node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
DO97_07000 | DO97_08050 | DO97_07000 | DO97_08050 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Cytochrome P450; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.752 |
DO97_07000 | DO97_10345 | DO97_07000 | DO97_10345 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | 0.860 |
DO97_07000 | DO97_13395 | DO97_07000 | DO97_13395 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.858 |
DO97_07000 | DO97_16980 | DO97_07000 | DO97_16980 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Glutamate synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.742 |
DO97_08050 | DO97_07000 | DO97_08050 | DO97_07000 | Cytochrome P450; Derived by automated computational analysis using gene prediction method: Protein Homology. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.752 |
DO97_08050 | DO97_13395 | DO97_08050 | DO97_13395 | Cytochrome P450; Derived by automated computational analysis using gene prediction method: Protein Homology. | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.832 |
DO97_08050 | DO97_16980 | DO97_08050 | DO97_16980 | Cytochrome P450; Derived by automated computational analysis using gene prediction method: Protein Homology. | Glutamate synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.915 |
DO97_10345 | DO97_07000 | DO97_10345 | DO97_07000 | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.860 |
DO97_10345 | DO97_13395 | DO97_10345 | DO97_13395 | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.870 |
DO97_10345 | DO97_16980 | DO97_10345 | DO97_16980 | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | Glutamate synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.470 |
DO97_10345 | ndhH | DO97_10345 | DO97_12215 | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | NADPH-quinone oxidoreductase; NDH-1 shuttles electrons from an unknown electron donor, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory and/or the photosynthetic chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient. Cyanobacterial NDH-1 also plays a role in inorganic carbon-concentration. | 0.410 |
DO97_13395 | DO97_07000 | DO97_13395 | DO97_07000 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.858 |
DO97_13395 | DO97_08050 | DO97_13395 | DO97_08050 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Cytochrome P450; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.832 |
DO97_13395 | DO97_10345 | DO97_13395 | DO97_10345 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | 0.870 |
DO97_13395 | DO97_16780 | DO97_13395 | DO97_16780 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Photosystem I reaction center subunit III; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.801 |
DO97_13395 | DO97_16980 | DO97_13395 | DO97_16980 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Glutamate synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.924 |
DO97_13395 | ndhA | DO97_13395 | DO97_11585 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADPH-quinone oxidoreductase; NDH-1 shuttles electrons from an unknown electron donor, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory and/or the photosynthetic chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient. | 0.800 |
DO97_13395 | ndhB | DO97_13395 | DO97_02920 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | NAD(P)H-quinone oxidoreductase subunit 2; NDH-1 shuttles electrons from an unknown electron donor, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory and/or the photosynthetic chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient. Cyanobacterial NDH-1 also plays a role in inorganic carbon-concentration. | 0.802 |
DO97_13395 | ndhC | DO97_13395 | DO97_13505 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADPH-quinone oxidoreductase; NDH-1 shuttles electrons from an unknown electron donor, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory and/or the photosynthetic chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient. Cyanobacterial NDH-1 also plays a role in inorganic carbon-concentration. | 0.809 |
DO97_13395 | ndhH | DO97_13395 | DO97_12215 | Ferredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | NADPH-quinone oxidoreductase; NDH-1 shuttles electrons from an unknown electron donor, via FMN and iron-sulfur (Fe-S) centers, to quinones in the respiratory and/or the photosynthetic chain. The immediate electron acceptor for the enzyme in this species is believed to be plastoquinone. Couples the redox reaction to proton translocation, and thus conserves the redox energy in a proton gradient. Cyanobacterial NDH-1 also plays a role in inorganic carbon-concentration. | 0.812 |