| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| AJR24010.1 | AJR24108.1 | TZ53_10055 | TZ53_10590 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.922 |
| AJR24010.1 | groEL | TZ53_10055 | TZ53_01800 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GroEL; Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions. | 0.965 |
| AJR24010.1 | groEL-2 | TZ53_10055 | TZ53_16000 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GroEL; Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions. | 0.965 |
| AJR24010.1 | grpE | TZ53_10055 | TZ53_22145 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GrpE; Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins, in association with DnaK and GrpE. It is the nucleotide exchange factor for DnaK and may function as a thermosensor. Unfolded proteins bind initially to DnaJ; upon interaction with the DnaJ-bound protein, DnaK hydrolyzes its bound ATP, resulting in the formation of a stable complex. GrpE releases ADP from DnaK; ATP binding to DnaK triggers the release of the substrate protein, thus completing the reaction cycle. Several rounds of ATP [...] | 0.992 |
| AJR24010.1 | htpG | TZ53_10055 | TZ53_00145 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Heat shock protein 90; Molecular chaperone. Has ATPase activity. | 0.977 |
| AJR24010.1 | ndk | TZ53_10055 | TZ53_14375 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | Phosphodiesterase; Major role in the synthesis of nucleoside triphosphates other than ATP. The ATP gamma phosphate is transferred to the NDP beta phosphate via a ping-pong mechanism, using a phosphorylated active-site intermediate; Belongs to the NDK family. | 0.533 |
| AJR24010.1 | rpsE | TZ53_10055 | TZ53_11385 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | 30S ribosomal protein S5; Located at the back of the 30S subunit body where it stabilizes the conformation of the head with respect to the body. Belongs to the universal ribosomal protein uS5 family. | 0.756 |
| AJR24010.1 | rpsG | TZ53_10055 | TZ53_11280 | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | 30S ribosomal protein S7; One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the head domain of the 30S subunit. Is located at the subunit interface close to the decoding center, probably blocks exit of the E-site tRNA; Belongs to the universal ribosomal protein uS7 family. | 0.711 |
| AJR24108.1 | AJR24010.1 | TZ53_10590 | TZ53_10055 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone Hsp70; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.922 |
| AJR24108.1 | AJR24109.1 | TZ53_10590 | TZ53_10595 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Ribonuclease BN; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.837 |
| AJR24108.1 | dnaK | TZ53_10590 | TZ53_13575 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone DnaK; Acts as a chaperone; Belongs to the heat shock protein 70 family. | 0.994 |
| AJR24108.1 | groEL | TZ53_10590 | TZ53_01800 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GroEL; Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions. | 0.897 |
| AJR24108.1 | groEL-2 | TZ53_10590 | TZ53_16000 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GroEL; Prevents misfolding and promotes the refolding and proper assembly of unfolded polypeptides generated under stress conditions. | 0.898 |
| AJR24108.1 | grpE | TZ53_10590 | TZ53_22145 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone GrpE; Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins, in association with DnaK and GrpE. It is the nucleotide exchange factor for DnaK and may function as a thermosensor. Unfolded proteins bind initially to DnaJ; upon interaction with the DnaJ-bound protein, DnaK hydrolyzes its bound ATP, resulting in the formation of a stable complex. GrpE releases ADP from DnaK; ATP binding to DnaK triggers the release of the substrate protein, thus completing the reaction cycle. Several rounds of ATP [...] | 0.935 |
| AJR24108.1 | htpG | TZ53_10590 | TZ53_00145 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Heat shock protein 90; Molecular chaperone. Has ATPase activity. | 0.955 |
| AJR24108.1 | ndk | TZ53_10590 | TZ53_14375 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | Phosphodiesterase; Major role in the synthesis of nucleoside triphosphates other than ATP. The ATP gamma phosphate is transferred to the NDP beta phosphate via a ping-pong mechanism, using a phosphorylated active-site intermediate; Belongs to the NDK family. | 0.872 |
| AJR24108.1 | rpsE | TZ53_10590 | TZ53_11385 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | 30S ribosomal protein S5; Located at the back of the 30S subunit body where it stabilizes the conformation of the head with respect to the body. Belongs to the universal ribosomal protein uS5 family. | 0.862 |
| AJR24108.1 | rpsG | TZ53_10590 | TZ53_11280 | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | 30S ribosomal protein S7; One of the primary rRNA binding proteins, it binds directly to 16S rRNA where it nucleates assembly of the head domain of the 30S subunit. Is located at the subunit interface close to the decoding center, probably blocks exit of the E-site tRNA; Belongs to the universal ribosomal protein uS7 family. | 0.861 |
| AJR24109.1 | AJR24108.1 | TZ53_10595 | TZ53_10590 | Ribonuclease BN; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.837 |
| dnaK | AJR24108.1 | TZ53_13575 | TZ53_10590 | Molecular chaperone DnaK; Acts as a chaperone; Belongs to the heat shock protein 70 family. | Molecular chaperone DnaJ; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.994 |