| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| CCH87101.1 | bfmBC | MODMU_1659 | MODMU_3549 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | 0.902 |
| CCH87101.1 | gcvH | MODMU_1659 | MODMU_2671 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Glycine cleavage system H-protein; The glycine cleavage system catalyzes the degradation of glycine. The H protein shuttles the methylamine group of glycine from the P protein to the T protein. | 0.985 |
| CCH87101.1 | gcvP | MODMU_1659 | MODMU_2666 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Glycine cleavage system P-protein (glycine dehydrogenase); The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor; CO(2) is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein; Belongs to the GcvP family. | 0.959 |
| CCH87101.1 | gcvT-3 | MODMU_1659 | MODMU_3546 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Aminomethyltransferase; The glycine cleavage system catalyzes the degradation of glycine. | 0.954 |
| CCH87101.1 | glyA | MODMU_1659 | MODMU_3071 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.927 |
| CCH87101.1 | glyA-2 | MODMU_1659 | MODMU_4549 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.924 |
| CCH87101.1 | glyA-3 | MODMU_1659 | MODMU_5350 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.915 |
| bfmBC | CCH87101.1 | MODMU_3549 | MODMU_1659 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | 0.902 |
| bfmBC | gcvH | MODMU_3549 | MODMU_2671 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Glycine cleavage system H-protein; The glycine cleavage system catalyzes the degradation of glycine. The H protein shuttles the methylamine group of glycine from the P protein to the T protein. | 0.986 |
| bfmBC | gcvP | MODMU_3549 | MODMU_2666 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Glycine cleavage system P-protein (glycine dehydrogenase); The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor; CO(2) is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein; Belongs to the GcvP family. | 0.959 |
| bfmBC | gcvT-3 | MODMU_3549 | MODMU_3546 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Aminomethyltransferase; The glycine cleavage system catalyzes the degradation of glycine. | 0.955 |
| bfmBC | glyA | MODMU_3549 | MODMU_3071 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.925 |
| bfmBC | glyA-2 | MODMU_3549 | MODMU_4549 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.915 |
| bfmBC | glyA-3 | MODMU_3549 | MODMU_5350 | Dihydrolipoyl dehydrogenase; Function of homologous gene experimentally demonstrated in an other organism; enzyme. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.915 |
| folD | folD-2 | MODMU_2851 | MODMU_4827 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Bifunctional protein folD [Includes: Methylenetetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | 0.905 |
| folD | gcvH | MODMU_2851 | MODMU_2671 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Glycine cleavage system H-protein; The glycine cleavage system catalyzes the degradation of glycine. The H protein shuttles the methylamine group of glycine from the P protein to the T protein. | 0.760 |
| folD | gcvP | MODMU_2851 | MODMU_2666 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Glycine cleavage system P-protein (glycine dehydrogenase); The glycine cleavage system catalyzes the degradation of glycine. The P protein binds the alpha-amino group of glycine through its pyridoxal phosphate cofactor; CO(2) is released and the remaining methylamine moiety is then transferred to the lipoamide cofactor of the H protein; Belongs to the GcvP family. | 0.871 |
| folD | gcvT-3 | MODMU_2851 | MODMU_3546 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Aminomethyltransferase; The glycine cleavage system catalyzes the degradation of glycine. | 0.932 |
| folD | glyA | MODMU_2851 | MODMU_3071 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.969 |
| folD | glyA-2 | MODMU_2851 | MODMU_4549 | Bifunctional: 5,10-methylene-tetrahydrofolate dehydrogenase; Catalyzes the oxidation of 5,10-methylenetetrahydrofolate to 5,10-methenyltetrahydrofolate and then the hydrolysis of 5,10- methenyltetrahydrofolate to 10-formyltetrahydrofolate. | Serine hydroxymethyltransferase; Catalyzes the reversible interconversion of serine and glycine with tetrahydrofolate (THF) serving as the one-carbon carrier. This reaction serves as the major source of one-carbon groups required for the biosynthesis of purines, thymidylate, methionine, and other important biomolecules. Also exhibits THF-independent aldolase activity toward beta-hydroxyamino acids, producing glycine and aldehydes, via a retro-aldol mechanism. | 0.969 |