| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| APG09723.1 | APG09724.1 | BKD09_RS15395 | BKD09_RS15400 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.994 |
| APG09723.1 | APG13439.1 | BKD09_RS15395 | BKD09_RS34315 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Hsp70 family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.936 |
| APG09723.1 | dnaJ | BKD09_RS15395 | BKD09_RS03300 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Molecular chaperone DnaJ; Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins and by disaggregating proteins, also in an autonomous, DnaK-independent fashion. 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-dependent interactions between DnaJ, [...] | 0.957 |
| APG09723.1 | dnaK | BKD09_RS15395 | BKD09_RS03295 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Molecular chaperone DnaK; Acts as a chaperone; Belongs to the heat shock protein 70 family. | 0.984 |
| APG09723.1 | groEL-3 | BKD09_RS15395 | BKD09_RS21585 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Chaperonin GroL; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.853 |
| APG09723.1 | hrcA | BKD09_RS15395 | BKD09_RS03275 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Heat-inducible transcriptional repressor HrcA; Negative regulator of class I heat shock genes (grpE-dnaK- dnaJ and groELS operons). Prevents heat-shock induction of these operons. | 0.876 |
| APG09723.1 | hslU | BKD09_RS15395 | BKD09_RS03140 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | HslU--HslV peptidase ATPase subunit; ATPase subunit of a proteasome-like degradation complex; this subunit has chaperone activity. The binding of ATP and its subsequent hydrolysis by HslU are essential for unfolding of protein substrates subsequently hydrolyzed by HslV. HslU recognizes the N-terminal part of its protein substrates and unfolds these before they are guided to HslV for hydrolysis. | 0.828 |
| APG09723.1 | htpG | BKD09_RS15395 | BKD09_RS07470 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Molecular chaperone HtpG; Molecular chaperone. Has ATPase activity. | 0.840 |
| APG09723.1 | lon_1 | BKD09_RS15395 | BKD09_RS24760 | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | Endopeptidase La; ATP-dependent serine protease that mediates the selective degradation of mutant and abnormal proteins as well as certain short- lived regulatory proteins. Required for cellular homeostasis and for survival from DNA damage and developmental changes induced by stress. Degrades polypeptides processively to yield small peptide fragments that are 5 to 10 amino acids long. Binds to DNA in a double-stranded, site-specific manner. | 0.787 |
| APG09724.1 | APG09723.1 | BKD09_RS15400 | BKD09_RS15395 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.994 |
| APG09724.1 | dnaJ | BKD09_RS15400 | BKD09_RS03300 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone DnaJ; Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins and by disaggregating proteins, also in an autonomous, DnaK-independent fashion. 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-dependent interactions between DnaJ, [...] | 0.990 |
| APG09724.1 | groEL-3 | BKD09_RS15400 | BKD09_RS21585 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Chaperonin GroL; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.814 |
| APG09724.1 | grpE | BKD09_RS15400 | BKD09_RS03280 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nucleotide exchange factor 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 [...] | 0.979 |
| APG09724.1 | hrcA | BKD09_RS15400 | BKD09_RS03275 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Heat-inducible transcriptional repressor HrcA; Negative regulator of class I heat shock genes (grpE-dnaK- dnaJ and groELS operons). Prevents heat-shock induction of these operons. | 0.834 |
| APG09724.1 | hslU | BKD09_RS15400 | BKD09_RS03140 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | HslU--HslV peptidase ATPase subunit; ATPase subunit of a proteasome-like degradation complex; this subunit has chaperone activity. The binding of ATP and its subsequent hydrolysis by HslU are essential for unfolding of protein substrates subsequently hydrolyzed by HslV. HslU recognizes the N-terminal part of its protein substrates and unfolds these before they are guided to HslV for hydrolysis. | 0.783 |
| APG09724.1 | htpG | BKD09_RS15400 | BKD09_RS07470 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone HtpG; Molecular chaperone. Has ATPase activity. | 0.973 |
| APG09724.1 | lon_1 | BKD09_RS15400 | BKD09_RS24760 | Molecular chaperone DnaK; Derived by automated computational analysis using gene prediction method: Protein Homology. | Endopeptidase La; ATP-dependent serine protease that mediates the selective degradation of mutant and abnormal proteins as well as certain short- lived regulatory proteins. Required for cellular homeostasis and for survival from DNA damage and developmental changes induced by stress. Degrades polypeptides processively to yield small peptide fragments that are 5 to 10 amino acids long. Binds to DNA in a double-stranded, site-specific manner. | 0.677 |
| APG13439.1 | APG09723.1 | BKD09_RS34315 | BKD09_RS15395 | Hsp70 family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Nucleotide exchange factor GrpE; Derived by automated computational analysis using gene prediction method: GeneMarkS+. | 0.936 |
| APG13439.1 | dnaJ | BKD09_RS34315 | BKD09_RS03300 | Hsp70 family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Molecular chaperone DnaJ; Participates actively in the response to hyperosmotic and heat shock by preventing the aggregation of stress-denatured proteins and by disaggregating proteins, also in an autonomous, DnaK-independent fashion. 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-dependent interactions between DnaJ, [...] | 0.928 |
| APG13439.1 | groEL-3 | BKD09_RS34315 | BKD09_RS21585 | Hsp70 family protein; Derived by automated computational analysis using gene prediction method: Protein Homology. | Chaperonin GroL; Derived by automated computational analysis using gene prediction method: Protein Homology. | 0.746 |