| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| TM_0530 | ecfA1 | TM_0530 | TM_1663 | Oligopeptide ABC transporter, ATP-binding protein; Similar to SP:P42065 PID:677944 GB:AL009126 percent identity: 73.60; identified by sequence similarity; putative; Belongs to the ABC transporter superfamily. | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.484 |
| TM_0530 | ecfA2 | TM_0530 | TM_0222 | Oligopeptide ABC transporter, ATP-binding protein; Similar to SP:P42065 PID:677944 GB:AL009126 percent identity: 73.60; identified by sequence similarity; putative; Belongs to the ABC transporter superfamily. | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.485 |
| TM_0530 | ecfT | TM_0530 | TM_1868 | Oligopeptide ABC transporter, ATP-binding protein; Similar to SP:P42065 PID:677944 GB:AL009126 percent identity: 73.60; identified by sequence similarity; putative; Belongs to the ABC transporter superfamily. | Conserved hypothetical protein; Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.949 |
| TM_1869 | ecfT | TM_1869 | TM_1868 | ATP-dependent protease LA, putative; Similar to GB:L42023 SP:P43865 PID:1007316 PID:1221456 PID:1205562 percent identity: 54.71; identified by sequence similarity; putative. | Conserved hypothetical protein; Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.810 |
| TM_1869 | minD | TM_1869 | TM_1870 | ATP-dependent protease LA, putative; Similar to GB:L42023 SP:P43865 PID:1007316 PID:1221456 PID:1205562 percent identity: 54.71; identified by sequence similarity; putative. | Septum site-determining protein MinD; ATPase required for the correct placement of the division site. Cell division inhibitors MinC and MinD act in concert to form an inhibitor capable of blocking formation of the polar Z ring septums. Rapidly oscillates between the poles of the cell to destabilize FtsZ filaments that have formed before they mature into polar Z rings (By similarity). | 0.566 |
| bioY | ecfA1 | TM_0799 | TM_1663 | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.991 |
| bioY | ecfA2 | TM_0799 | TM_0222 | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.992 |
| bioY | ecfT | TM_0799 | TM_1868 | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | Conserved hypothetical protein; Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.996 |
| bioY | ribU | TM_0799 | TM_1455 | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | Conserved hypothetical protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Mediates riboflavin uptake, may also transport FMN and roseoflavin. Probably a riboflavin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). Expression of the complex plus RibU in E.coli allo [...] | 0.729 |
| ecfA1 | TM_0530 | TM_1663 | TM_0530 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Oligopeptide ABC transporter, ATP-binding protein; Similar to SP:P42065 PID:677944 GB:AL009126 percent identity: 73.60; identified by sequence similarity; putative; Belongs to the ABC transporter superfamily. | 0.484 |
| ecfA1 | bioY | TM_1663 | TM_0799 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | 0.991 |
| ecfA1 | ecfA2 | TM_1663 | TM_0222 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.999 |
| ecfA1 | ecfT | TM_1663 | TM_1868 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Conserved hypothetical protein; Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.999 |
| ecfA1 | ribU | TM_1663 | TM_1455 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Conserved hypothetical protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Mediates riboflavin uptake, may also transport FMN and roseoflavin. Probably a riboflavin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). Expression of the complex plus RibU in E.coli allo [...] | 0.485 |
| ecfA1 | truA | TM_1663 | TM_1574 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Pseudouridylate synthase I; Formation of pseudouridine at positions 38, 39 and 40 in the anticodon stem and loop of transfer RNAs. | 0.468 |
| ecfA2 | TM_0530 | TM_0222 | TM_0530 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Oligopeptide ABC transporter, ATP-binding protein; Similar to SP:P42065 PID:677944 GB:AL009126 percent identity: 73.60; identified by sequence similarity; putative; Belongs to the ABC transporter superfamily. | 0.485 |
| ecfA2 | bioY | TM_0222 | TM_0799 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | bioY protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Probably a biotin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). | 0.992 |
| ecfA2 | ecfA1 | TM_0222 | TM_1663 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.999 |
| ecfA2 | ecfT | TM_0222 | TM_1868 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Conserved hypothetical protein; Transmembrane (T) component of an energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | 0.999 |
| ecfA2 | ribU | TM_0222 | TM_1455 | ABC transporter, ATP-binding protein; ATP-binding (A) component of a common energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates (Probable). Expression of the complex plus RibU in E.coli allows riboflavin uptake; uptake does not occur in the absence of RibU or the EcfA1A2T complex. | Conserved hypothetical protein; Substrate-binding (S) component of an energy-coupling factor (ECF) ABC-transporter complex. Mediates riboflavin uptake, may also transport FMN and roseoflavin. Probably a riboflavin-binding protein that interacts with the energy-coupling factor (ECF) ABC-transporter complex. Unlike classic ABC transporters this ECF transporter provides the energy necessary to transport a number of different substrates. The substrates themselves are bound by transmembrane, not extracytoplasmic soluble proteins (Probable). Expression of the complex plus RibU in E.coli allo [...] | 0.516 |