Protein information
  Protein summary    Phosphorylation site    Dephosphorylation site    Mutation site
  Differential expressed protein    Hyperphosphorylation site    Direct interaction pair    Function Annotation

Protein Summary
UniProt/SwissProt ID:DCR1B_HUMAN
Description:DNA cross-link repair 1B [Source:HGNC Symbol;Acc:17641]
Location:chr1 p13.2
Node attribute:substrate

Phosphorylation site
PositionPhosphoPeptideCatalytic kinaseSource
Y528QQVEKyHKPC_PhosphoSitePlus
S444DEEFIsQKTREPhosphoSitePlus; HPRD; phosphoELM
Y528QQVEKyHKHPRD

Dephosphorylation site
DCR1B_HUMAN do not have dephosphorylation site.

Mutation site
DCR1B_HUMAN do not have mutation site.

Differential expressed protein
DCR1B_HUMAN is not differential expressed protein.

Hyperphosphorylation site
DCR1B_HUMAN do not have hyperphosphorylation site.

Direct Interaction Pair
SourceTargetRelationshipResource
NEK4_HUMANDCR1B_HUMANkinase -> substrateRobert H Newman (2013)

Function Annotation
KEGG Pathway
DCR1B_HUMAN is not in KEGG pathway.

Gene Ontology
GO IDGO_TermEvidenceOntology
GO:0005515protein bindingIPImolecular_function
GO:0031627telomeric loop formationIEAbiological_process
GO:0031860telomeric 3' overhang formationISSbiological_process
GO:0005515protein bindingIEAmolecular_function
GO:0005634nucleusIEAcellular_component
GO:0000075cell cycle checkpointIMPbiological_process
GO:0000781chromosome, telomeric regionIDAcellular_component
GO:0031627telomeric loop formationISSbiological_process
GO:0006281DNA repairIEAbiological_process
GO:0000723telomere maintenanceIMPbiological_process
GO:0005813centrosomeIDAcellular_component
GO:0031848protection from non-homologous end joining at teloIMPbiological_process
GO:0000781chromosome, telomeric regionIEAcellular_component
GO:0031860telomeric 3' overhang formationIEAbiological_process
GO:0031848protection from non-homologous end joining at teloIEAbiological_process
GO:00084095'-3' exonuclease activityIEAmolecular_function
GO:0005737cytoplasmIEAcellular_component
GO:00084095'-3' exonuclease activityIDAmolecular_function