| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| aau3 | azo2804 | azo3101 | azo2804 | AAU3 protein precursor,; High confidence in function and specificity. | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | 0.456 |
| aau3 | ccoN | azo3101 | azo1341 | AAU3 protein precursor,; High confidence in function and specificity. | Probable cytochrome c oxidase, cbb3-type, subunit I. Homology to ccoN of R. capsulatus of 62% (sprot|COX1_RHOCA). 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 OR A QUINOL ARE TRANSFERRED TO THE BIMETALLIC CENTER FORMED BY A HIGH-SPIN HEME AND COPPER B. Tigrfam: ccoN: cytochrome c oxidase cbb3-type Pfam: cytochrome c and quinol oxidase polyppeptide no signal peptide 12 TMHs; Hig [...] | 0.522 |
| aau3 | fliG | azo3101 | azo2717 | AAU3 protein precursor,; High confidence in function and specificity. | Flagellar motor switch protein fliG. FLIG IS ONE OF THREE PROTEINS (FLIG FLIN FLIM) THAT FORM A SWITCH COMPLEX THAT IS PROPOSED TO BE LOCATED AT THE BASE OF THE BASAL BODY. THIS COMPLEX INTERACTS WITH THE CHEY AND CHEZ CHEMOTAXIS PROTEINS IN ADDITION TO CONTACTING COMPONENTS OF THE MOTOR THAT DETERMINE THE DIRECTION OF FLAGELLAR ROTATION (BY SIMILARITY). fliG: flagellar motor switch protein Pfam: fliG C-terminal domain no signal peptide no TMHs; High confidence in function and specificity. | 0.612 |
| aau3 | hscB | azo3101 | azo2013 | AAU3 protein precursor,; High confidence in function and specificity. | Putative co-chaperone HscB; Co-chaperone involved in the maturation of iron-sulfur cluster-containing proteins. Seems to help targeting proteins to be folded toward HscA; Belongs to the HscB family. | 0.472 |
| aau3 | iscS1 | azo3101 | azo2016 | AAU3 protein precursor,; High confidence in function and specificity. | Cysteine desulfurase; Master enzyme that delivers sulfur to a number of partners involved in Fe-S cluster assembly, tRNA modification or cofactor biosynthesis. Catalyzes the removal of elemental sulfur atoms from cysteine to produce alanine. Functions as a sulfur delivery protein for Fe-S cluster synthesis onto IscU, an Fe-S scaffold assembly protein, as well as other S acceptor proteins. | 0.740 |
| aau3 | iscS2 | azo3101 | azo2017 | AAU3 protein precursor,; High confidence in function and specificity. | Probable cysteine desulfurase (NifS protein homolog). Homology to iscS of M. thermophila of 40% (sprot|ISCS_METTE) Catalyzes the removal of elemental sulfur from cysteine to produce alanine (By similarity). InterPro: Aminotransferase class-V (IPR000192) Pfam: aminotransferase class-V no signal peptide no TMHs ahpD: alkylhydroperoxidase AhpD; Family membership. | 0.740 |
| aau3 | nifS | azo3101 | azo0552 | AAU3 protein precursor,; High confidence in function and specificity. | Cysteine desulphurase; Catalyzes the removal of elemental sulfur atoms from cysteine to produce alanine. | 0.740 |
| aau3 | nifU | azo3101 | azo0553 | AAU3 protein precursor,; High confidence in function and specificity. | Probable nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | 0.826 |
| aau3 | rdxB | azo3101 | azo3100 | AAU3 protein precursor,; High confidence in function and specificity. | Putative iron-sulfur 4Fe-4S ferredoxin transmembrane protein. Homology to rdxB of R. sphaeroides of 39% (sprot|RDXB_RHOSH). Involved in a membrane generated redox signal; required to maintain repression of photosynthesis gene expression in the presence of oxygen. InterPro: 4Fe-4S ferredoxin iron-sulfur binding domain (IPR001450) Pfam: 4Fe-4S binding doamin no signal peptide probable 5 TMHs; Family membership. | 0.669 |
| aau3 | serA | azo3101 | azo3099 | AAU3 protein precursor,; High confidence in function and specificity. | D-3-phosphoglycerate dehydrogenase, SerA, is involved in the pathway of serine biosynthesis. Similar to sprot|SERA_ECOLI (61%). InterPro (PF00389): D-isomer specific 2-hydroxyacid dehydrogenase, catalytic domain InterPro (PF01842): ACT domain InterPro (PF02826): D-isomer specific 2-hydroxyacid dehydrogenase, NAD binding domain; High confidence in function and specificity. | 0.459 |
| azo2804 | aau3 | azo2804 | azo3101 | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | AAU3 protein precursor,; High confidence in function and specificity. | 0.456 |
| azo2804 | iscS1 | azo2804 | azo2016 | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | Cysteine desulfurase; Master enzyme that delivers sulfur to a number of partners involved in Fe-S cluster assembly, tRNA modification or cofactor biosynthesis. Catalyzes the removal of elemental sulfur atoms from cysteine to produce alanine. Functions as a sulfur delivery protein for Fe-S cluster synthesis onto IscU, an Fe-S scaffold assembly protein, as well as other S acceptor proteins. | 0.940 |
| azo2804 | iscS2 | azo2804 | azo2017 | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | Probable cysteine desulfurase (NifS protein homolog). Homology to iscS of M. thermophila of 40% (sprot|ISCS_METTE) Catalyzes the removal of elemental sulfur from cysteine to produce alanine (By similarity). InterPro: Aminotransferase class-V (IPR000192) Pfam: aminotransferase class-V no signal peptide no TMHs ahpD: alkylhydroperoxidase AhpD; Family membership. | 0.943 |
| azo2804 | nifS | azo2804 | azo0552 | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | Cysteine desulphurase; Catalyzes the removal of elemental sulfur atoms from cysteine to produce alanine. | 0.710 |
| azo2804 | nifU | azo2804 | azo0553 | Adenylyltransferase, putative; Dinucleotide-utilizing enzyme involved in molybdopterin and/or thiamine biosynthesis Belongs to the hesA/moeB/thiF family, by similarity. TIGR00292: thiazole biosynthesis enzyme; High confidence in function and specificity. | Probable nitrogen fixation protein NifU; May be involved in the formation or repair of [Fe-S] clusters present in iron-sulfur proteins. | 0.467 |
| ccoN | aau3 | azo1341 | azo3101 | Probable cytochrome c oxidase, cbb3-type, subunit I. Homology to ccoN of R. capsulatus of 62% (sprot|COX1_RHOCA). 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 OR A QUINOL ARE TRANSFERRED TO THE BIMETALLIC CENTER FORMED BY A HIGH-SPIN HEME AND COPPER B. Tigrfam: ccoN: cytochrome c oxidase cbb3-type Pfam: cytochrome c and quinol oxidase polyppeptide no signal peptide 12 TMHs; Hig [...] | AAU3 protein precursor,; High confidence in function and specificity. | 0.522 |
| ccoN | rdxB | azo1341 | azo3100 | Probable cytochrome c oxidase, cbb3-type, subunit I. Homology to ccoN of R. capsulatus of 62% (sprot|COX1_RHOCA). 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 OR A QUINOL ARE TRANSFERRED TO THE BIMETALLIC CENTER FORMED BY A HIGH-SPIN HEME AND COPPER B. Tigrfam: ccoN: cytochrome c oxidase cbb3-type Pfam: cytochrome c and quinol oxidase polyppeptide no signal peptide 12 TMHs; Hig [...] | Putative iron-sulfur 4Fe-4S ferredoxin transmembrane protein. Homology to rdxB of R. sphaeroides of 39% (sprot|RDXB_RHOSH). Involved in a membrane generated redox signal; required to maintain repression of photosynthesis gene expression in the presence of oxygen. InterPro: 4Fe-4S ferredoxin iron-sulfur binding domain (IPR001450) Pfam: 4Fe-4S binding doamin no signal peptide probable 5 TMHs; Family membership. | 0.930 |
| fliG | aau3 | azo2717 | azo3101 | Flagellar motor switch protein fliG. FLIG IS ONE OF THREE PROTEINS (FLIG FLIN FLIM) THAT FORM A SWITCH COMPLEX THAT IS PROPOSED TO BE LOCATED AT THE BASE OF THE BASAL BODY. THIS COMPLEX INTERACTS WITH THE CHEY AND CHEZ CHEMOTAXIS PROTEINS IN ADDITION TO CONTACTING COMPONENTS OF THE MOTOR THAT DETERMINE THE DIRECTION OF FLAGELLAR ROTATION (BY SIMILARITY). fliG: flagellar motor switch protein Pfam: fliG C-terminal domain no signal peptide no TMHs; High confidence in function and specificity. | AAU3 protein precursor,; High confidence in function and specificity. | 0.612 |
| hscB | aau3 | azo2013 | azo3101 | Putative co-chaperone HscB; Co-chaperone involved in the maturation of iron-sulfur cluster-containing proteins. Seems to help targeting proteins to be folded toward HscA; Belongs to the HscB family. | AAU3 protein precursor,; High confidence in function and specificity. | 0.472 |
| hscB | iscS1 | azo2013 | azo2016 | Putative co-chaperone HscB; Co-chaperone involved in the maturation of iron-sulfur cluster-containing proteins. Seems to help targeting proteins to be folded toward HscA; Belongs to the HscB family. | Cysteine desulfurase; Master enzyme that delivers sulfur to a number of partners involved in Fe-S cluster assembly, tRNA modification or cofactor biosynthesis. Catalyzes the removal of elemental sulfur atoms from cysteine to produce alanine. Functions as a sulfur delivery protein for Fe-S cluster synthesis onto IscU, an Fe-S scaffold assembly protein, as well as other S acceptor proteins. | 0.967 |