| node1 | node2 | node1 annotation | node2 annotation | score |
| BU52_01205 | BU52_01210 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | 0.547 |
| BU52_01205 | BU52_01215 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.533 |
| BU52_01205 | BU52_01220 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.533 |
| BU52_01205 | BU52_01225 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.533 |
| BU52_01210 | BU52_01205 | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.547 |
| BU52_01210 | BU52_01215 | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.994 |
| BU52_01210 | BU52_01220 | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.994 |
| BU52_01210 | BU52_01225 | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.978 |
| BU52_01215 | BU52_01205 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.533 |
| BU52_01215 | BU52_01210 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | 0.994 |
| BU52_01215 | BU52_01220 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.996 |
| BU52_01215 | BU52_01225 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.993 |
| BU52_01220 | BU52_01205 | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.533 |
| BU52_01220 | BU52_01210 | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | 0.994 |
| BU52_01220 | BU52_01215 | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.996 |
| BU52_01220 | BU52_01225 | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.984 |
| BU52_01225 | BU52_01205 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.533 |
| BU52_01225 | BU52_01210 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | Stilbene synthase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the Claisen condensation of four molecules of malonyl-CoA to yield 3,5- dihydroxyphenylacetyl-CoA (DPA-CoA) and three free coenzyme A (CoA). DpgA requires the presence of the dehydratases DpgB and DpgD to facilitate the aromatization of the DPA-S-DgpA or DPA-S-CoA intermediate. | 0.978 |
| BU52_01225 | BU52_01215 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.993 |
| BU52_01225 | BU52_01220 | enoyl-CoA hydratase; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the enoyl-CoA hydratase/isomerase family. | enoyl-CoA hydratase; Involved in the biosynthesis of the nonproteinogenic amino acid monomer (S)-3,5-dihydroxyphenylglycine (Dpg) responsible of the production of vancomycin and teicoplanin antibiotics. Catalyzes the unusual conversion 3,5-dihydroxyphenylacetyl-CoA (DPA-CoA) to 3,5- dihydroxyphenylglyoxylate. DpgC performed a net four-electron oxidation of the benzylic carbon of DPA-CoA and the hydrolysis of the thioester bond to generate free CoA. DpgC has the ability to process a diverse range of substituted phenylacetyl-CoA substrates ; Belongs to the enoyl-CoA hydratase/isomerase family. | 0.984 |