| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| ahpC | zur | AB185_28040 | AB185_05290 | Alkyl hydroperoxide reductase; Thiol-specific peroxidase that catalyzes the reduction of hydrogen peroxide and organic hydroperoxides to water and alcohols, respectively. Plays a role in cell protection against oxidative stress by detoxifying peroxides; Belongs to the peroxiredoxin family. AhpC/Prx1 subfamily. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.592 |
| map | rpmG | AB185_21130 | AB185_07935 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed; Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.618 |
| map | rpoA | AB185_21130 | AB185_09510 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed; Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.753 |
| map | zur | AB185_21130 | AB185_05290 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed; Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.560 |
| map-2 | rpmG | AB185_31005 | AB185_07935 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed (By similarity). Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.618 |
| map-2 | rpoA | AB185_31005 | AB185_09510 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed (By similarity). Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.787 |
| map-2 | zur | AB185_31005 | AB185_05290 | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed (By similarity). Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.560 |
| nadR | zur | AB185_32115 | AB185_05290 | Transcriptional regulator; Catalyzes the formation of NAD(+) from nicotinamide ribonucleotide; catalyzes the formation of nicotinamide mononucleotide from nicotinamide riboside; also has a regulatory function; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.559 |
| rpmG | map | AB185_07935 | AB185_21130 | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed; Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 0.618 |
| rpmG | map-2 | AB185_07935 | AB185_31005 | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed (By similarity). Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 0.618 |
| rpmG | rpoA | AB185_07935 | AB185_09510 | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 0.885 |
| rpmG | zur | AB185_07935 | AB185_05290 | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.593 |
| rpoA | map | AB185_09510 | AB185_21130 | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed; Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 0.753 |
| rpoA | map-2 | AB185_09510 | AB185_31005 | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | Methionine aminopeptidase; Removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). Requires deformylation of the N(alpha)-formylated initiator methionine before it can be hydrolyzed (By similarity). Belongs to the peptidase M24A family. Methionine aminopeptidase type 1 subfamily. | 0.787 |
| rpoA | rpmG | AB185_09510 | AB185_07935 | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | 50S ribosomal protein L33; In Escherichia coli BM108, a mutation that results in lack of L33 synthesis had no effect on ribosome synthesis or function; there are paralogous genes in several bacterial genomes, and a CXXC motif for zinc binding and an upstream regulation region of the paralog lacking this motif that are regulated by zinc similar to other ribosomal proteins like L31; the proteins in this group lack the CXXC motif; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.885 |
| rpoA | zur | AB185_09510 | AB185_05290 | DNA-directed RNA polymerase subunit alpha; DNA-dependent RNA polymerase catalyzes the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.571 |
| tsaA | zur | AB185_29765 | AB185_05290 | Peroxiredoxin; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.592 |
| yccU | zur | AB185_25875 | AB185_05290 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.569 |
| znuA | znuC | AB185_17960 | AB185_17955 | Zinc ABC transporter substrate-binding protein; Involved in transport of zinc(II) with ZnuA and C; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc ABC transporter ATPase; Part of the ABC transporter complex ZnuABC involved in zinc import. Responsible for energy coupling to the transport system. Belongs to the ABC transporter superfamily. Zinc importer (TC 3.A.1.15.5) family. | 0.997 |
| znuA | zur | AB185_17960 | AB185_05290 | Zinc ABC transporter substrate-binding protein; Involved in transport of zinc(II) with ZnuA and C; Derived by automated computational analysis using gene prediction method: Protein Homology. | Zinc uptake transcriptional repressor; Acts as a negative controlling element, employing Zn(2+) as a cofactor to bind the operator of the repressed genes znuACB; Derived by automated computational analysis using gene prediction method: Protein Homology; Belongs to the Fur family. | 0.598 |