| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| Moth_0064 | Moth_1517 | Moth_0064 | Moth_1517 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Sulfide dehydrogenase (flavoprotein) subunit SudA. | 0.957 |
| Moth_0064 | Moth_1717 | Moth_0064 | Moth_1717 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | 0.996 |
| Moth_0064 | Moth_1883 | Moth_0064 | Moth_1883 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Ferredoxin hydrogenase. | 0.984 |
| Moth_0064 | Moth_1909 | Moth_0064 | Moth_1909 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Nitrate reductase (quinol-dependent), catalytic subunit; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. NasA/NapA/NarB subfamily. | 0.970 |
| Moth_0064 | Moth_2186 | Moth_0064 | Moth_2186 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | NADH dehydrogenase (ubiquinone), 30 kDa subunit. | 0.631 |
| Moth_0064 | Moth_2190 | Moth_0064 | Moth_2190 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Respiratory-chain NADH dehydrogenase, subunit 1. | 0.499 |
| Moth_0064 | Moth_2192 | Moth_0064 | Moth_2192 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | 4Fe-4S ferredoxin, iron-sulfur binding protein. | 0.961 |
| Moth_0064 | fdhA | Moth_0064 | Moth_2193 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Formate dehydrogenase, alpha subunit (F420); Contains selenocysteine; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. | 0.970 |
| Moth_0064 | fdhA-2 | Moth_0064 | Moth_2312 | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | Formate dehydrogenase alpha subunit; Contains selenocysteine. | 0.970 |
| Moth_1517 | Moth_0064 | Moth_1517 | Moth_0064 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | 0.957 |
| Moth_1517 | Moth_1717 | Moth_1517 | Moth_1717 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | 0.950 |
| Moth_1517 | Moth_1883 | Moth_1517 | Moth_1883 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | Ferredoxin hydrogenase. | 0.836 |
| Moth_1517 | Moth_1909 | Moth_1517 | Moth_1909 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | Nitrate reductase (quinol-dependent), catalytic subunit; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. NasA/NapA/NarB subfamily. | 0.887 |
| Moth_1517 | Moth_2192 | Moth_1517 | Moth_2192 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | 4Fe-4S ferredoxin, iron-sulfur binding protein. | 0.925 |
| Moth_1517 | fdhA | Moth_1517 | Moth_2193 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | Formate dehydrogenase, alpha subunit (F420); Contains selenocysteine; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. | 0.915 |
| Moth_1517 | fdhA-2 | Moth_1517 | Moth_2312 | Sulfide dehydrogenase (flavoprotein) subunit SudA. | Formate dehydrogenase alpha subunit; Contains selenocysteine. | 0.921 |
| Moth_1717 | Moth_0064 | Moth_1717 | Moth_0064 | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | Pyruvate:ferredoxin (flavodoxin) oxidoreductase; Catalyzes the oxidative decarboxylation of pyruvate to acetyl-CoA and carbon dioxide. The two electrons that are generated as a result of pyruvate decarboxylation are used in the reduction of low potential ferredoxins, which provide reducing equivalents for central metabolism. Also catalyzes the reverse reaction, i.e. the synthesis of pyruvate from acetyl-CoA and carbon dioxide. Appears to function physiologically in both directions. The oxidation of pyruvate by PFOR is required to connect glycolysis and the Wood- Ljungdahl pathway of re [...] | 0.996 |
| Moth_1717 | Moth_1517 | Moth_1717 | Moth_1517 | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | Sulfide dehydrogenase (flavoprotein) subunit SudA. | 0.950 |
| Moth_1717 | Moth_1883 | Moth_1717 | Moth_1883 | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | Ferredoxin hydrogenase. | 0.986 |
| Moth_1717 | Moth_1909 | Moth_1717 | Moth_1909 | NAD(P)-dependent iron-only hydrogenase catalytic subunit. | Nitrate reductase (quinol-dependent), catalytic subunit; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. NasA/NapA/NarB subfamily. | 0.939 |