| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| CYA_1993 | CYA_1997 | CYA_1993 | CYA_1997 | Conserved hypothetical protein. | Conserved hypothetical protein. | 0.438 |
| CYA_1993 | CYA_1998 | CYA_1993 | CYA_1998 | Conserved hypothetical protein. | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | 0.427 |
| CYA_1993 | CYA_1999 | CYA_1993 | CYA_1999 | Conserved hypothetical protein. | Hypothetical protein; Identified by Glimmer2; putative. | 0.427 |
| CYA_1993 | ndhC | CYA_1993 | CYA_1994 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, subunit 3; 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. | 0.533 |
| CYA_1993 | ndhJ | CYA_1993 | CYA_1996 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, J subunit; 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. | 0.533 |
| CYA_1993 | ndhK | CYA_1993 | CYA_1995 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, K subunit; 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; Belongs to the complex I 20 kDa subunit family. | 0.533 |
| CYA_1997 | CYA_1993 | CYA_1997 | CYA_1993 | Conserved hypothetical protein. | Conserved hypothetical protein. | 0.438 |
| CYA_1997 | CYA_1998 | CYA_1997 | CYA_1998 | Conserved hypothetical protein. | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | 0.752 |
| CYA_1997 | CYA_1999 | CYA_1997 | CYA_1999 | Conserved hypothetical protein. | Hypothetical protein; Identified by Glimmer2; putative. | 0.752 |
| CYA_1997 | ndhC | CYA_1997 | CYA_1994 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, subunit 3; 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. | 0.620 |
| CYA_1997 | ndhJ | CYA_1997 | CYA_1996 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, J subunit; 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. | 0.620 |
| CYA_1997 | ndhK | CYA_1997 | CYA_1995 | Conserved hypothetical protein. | NADH-ubiquinone/plastoquinone oxidoreductase, K subunit; 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; Belongs to the complex I 20 kDa subunit family. | 0.620 |
| CYA_1998 | CYA_1993 | CYA_1998 | CYA_1993 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | Conserved hypothetical protein. | 0.427 |
| CYA_1998 | CYA_1997 | CYA_1998 | CYA_1997 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | Conserved hypothetical protein. | 0.752 |
| CYA_1998 | CYA_1999 | CYA_1998 | CYA_1999 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | Hypothetical protein; Identified by Glimmer2; putative. | 0.773 |
| CYA_1998 | ndhC | CYA_1998 | CYA_1994 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | NADH-ubiquinone/plastoquinone oxidoreductase, subunit 3; 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. | 0.832 |
| CYA_1998 | ndhJ | CYA_1998 | CYA_1996 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | NADH-ubiquinone/plastoquinone oxidoreductase, J subunit; 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. | 0.913 |
| CYA_1998 | ndhK | CYA_1998 | CYA_1995 | Conserved hypothetical protein; Identified by similarity to PIR:AF2225; match to protein family HMM PF02636. | NADH-ubiquinone/plastoquinone oxidoreductase, K subunit; 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; Belongs to the complex I 20 kDa subunit family. | 0.908 |
| CYA_1999 | CYA_1993 | CYA_1999 | CYA_1993 | Hypothetical protein; Identified by Glimmer2; putative. | Conserved hypothetical protein. | 0.427 |
| CYA_1999 | CYA_1997 | CYA_1999 | CYA_1997 | Hypothetical protein; Identified by Glimmer2; putative. | Conserved hypothetical protein. | 0.752 |