| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| AQS61177.1 | AQS61178.1 | B0909_02035 | B0909_02040 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | Prolipoprotein diacylglyceryl transferase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.824 |
| AQS61177.1 | AQS61515.1 | B0909_02035 | B0909_03960 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.715 |
| AQS61177.1 | AQS61735.1 | B0909_02035 | B0909_05335 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | Phytoene/squalene synthase family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.830 |
| AQS61177.1 | AQS62030.1 | B0909_02035 | B0909_07025 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit G; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. Belongs to the complex I 75 kDa subunit family. | 0.823 |
| AQS61177.1 | AQS62864.1 | B0909_02035 | B0909_11985 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | Complex I NDUFA9 subunit family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.723 |
| AQS61177.1 | AQS64722.1 | B0909_02035 | B0909_21060 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | SAM-dependent methyltransferase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.758 |
| AQS61177.1 | nuoB | B0909_02035 | B0909_07060 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit B; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. | 0.854 |
| AQS61177.1 | nuoC | B0909_02035 | B0909_07055 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit C; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient; Belongs to the complex I 30 kDa subunit family. | 0.873 |
| AQS61177.1 | nuoD | B0909_02035 | B0909_07045 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH dehydrogenase subunit D; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient; Belongs to the complex I 49 kDa subunit family. | 0.881 |
| AQS61177.1 | nuoI | B0909_02035 | B0909_07015 | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit I; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. | 0.849 |
| AQS61178.1 | AQS61177.1 | B0909_02040 | B0909_02035 | Prolipoprotein diacylglyceryl transferase; Derived by automated computational analysis using gene prediction method: Protein Homology. | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.824 |
| AQS61178.1 | nuoI | B0909_02040 | B0909_07015 | Prolipoprotein diacylglyceryl transferase; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit I; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. | 0.416 |
| AQS61515.1 | AQS61177.1 | B0909_03960 | B0909_02035 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.715 |
| AQS61515.1 | AQS61735.1 | B0909_03960 | B0909_05335 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Phytoene/squalene synthase family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.405 |
| AQS61515.1 | AQS62030.1 | B0909_03960 | B0909_07025 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit G; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. Belongs to the complex I 75 kDa subunit family. | 0.762 |
| AQS61515.1 | AQS62864.1 | B0909_03960 | B0909_11985 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Complex I NDUFA9 subunit family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.408 |
| AQS61515.1 | AQS64722.1 | B0909_03960 | B0909_21060 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | SAM-dependent methyltransferase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.761 |
| AQS61515.1 | nuoC | B0909_03960 | B0909_07055 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit C; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient; Belongs to the complex I 30 kDa subunit family. | 0.617 |
| AQS61515.1 | nuoI | B0909_03960 | B0909_07015 | NADH-ubiquinone oxidoreductase; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADH-quinone oxidoreductase subunit I; NDH-1 shuttles electrons from NADH, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory chain. The immediate electron acceptor for the enzyme in this species is believed to be ubiquinone. Couples the redox reaction to proton translocation (for every two electrons transferred, four hydrogen ions are translocated across the cytoplasmic membrane), and thus conserves the redox energy in a proton gradient. | 0.419 |
| AQS61735.1 | AQS61177.1 | B0909_05335 | B0909_02035 | Phytoene/squalene synthase family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | TetR family transcriptional regulator; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.830 |