| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| STM0282 | STM0285 | STM0282 | STM0285 | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | Putative inner membrane protein. | 0.972 |
| STM0282 | STM3131 | STM0282 | STM3131 | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | Putative cytoplasmic protein. | 0.874 |
| STM0282 | STM4509 | STM0282 | STM4509 | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | Putative cytoplasmic protein. | 0.753 |
| STM0282 | iraD | STM0282 | STM3130 | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | 0.485 |
| STM0285 | STM0282 | STM0285 | STM0282 | Putative inner membrane protein. | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | 0.972 |
| STM0285 | STM3131 | STM0285 | STM3131 | Putative inner membrane protein. | Putative cytoplasmic protein. | 0.980 |
| STM0285 | STM4509 | STM0285 | STM4509 | Putative inner membrane protein. | Putative cytoplasmic protein. | 0.977 |
| STM0285 | iraD | STM0285 | STM3130 | Putative inner membrane protein. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | 0.468 |
| STM3131 | STM0282 | STM3131 | STM0282 | Putative cytoplasmic protein. | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | 0.874 |
| STM3131 | STM0285 | STM3131 | STM0285 | Putative cytoplasmic protein. | Putative inner membrane protein. | 0.980 |
| STM3131 | iraD | STM3131 | STM3130 | Putative cytoplasmic protein. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | 0.971 |
| STM4509 | STM0282 | STM4509 | STM0282 | Putative cytoplasmic protein. | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | 0.753 |
| STM4509 | STM0285 | STM4509 | STM0285 | Putative cytoplasmic protein. | Putative inner membrane protein. | 0.977 |
| STM4509 | iraD | STM4509 | STM3130 | Putative cytoplasmic protein. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | 0.866 |
| hnr | iraD | STM1753 | STM3130 | Response regulator in protein turnover; Regulates the turnover of the sigma S factor (RpoS) by promoting its proteolysis in exponentially growing cells. Acts by binding and delivering RpoS to the ClpXP protease. RssB is not co- degraded with RpoS, but is released from the complex and can initiate a new cycle of RpoS recognition and degradation. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | 0.990 |
| hnr | iraM | STM1753 | STM1110 | Response regulator in protein turnover; Regulates the turnover of the sigma S factor (RpoS) by promoting its proteolysis in exponentially growing cells. Acts by binding and delivering RpoS to the ClpXP protease. RssB is not co- degraded with RpoS, but is released from the complex and can initiate a new cycle of RpoS recognition and degradation. | Putative cytoplasmic protein; Involved in the stabilization of the sigma stress factor RpoS; Belongs to the IraM/RssC family. | 0.982 |
| hnr | rpoS | STM1753 | STM2924 | Response regulator in protein turnover; Regulates the turnover of the sigma S factor (RpoS) by promoting its proteolysis in exponentially growing cells. Acts by binding and delivering RpoS to the ClpXP protease. RssB is not co- degraded with RpoS, but is released from the complex and can initiate a new cycle of RpoS recognition and degradation. | Sigma S (sigma 38) factor of RNA polymerase; Sigma factors are initiation factors that promote the attachment of RNA polymerase to specific initiation sites and are then released. This sigma factor is the master transcriptional regulator of the stationary phase and the general stress response. | 0.922 |
| hnr | yaiB | STM1753 | STM0383 | Response regulator in protein turnover; Regulates the turnover of the sigma S factor (RpoS) by promoting its proteolysis in exponentially growing cells. Acts by binding and delivering RpoS to the ClpXP protease. RssB is not co- degraded with RpoS, but is released from the complex and can initiate a new cycle of RpoS recognition and degradation. | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS especially during phosphate and magnesium starvation, but also in stationary phase and during nitrogen starvation. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. Belongs to the IraP family. | 0.992 |
| iraD | STM0282 | STM3130 | STM0282 | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | Similar to E. coli putative outer membrane protein (AAC76576.1); Blastp hit to AAC76576.1 (219 aa), 44% identity in aa 145 - 214. | 0.485 |
| iraD | STM0285 | STM3130 | STM0285 | Putative cytoplasmic protein; Inhibits RpoS proteolysis by regulating RssB activity, thereby increasing the stability of the sigma stress factor RpoS during oxidative stress. Its effect on RpoS stability is due to its interaction with RssB, which probably blocks the interaction of RssB with RpoS, and the consequent delivery of the RssB-RpoS complex to the ClpXP protein degradation pathway. | Putative inner membrane protein. | 0.468 |