| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| STM3021 | nuoB | STM3021 | STM2327 | Putative inner membrane protein. | NADH dehydrogenase I chain 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. | 0.763 |
| STM3021 | yciC | STM3021 | STM1734 | Putative inner membrane protein. | Putative inner membrane protein; Similar to E. coli orf, hypothetical protein (AAC74337.1); Blastp hit to AAC74337.1 (247 aa), 87% identity in aa 1 - 247. | 0.761 |
| STM3021 | ygdI | STM3021 | STM2983 | Putative inner membrane protein. | Putative lipoprotein; Similar to E. coli orf, hypothetical protein (AAC75851.1); Blastp hit to AAC75851.1 (76 aa), 93% identity in aa 2 - 75. | 0.891 |
| STM3021 | yicS | STM3021 | STM3774 | Putative inner membrane protein. | Putative inner membrane protein. | 0.768 |
| STM3021 | yjcH | STM3021 | STM4274 | Putative inner membrane protein. | Putative inner membrane protein; Similar to E. coli orf, hypothetical protein (AAC77038.1); Blastp hit to AAC77038.1 (104 aa), 89% identity in aa 1 - 102. | 0.729 |
| STM3773 | STM3775 | STM3773 | STM3775 | Putative NtrC family transcriptional regulator; ATPase domain; similar to E. coli psp operon transcriptional activator (AAC74385.1); Blastp hit to AAC74385.1 (330 aa), 33% identity in aa 12 - 239. | Putative glycosyl hydrolase family; Similar to E. coli 6-phospho-beta-glucosidase; cryptic (AAC75758.1); Blastp hit to AAC75758.1 (474 aa), 34% identity in aa 4 - 472; Belongs to the glycosyl hydrolase 1 family. | 0.426 |
| STM3773 | celB | STM3773 | STM1313 | Putative NtrC family transcriptional regulator; ATPase domain; similar to E. coli psp operon transcriptional activator (AAC74385.1); Blastp hit to AAC74385.1 (330 aa), 33% identity in aa 12 - 239. | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | 0.554 |
| STM3773 | yicS | STM3773 | STM3774 | Putative NtrC family transcriptional regulator; ATPase domain; similar to E. coli psp operon transcriptional activator (AAC74385.1); Blastp hit to AAC74385.1 (330 aa), 33% identity in aa 12 - 239. | Putative inner membrane protein. | 0.503 |
| STM3775 | STM3773 | STM3775 | STM3773 | Putative glycosyl hydrolase family; Similar to E. coli 6-phospho-beta-glucosidase; cryptic (AAC75758.1); Blastp hit to AAC75758.1 (474 aa), 34% identity in aa 4 - 472; Belongs to the glycosyl hydrolase 1 family. | Putative NtrC family transcriptional regulator; ATPase domain; similar to E. coli psp operon transcriptional activator (AAC74385.1); Blastp hit to AAC74385.1 (330 aa), 33% identity in aa 12 - 239. | 0.426 |
| STM3775 | celB | STM3775 | STM1313 | Putative glycosyl hydrolase family; Similar to E. coli 6-phospho-beta-glucosidase; cryptic (AAC75758.1); Blastp hit to AAC75758.1 (474 aa), 34% identity in aa 4 - 472; Belongs to the glycosyl hydrolase 1 family. | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | 0.982 |
| STM3775 | yicS | STM3775 | STM3774 | Putative glycosyl hydrolase family; Similar to E. coli 6-phospho-beta-glucosidase; cryptic (AAC75758.1); Blastp hit to AAC75758.1 (474 aa), 34% identity in aa 4 - 472; Belongs to the glycosyl hydrolase 1 family. | Putative inner membrane protein. | 0.527 |
| cca | celB | STM3204 | STM1313 | tRNA nucleotidyl transferase; Catalyzes the addition and repair of the essential 3'- terminal CCA sequence in tRNAs without using a nucleic acid template. Adds these three nucleotides in the order of C, C, and A to the tRNA nucleotide-73, using CTP and ATP as substrates and producing inorganic pyrophosphate. Also shows phosphatase, 2'-nucleotidase and 2',3'-cyclic phosphodiesterase activities. These phosphohydrolase activities are probably involved in the repair of the tRNA 3'-CCA terminus degraded by intracellular RNases. | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | 0.659 |
| cca | yicS | STM3204 | STM3774 | tRNA nucleotidyl transferase; Catalyzes the addition and repair of the essential 3'- terminal CCA sequence in tRNAs without using a nucleic acid template. Adds these three nucleotides in the order of C, C, and A to the tRNA nucleotide-73, using CTP and ATP as substrates and producing inorganic pyrophosphate. Also shows phosphatase, 2'-nucleotidase and 2',3'-cyclic phosphodiesterase activities. These phosphohydrolase activities are probably involved in the repair of the tRNA 3'-CCA terminus degraded by intracellular RNases. | Putative inner membrane protein. | 0.697 |
| celB | STM3773 | STM1313 | STM3773 | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | Putative NtrC family transcriptional regulator; ATPase domain; similar to E. coli psp operon transcriptional activator (AAC74385.1); Blastp hit to AAC74385.1 (330 aa), 33% identity in aa 12 - 239. | 0.554 |
| celB | STM3775 | STM1313 | STM3775 | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | Putative glycosyl hydrolase family; Similar to E. coli 6-phospho-beta-glucosidase; cryptic (AAC75758.1); Blastp hit to AAC75758.1 (474 aa), 34% identity in aa 4 - 472; Belongs to the glycosyl hydrolase 1 family. | 0.982 |
| celB | cca | STM1313 | STM3204 | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | tRNA nucleotidyl transferase; Catalyzes the addition and repair of the essential 3'- terminal CCA sequence in tRNAs without using a nucleic acid template. Adds these three nucleotides in the order of C, C, and A to the tRNA nucleotide-73, using CTP and ATP as substrates and producing inorganic pyrophosphate. Also shows phosphatase, 2'-nucleotidase and 2',3'-cyclic phosphodiesterase activities. These phosphohydrolase activities are probably involved in the repair of the tRNA 3'-CCA terminus degraded by intracellular RNases. | 0.659 |
| celB | yicS | STM1313 | STM3774 | PTS family sugar specific enzyme II for cellobiose, arbutin, and salicin; The phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS), a major carbohydrate active -transport system, catalyzes the phosphorylation of incoming sugar substrates concomitant with their translocation across the cell membrane. | Putative inner membrane protein. | 0.579 |
| nuoB | STM3021 | STM2327 | STM3021 | NADH dehydrogenase I chain 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. | Putative inner membrane protein. | 0.763 |
| nuoB | yciC | STM2327 | STM1734 | NADH dehydrogenase I chain 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. | Putative inner membrane protein; Similar to E. coli orf, hypothetical protein (AAC74337.1); Blastp hit to AAC74337.1 (247 aa), 87% identity in aa 1 - 247. | 0.457 |
| nuoB | ygdI | STM2327 | STM2983 | NADH dehydrogenase I chain 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. | Putative lipoprotein; Similar to E. coli orf, hypothetical protein (AAC75851.1); Blastp hit to AAC75851.1 (76 aa), 93% identity in aa 2 - 75. | 0.698 |