase; The protein PaaE is involved in the phenylacetic acid aerobic catabolism. It is likely part of a multicomponent oxygenase involved in phenylacetyl-CoA hydroxylation. It is activated by cAMP receptor protein (CRP) and the integration host factor (IHF). Contains a N-terminal FAD-binding domain, a central feredoxin-like NAD-binding domain and a C-terminal 2Fe-2S iron-sulfur cluster binding domain; Localized in the cytoplasm; High confidence in function and specificity. | 0.776 |
| CAZ94685.1 | CAZ94684.1 | ZOBELLIA_614 | ZOBELLIA_613 | Conserved hypothetical membrane protein; Contains two transmembrane helices; Localized in the cytoplasmic membrane; Conserved hypothetical protein. | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | 0.540 |
| moaA | CAZ94684.1 | ZOBELLIA_3681 | ZOBELLIA_613 | Molybdenum cofactor biosynthesis protein A; Catalyzes the cyclization of GTP to (8S)-3',8-cyclo-7,8- dihydroguanosine 5'-triphosphate. | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | 0.411 |
| moaA | narB/nirB | ZOBELLIA_3681 | ZOBELLIA_1625 | Molybdenum cofactor biosynthesis protein A; Catalyzes the cyclization of GTP to (8S)-3',8-cyclo-7,8- dihydroguanosine 5'-triphosphate. | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | 0.633 |
| narB/nirB | CAZ94684.1 | ZOBELLIA_1625 | ZOBELLIA_613 | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | 0.407 |
| narB/nirB | moaA | ZOBELLIA_1625 | ZOBELLIA_3681 | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | Molybdenum cofactor biosynthesis protein A; Catalyzes the cyclization of GTP to (8S)-3',8-cyclo-7,8- dihydroguanosine 5'-triphosphate. | 0.633 |
| narB/nirB | paaE | ZOBELLIA_1625 | ZOBELLIA_1767 | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | Phenylacetic acid degradation NADH oxidoreductase; The protein PaaE is involved in the phenylacetic acid aerobic catabolism. It is likely part of a multicomponent oxygenase involved in phenylacetyl-CoA hydroxylation. It is activated by cAMP receptor protein (CRP) and the integration host factor (IHF). Contains a N-terminal FAD-binding domain, a central feredoxin-like NAD-binding domain and a C-terminal 2Fe-2S iron-sulfur cluster binding domain; Localized in the cytoplasm; High confidence in function and specificity. | 0.681 |
| paaE | CAZ94684.1 | ZOBELLIA_1767 | ZOBELLIA_613 | Phenylacetic acid degradation NADH oxidoreductase; The protein PaaE is involved in the phenylacetic acid aerobic catabolism. It is likely part of a multicomponent oxygenase involved in phenylacetyl-CoA hydroxylation. It is activated by cAMP receptor protein (CRP) and the integration host factor (IHF). Contains a N-terminal FAD-binding domain, a central feredoxin-like NAD-binding domain and a C-terminal 2Fe-2S iron-sulfur cluster binding domain; Localized in the cytoplasm; High confidence in function and specificity. | This protein belongs to the MOSC (MOCO sulfurase C-terminal) family which encompasses beta-strand-rich domains identified in the molybdenum cofactor sulfurase. These MOSC domains contain an absolutely conserved cysteine and are predicted to be sulfur-carrier domains that receive sulfur abstracted by the pyridoxal phosphate- dependent NifS-like enzymes, on their conserved cysteine, and deliver it for the formation of diverse sulfur-metal clusters. Localized in the cytoplasm; Family membership. | 0.776 |
| paaE | narB/nirB | ZOBELLIA_1767 | ZOBELLIA_1625 | Phenylacetic acid degradation NADH oxidoreductase; The protein PaaE is involved in the phenylacetic acid aerobic catabolism. It is likely part of a multicomponent oxygenase involved in phenylacetyl-CoA hydroxylation. It is activated by cAMP receptor protein (CRP) and the integration host factor (IHF). Contains a N-terminal FAD-binding domain, a central feredoxin-like NAD-binding domain and a C-terminal 2Fe-2S iron-sulfur cluster binding domain; Localized in the cytoplasm; High confidence in function and specificity. | Respiratory nitrate/nitrite reductase; Bifunctional enzyme involved in the denitrification processes (nitrate respiration). It contains in its N-terminal part a nitrate reductase module required for nitrate assimilation (reducing nitrate to nitrite) using molybdopterin and 1 4Fe-4S cluster as cofactors and in its C-terminal part a nitrite reductase module required for nitrite assimilation (reducing nitrite to ammonia) using FAD, 4Fe-4S cluster and siroheme as cofactors; Belongs to Belongs to the prokaryotic molybdopterin-containing oxidoreductase family and to the nitrite and sulfite r [...] | 0.681 |