node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
ALV25982.1 | ALV26853.1 | APZ00_01895 | APZ00_06960 | Sodium:proton antiporter; Binds and transfers iron-sulfur (Fe-S) clusters to target apoproteins. Can hydrolyze ATP; Belongs to the Mrp/NBP35 ATP-binding proteins family. | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.662 |
ALV25982.1 | pnp | APZ00_01895 | APZ00_05015 | Sodium:proton antiporter; Binds and transfers iron-sulfur (Fe-S) clusters to target apoproteins. Can hydrolyze ATP; Belongs to the Mrp/NBP35 ATP-binding proteins family. | Polyribonucleotide nucleotidyltransferase; Involved in mRNA degradation. Catalyzes the phosphorolysis of single-stranded polyribonucleotides processively in the 3'- to 5'- direction. | 0.428 |
ALV25982.1 | prfA | APZ00_01895 | APZ00_08370 | Sodium:proton antiporter; Binds and transfers iron-sulfur (Fe-S) clusters to target apoproteins. Can hydrolyze ATP; Belongs to the Mrp/NBP35 ATP-binding proteins family. | Peptide chain release factor 1; Peptide chain release factor 1 directs the termination of translation in response to the peptide chain termination codons UAG and UAA. | 0.481 |
ALV26533.1 | ALV26853.1 | APZ00_05115 | APZ00_06960 | Iron transporter; Derived by automated computational analysis using gene prediction method: Protein Homology. | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.552 |
ALV26779.1 | ALV26853.1 | APZ00_06520 | APZ00_06960 | Septum formation inhibitor Maf; Nucleoside triphosphate pyrophosphatase. May have a dual role in cell division arrest and in preventing the incorporation of modified nucleotides into cellular nucleic acids. | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.516 |
ALV26853.1 | ALV25982.1 | APZ00_06960 | APZ00_01895 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Sodium:proton antiporter; Binds and transfers iron-sulfur (Fe-S) clusters to target apoproteins. Can hydrolyze ATP; Belongs to the Mrp/NBP35 ATP-binding proteins family. | 0.662 |
ALV26853.1 | ALV26533.1 | APZ00_06960 | APZ00_05115 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Iron transporter; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.552 |
ALV26853.1 | ALV26779.1 | APZ00_06960 | APZ00_06520 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Septum formation inhibitor Maf; Nucleoside triphosphate pyrophosphatase. May have a dual role in cell division arrest and in preventing the incorporation of modified nucleotides into cellular nucleic acids. | 0.516 |
ALV26853.1 | ALV29918.1 | APZ00_06960 | APZ00_06970 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.493 |
ALV26853.1 | dapF | APZ00_06960 | APZ00_06965 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Diaminopimelate epimerase; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | 0.911 |
ALV26853.1 | ftsY | APZ00_06960 | APZ00_06955 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Signal recognition particle-docking protein FtsY; Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Acts as a receptor for the complex formed by the signal recognition particle (SRP) and the ribosome-nascent chain (RNC). Interaction with SRP-RNC leads to the transfer of the RNC complex to the Sec translocase for insertion into the membrane, the hydrolysis of GTP by both Ffh and FtsY, and the dissociation of the SRP-FtsY complex into the individual components. | 0.885 |
ALV26853.1 | pnp | APZ00_06960 | APZ00_05015 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Polyribonucleotide nucleotidyltransferase; Involved in mRNA degradation. Catalyzes the phosphorolysis of single-stranded polyribonucleotides processively in the 3'- to 5'- direction. | 0.519 |
ALV26853.1 | prfA | APZ00_06960 | APZ00_08370 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Peptide chain release factor 1; Peptide chain release factor 1 directs the termination of translation in response to the peptide chain termination codons UAG and UAA. | 0.521 |
ALV26853.1 | rlmN | APZ00_06960 | APZ00_07870 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 23S rRNA (adenine(2503)-C2)-methyltransferase; Specifically methylates position 2 of adenine 2503 in 23S rRNA and position 2 of adenine 37 in tRNAs. m2A2503 modification seems to play a crucial role in the proofreading step occurring at the peptidyl transferase center and thus would serve to optimize ribosomal fidelity; Belongs to the radical SAM superfamily. RlmN family. | 0.736 |
ALV26853.1 | rph | APZ00_06960 | APZ00_04635 | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | Ribonuclease PH; Phosphorolytic 3'-5' exoribonuclease that plays an important role in tRNA 3'-end maturation. Removes nucleotide residues following the 3'-CCA terminus of tRNAs; can also add nucleotides to the ends of RNA molecules by using nucleoside diphosphates as substrates, but this may not be physiologically important. Probably plays a role in initiation of 16S rRNA degradation (leading to ribosome degradation) during starvation. | 0.635 |
ALV29918.1 | ALV26853.1 | APZ00_06970 | APZ00_06960 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.493 |
ALV29918.1 | dapF | APZ00_06970 | APZ00_06965 | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Diaminopimelate epimerase; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | 0.493 |
dapF | ALV26853.1 | APZ00_06965 | APZ00_06960 | Diaminopimelate epimerase; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | 2-methylthioadenine synthase; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.911 |
dapF | ALV29918.1 | APZ00_06965 | APZ00_06970 | Diaminopimelate epimerase; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | Hypothetical protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.493 |
dapF | ftsY | APZ00_06965 | APZ00_06955 | Diaminopimelate epimerase; Catalyzes the stereoinversion of LL-2,6-diaminoheptanedioate (L,L-DAP) to meso-diaminoheptanedioate (meso-DAP), a precursor of L- lysine and an essential component of the bacterial peptidoglycan. | Signal recognition particle-docking protein FtsY; Involved in targeting and insertion of nascent membrane proteins into the cytoplasmic membrane. Acts as a receptor for the complex formed by the signal recognition particle (SRP) and the ribosome-nascent chain (RNC). Interaction with SRP-RNC leads to the transfer of the RNC complex to the Sec translocase for insertion into the membrane, the hydrolysis of GTP by both Ffh and FtsY, and the dissociation of the SRP-FtsY complex into the individual components. | 0.675 |