node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
sat | soxA1 | HTH_0447 | HTH_1517 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | 0.920 |
sat | soxA2 | HTH_0447 | HTH_1518 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | 0.920 |
sat | soxB | HTH_0447 | HTH_1520 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur oxidation protein; Belongs to the 5'-nucleotidase family. | 0.900 |
sat | soxX | HTH_0447 | HTH_1519 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur oxidation protein; Cytochrome c. | 0.900 |
sat | soxY | HTH_0447 | HTH_1515 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur oxidation protein. | 0.904 |
sat | soxZ | HTH_0447 | HTH_1516 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur oxidation protein. | 0.903 |
sat | sreA | HTH_0447 | HTH_1746 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur reductase subunit A; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. | 0.904 |
sat | sreB | HTH_0447 | HTH_1741 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur reductase subunit B. | 0.909 |
sat | sreC | HTH_0447 | HTH_1740 | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | Sulfur reductase subunit C. | 0.900 |
soxA1 | sat | HTH_1517 | HTH_0447 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | 0.920 |
soxA1 | soxA2 | HTH_1517 | HTH_1518 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | 0.969 |
soxA1 | soxB | HTH_1517 | HTH_1520 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur oxidation protein; Belongs to the 5'-nucleotidase family. | 0.992 |
soxA1 | soxH | HTH_1517 | HTH_1522 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Beta-lactamase-like protein; Zn-dependent hydrolase. | 0.793 |
soxA1 | soxX | HTH_1517 | HTH_1519 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur oxidation protein; Cytochrome c. | 0.992 |
soxA1 | soxY | HTH_1517 | HTH_1515 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur oxidation protein. | 0.992 |
soxA1 | soxZ | HTH_1517 | HTH_1516 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur oxidation protein. | 0.994 |
soxA1 | sreA | HTH_1517 | HTH_1746 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur reductase subunit A; Belongs to the prokaryotic molybdopterin-containing oxidoreductase family. | 0.900 |
soxA1 | sreB | HTH_1517 | HTH_1741 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur reductase subunit B. | 0.900 |
soxA1 | sreC | HTH_1517 | HTH_1740 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfur reductase subunit C. | 0.912 |
soxA2 | sat | HTH_1518 | HTH_0447 | Diheme cytochrome c; C-type diheme cytochrome, which is part of the SoxAX cytochrome complex involved in sulfur oxidation. The SoxAX complex catalyzes the formation of a heterodisulfide bond between the conserved cysteine residue on a sulfur carrier SoxYZ complex subunit SoxY and thiosulfate or other inorganic sulfur substrates. This leads to the liberation of two electrons, which may be transferred from the SoxAX complex to another cytochrome c that then channels them into the respiratory electron transport chain. Some electrons may be used for reductive CO(2) fixation. | Sulfate adenylyltransferase; Belongs to the sulfate adenylyltransferase family. | 0.920 |