| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| ACS17349.1 | ACS17350.1 | Vapar_0695 | Vapar_0696 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | 0.999 |
| ACS17349.1 | ACS17351.1 | Vapar_0695 | Vapar_0697 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | TIGRFAM: cytochrome c oxidase, subunit II; PFAM: cytochrome c oxidase subunit II; cytochrome c class I; KEGG: bxe:Bxe_C0167 putative cytochrome c oxidase subunit II. | 0.999 |
| ACS17349.1 | ACS17851.1 | Vapar_0695 | Vapar_1200 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | Ubiquinol-cytochrome c reductase, iron-sulfur subunit; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. | 0.996 |
| ACS17349.1 | ACS17852.1 | Vapar_0695 | Vapar_1201 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | Cytochrome b/b6 domain protein; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. | 0.996 |
| ACS17349.1 | ACS17853.1 | Vapar_0695 | Vapar_1202 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | PFAM: cytochrome c1; KEGG: aav:Aave_3694 cytochrome c1. | 0.948 |
| ACS17349.1 | ACS18639.1 | Vapar_0695 | Vapar_1993 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | TIGRFAM: cytochrome c oxidase, subunit II; PFAM: cytochrome c oxidase subunit II; KEGG: eba:ebA4547 cytochrome c oxidase, subunit II. | 0.999 |
| ACS17349.1 | ACS20115.1 | Vapar_0695 | Vapar_3498 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | KEGG: pol:Bpro_3244 proton-translocating NADH-quinone oxidoreductase, chain M; TIGRFAM: proton-translocating NADH-quinone oxidoreductase, chain M; PFAM: NADH/Ubiquinone/plastoquinone (complex I). | 0.995 |
| ACS17349.1 | ACS21003.1 | Vapar_0695 | Vapar_4392 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | Cytochrome c oxidase, subunit II; Subunits I and II form the functional core of the enzyme complex. Electrons originating in cytochrome c are transferred via heme a and Cu(A) to the binuclear center formed by heme a3 and Cu(B). | 0.999 |
| ACS17349.1 | ACS21732.1 | Vapar_0695 | Vapar_5130 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | PFAM: cytochrome c oxidase subunit II; cytochrome c class I; KEGG: pol:Bpro_0726 cytochrome c oxidase, subunit II. | 0.999 |
| ACS17349.1 | nuoH | Vapar_0695 | Vapar_3503 | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | NADH dehydrogenase (quinone); 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. This subunit may bind ubiquinone. | 0.994 |
| ACS17350.1 | ACS17349.1 | Vapar_0696 | Vapar_0695 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | KEGG: bxe:Bxe_C0168 putative cytochrome c oxidase subunit I. | 0.999 |
| ACS17350.1 | ACS17351.1 | Vapar_0696 | Vapar_0697 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | TIGRFAM: cytochrome c oxidase, subunit II; PFAM: cytochrome c oxidase subunit II; cytochrome c class I; KEGG: bxe:Bxe_C0167 putative cytochrome c oxidase subunit II. | 0.999 |
| ACS17350.1 | ACS17851.1 | Vapar_0696 | Vapar_1200 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | Ubiquinol-cytochrome c reductase, iron-sulfur subunit; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. | 0.996 |
| ACS17350.1 | ACS17852.1 | Vapar_0696 | Vapar_1201 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | Cytochrome b/b6 domain protein; Component of the ubiquinol-cytochrome c reductase complex (complex III or cytochrome b-c1 complex), which is a respiratory chain that generates an electrochemical potential coupled to ATP synthesis. | 0.997 |
| ACS17350.1 | ACS17853.1 | Vapar_0696 | Vapar_1202 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | PFAM: cytochrome c1; KEGG: aav:Aave_3694 cytochrome c1. | 0.948 |
| ACS17350.1 | ACS18639.1 | Vapar_0696 | Vapar_1993 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | TIGRFAM: cytochrome c oxidase, subunit II; PFAM: cytochrome c oxidase subunit II; KEGG: eba:ebA4547 cytochrome c oxidase, subunit II. | 0.999 |
| ACS17350.1 | ACS20115.1 | Vapar_0696 | Vapar_3498 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | KEGG: pol:Bpro_3244 proton-translocating NADH-quinone oxidoreductase, chain M; TIGRFAM: proton-translocating NADH-quinone oxidoreductase, chain M; PFAM: NADH/Ubiquinone/plastoquinone (complex I). | 0.996 |
| ACS17350.1 | ACS21003.1 | Vapar_0696 | Vapar_4392 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | Cytochrome c oxidase, subunit II; Subunits I and II form the functional core of the enzyme complex. Electrons originating in cytochrome c are transferred via heme a and Cu(A) to the binuclear center formed by heme a3 and Cu(B). | 0.999 |
| ACS17350.1 | ACS21732.1 | Vapar_0696 | Vapar_5130 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | PFAM: cytochrome c oxidase subunit II; cytochrome c class I; KEGG: pol:Bpro_0726 cytochrome c oxidase, subunit II. | 0.999 |
| ACS17350.1 | nuoH | Vapar_0696 | Vapar_3503 | Cytochrome c oxidase, subunit I; Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. CO I is the catalytic subunit of the enzyme. Electrons originating in cytochrome c are transferred via the copper A center of subunit 2 and heme A of subunit 1 to the bimetallic center formed by heme A3 and copper B. | NADH dehydrogenase (quinone); 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. This subunit may bind ubiquinone. | 0.995 |