node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
HHT21 | HHT3 | Q59VN2 | Q5ADQ0 | Histone H3.1/H3.2; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | Histone H3.3; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | 0.508 |
HHT21 | RAD52 | Q59VN2 | Q59NG2 | Histone H3.1/H3.2; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | Recombinase. | 0.560 |
HHT3 | HHT21 | Q5ADQ0 | Q59VN2 | Histone H3.3; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | Histone H3.1/H3.2; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | 0.508 |
HHT3 | RAD52 | Q5ADQ0 | Q59NG2 | Histone H3.3; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | Recombinase. | 0.552 |
LIG4 | PIF1 | P52496 | Q59RQ0 | DNA ligase 4; Involved in ds DNA break (DSB) repair. Has a role in non- homologous integration (NHI) pathways where it is required in the final step of non-homologous end-joining (NHEJ). Not required for the repair of DSBs induced by ionizing radiation or UV light. Has an important role in morphogenesis, positively affecting the capacity to form hyphae. | ATP-dependent DNA helicase PIF1; DNA-dependent ATPase and 5'-3' DNA helicase required for the maintenance of both mitochondrial and nuclear genome stability. Efficiently unwinds G-quadruplex (G4) DNA structures and forked RNA-DNA hybrids. Resolves G4 structures, preventing replication pausing and double-strand breaks (DSBs) at G4 motifs. Involved in the maintenance of telomeric DNA. Inhibits telomere elongation, de novo telomere formation and telomere addition to DSBs via catalytic inhibition of telomerase. Reduces the processivity of telomerase by displacing active telomerase from DNA [...] | 0.510 |
LIG4 | RAD52 | P52496 | Q59NG2 | DNA ligase 4; Involved in ds DNA break (DSB) repair. Has a role in non- homologous integration (NHI) pathways where it is required in the final step of non-homologous end-joining (NHEJ). Not required for the repair of DSBs induced by ionizing radiation or UV light. Has an important role in morphogenesis, positively affecting the capacity to form hyphae. | Recombinase. | 0.960 |
PIF1 | LIG4 | Q59RQ0 | P52496 | ATP-dependent DNA helicase PIF1; DNA-dependent ATPase and 5'-3' DNA helicase required for the maintenance of both mitochondrial and nuclear genome stability. Efficiently unwinds G-quadruplex (G4) DNA structures and forked RNA-DNA hybrids. Resolves G4 structures, preventing replication pausing and double-strand breaks (DSBs) at G4 motifs. Involved in the maintenance of telomeric DNA. Inhibits telomere elongation, de novo telomere formation and telomere addition to DSBs via catalytic inhibition of telomerase. Reduces the processivity of telomerase by displacing active telomerase from DNA [...] | DNA ligase 4; Involved in ds DNA break (DSB) repair. Has a role in non- homologous integration (NHI) pathways where it is required in the final step of non-homologous end-joining (NHEJ). Not required for the repair of DSBs induced by ionizing radiation or UV light. Has an important role in morphogenesis, positively affecting the capacity to form hyphae. | 0.510 |
PIF1 | RAD52 | Q59RQ0 | Q59NG2 | ATP-dependent DNA helicase PIF1; DNA-dependent ATPase and 5'-3' DNA helicase required for the maintenance of both mitochondrial and nuclear genome stability. Efficiently unwinds G-quadruplex (G4) DNA structures and forked RNA-DNA hybrids. Resolves G4 structures, preventing replication pausing and double-strand breaks (DSBs) at G4 motifs. Involved in the maintenance of telomeric DNA. Inhibits telomere elongation, de novo telomere formation and telomere addition to DSBs via catalytic inhibition of telomerase. Reduces the processivity of telomerase by displacing active telomerase from DNA [...] | Recombinase. | 0.820 |
RAD52 | HHT21 | Q59NG2 | Q59VN2 | Recombinase. | Histone H3.1/H3.2; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | 0.560 |
RAD52 | HHT3 | Q59NG2 | Q5ADQ0 | Recombinase. | Histone H3.3; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling (By similarity). | 0.552 |
RAD52 | LIG4 | Q59NG2 | P52496 | Recombinase. | DNA ligase 4; Involved in ds DNA break (DSB) repair. Has a role in non- homologous integration (NHI) pathways where it is required in the final step of non-homologous end-joining (NHEJ). Not required for the repair of DSBs induced by ionizing radiation or UV light. Has an important role in morphogenesis, positively affecting the capacity to form hyphae. | 0.960 |
RAD52 | PIF1 | Q59NG2 | Q59RQ0 | Recombinase. | ATP-dependent DNA helicase PIF1; DNA-dependent ATPase and 5'-3' DNA helicase required for the maintenance of both mitochondrial and nuclear genome stability. Efficiently unwinds G-quadruplex (G4) DNA structures and forked RNA-DNA hybrids. Resolves G4 structures, preventing replication pausing and double-strand breaks (DSBs) at G4 motifs. Involved in the maintenance of telomeric DNA. Inhibits telomere elongation, de novo telomere formation and telomere addition to DSBs via catalytic inhibition of telomerase. Reduces the processivity of telomerase by displacing active telomerase from DNA [...] | 0.820 |