| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| CAZ94193.1 | CAZ94226.1 | ZOBELLIA_120 | ZOBELLIA_153 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four and two transmembrane segments in the N- and C- terminal domain respectively; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | 0.814 |
| CAZ94193.1 | CAZ97384.1 | ZOBELLIA_120 | ZOBELLIA_3246 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four and two transmembrane segments in the N- and C- terminal domain respectively; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.820 |
| CAZ94226.1 | CAZ94193.1 | ZOBELLIA_153 | ZOBELLIA_120 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four and two transmembrane segments in the N- and C- terminal domain respectively; Localized in the cytoplasmic membrane; Family membership. | 0.814 |
| CAZ94226.1 | CAZ94630.1 | ZOBELLIA_153 | ZOBELLIA_559 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains seven tetratrico peptide repeats (TPR) and one transmembrane segment; Localized in the cytoplasmic membrane; Family membership. | 0.820 |
| CAZ94226.1 | CAZ95946.1 | ZOBELLIA_153 | ZOBELLIA_1893 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains seven N-terminal tetratrico peptide repeats (TPR)and two transmembrane segments and; Localized in the cytoplasmic membrane; Family membership. | 0.757 |
| CAZ94226.1 | CAZ96556.1 | ZOBELLIA_153 | ZOBELLIA_2403 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains one transmembrane segmemt and five tetratrico peptide repeats (TPR); Localized in the cytoplasmic membrane; Family membership. | 0.797 |
| CAZ94226.1 | CAZ96697.1 | ZOBELLIA_153 | ZOBELLIA_2547 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | 0.816 |
| CAZ94226.1 | CAZ96706.1 | ZOBELLIA_153 | ZOBELLIA_2556 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | 0.815 |
| CAZ94226.1 | CAZ97383.1 | ZOBELLIA_153 | ZOBELLIA_3245 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | 0.815 |
| CAZ94226.1 | CAZ97384.1 | ZOBELLIA_153 | ZOBELLIA_3246 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.775 |
| CAZ94226.1 | CAZ97435.1 | ZOBELLIA_153 | ZOBELLIA_3297 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Lipoprotein signal peptide cleaved between the residues 23 and 24; Contains four N-terminal tetratrico peptide repeats (TPR) and one transmembrane segment; Localized in the cytoplasmic membrane; Family membership. | 0.788 |
| CAZ94226.1 | CAZ98413.1 | ZOBELLIA_153 | ZOBELLIA_4278 | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | 0.813 |
| CAZ94630.1 | CAZ94226.1 | ZOBELLIA_559 | ZOBELLIA_153 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains seven tetratrico peptide repeats (TPR) and one transmembrane segment; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | 0.820 |
| CAZ94630.1 | CAZ97384.1 | ZOBELLIA_559 | ZOBELLIA_3246 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains seven tetratrico peptide repeats (TPR) and one transmembrane segment; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.820 |
| CAZ95946.1 | CAZ94226.1 | ZOBELLIA_1893 | ZOBELLIA_153 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains seven N-terminal tetratrico peptide repeats (TPR)and two transmembrane segments and; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | 0.757 |
| CAZ95946.1 | CAZ97384.1 | ZOBELLIA_1893 | ZOBELLIA_3246 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains seven N-terminal tetratrico peptide repeats (TPR)and two transmembrane segments and; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.707 |
| CAZ96556.1 | CAZ94226.1 | ZOBELLIA_2403 | ZOBELLIA_153 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains one transmembrane segmemt and five tetratrico peptide repeats (TPR); Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | 0.797 |
| CAZ96556.1 | CAZ97384.1 | ZOBELLIA_2403 | ZOBELLIA_3246 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Signal peptide cleaved between the residues 22 and 23; Contains one transmembrane segmemt and five tetratrico peptide repeats (TPR); Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.774 |
| CAZ96697.1 | CAZ94226.1 | ZOBELLIA_2547 | ZOBELLIA_153 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity (here a LytTR-type HTH domain), which acts as transcriptional regulator; Family membership. | 0.816 |
| CAZ96697.1 | CAZ97384.1 | ZOBELLIA_2547 | ZOBELLIA_3246 | The sensor histidine kinase belongs to two-component signal transduction systems. It catalyzes the ATP dependent autophosphorylation of a conserved histidine in its phosphoacceptor domain and the signal dependent phosphorylation of a conserved aspartic acid present in the response regulator receiver domain; Contains four N-terminal transmembrane segments; Localized in the cytoplasmic membrane; Family membership. | The response regulator proteins are involved in the two-component signal transduction systems to detect and respond to environmental changes. The protein consists of two domains, an N-terminal response regulator receiver domain that is substrate for a histidine protein kinase sensor, and a variable C-terminal effector domain with DNA-binding activity, a LytTR-type HTH domain, that acts as transcriptional regulator; Family membership. | 0.815 |