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PDB Keywords for 1HU8
(Keywords from the PDB file are used here. They may or may not correspond to GO term names).
- P53|Tumor Suppressor|Dna Binding|Dna Binding Protein [GO] [PubMed] [Google]
GO Keywords for 1HU8
(Here all GO term names are given that map directly to this particular structure).
- protein import into nucleus, translocation [GO] [PubMed] [Google]
- negative regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- DNA strand renaturation [GO] [PubMed] [Google]
- chromatin [GO] [PubMed] [Google]
- nuclear chromatin [GO] [PubMed] [Google]
- RNA polymerase II regulatory region sequence-specific DNA binding [GO] [PubMed] [Google]
- RNA polymerase II core promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- core promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- proximal promoter DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- RNA polymerase II transcription factor binding [GO] [PubMed] [Google]
- DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- somitogenesis [GO] [PubMed] [Google]
- release of cytochrome c from mitochondria [GO] [PubMed] [Google]
- protease binding [GO] [PubMed] [Google]
- p53 binding [GO] [PubMed] [Google]
- T cell proliferation involved in immune response [GO] [PubMed] [Google]
- B cell lineage commitment [GO] [PubMed] [Google]
- T cell lineage commitment [GO] [PubMed] [Google]
- response to ischemia [GO] [PubMed] [Google]
- DNA binding [GO] [PubMed] [Google]
- chromatin binding [GO] [PubMed] [Google]
- damaged DNA binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- copper ion binding [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- ATP binding [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- nucleoplasm [GO] [PubMed] [Google]
- replication fork [GO] [PubMed] [Google]
- transcription factor complex [GO] [PubMed] [Google]
- nucleolus [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- mitochondrion [GO] [PubMed] [Google]
- mitochondrial matrix [GO] [PubMed] [Google]
- endoplasmic reticulum [GO] [PubMed] [Google]
- cytosol [GO] [PubMed] [Google]
- nucleotide-excision repair [GO] [PubMed] [Google]
- double-strand break repair [GO] [PubMed] [Google]
- transcription, DNA-templated [GO] [PubMed] [Google]
- regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- transcription by RNA polymerase II [GO] [PubMed] [Google]
- apoptotic process [GO] [PubMed] [Google]
- cellular response to DNA damage stimulus [GO] [PubMed] [Google]
- DNA damage response, signal transduction by p53 class mediator resulting in cell cycle arrest [GO] [PubMed] [Google]
- DNA damage response, signal transduction by p53 class mediator resulting in transcription of p21 class mediator [GO] [PubMed] [Google]
- response to oxidative stress [GO] [PubMed] [Google]
- ER overload response [GO] [PubMed] [Google]
- cell cycle [GO] [PubMed] [Google]
- cell cycle arrest [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- multicellular organism development [GO] [PubMed] [Google]
- gastrulation [GO] [PubMed] [Google]
- negative regulation of neuroblast proliferation [GO] [PubMed] [Google]
- central nervous system development [GO] [PubMed] [Google]
- heart development [GO] [PubMed] [Google]
- cell aging [GO] [PubMed] [Google]
- circadian rhythm [GO] [PubMed] [Google]
- protein localization [GO] [PubMed] [Google]
- transcription factor binding [GO] [PubMed] [Google]
- negative regulation of DNA replication [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- determination of adult lifespan [GO] [PubMed] [Google]
- rRNA transcription [GO] [PubMed] [Google]
- response to UV [GO] [PubMed] [Google]
- response to salt stress [GO] [PubMed] [Google]
- embryo development ending in birth or egg hatching [GO] [PubMed] [Google]
- response to X-ray [GO] [PubMed] [Google]
- response to gamma radiation [GO] [PubMed] [Google]
- positive regulation of gene expression [GO] [PubMed] [Google]
- negative regulation of gene expression [GO] [PubMed] [Google]
- positive regulation of cardiac muscle cell apoptotic process [GO] [PubMed] [Google]
- programmed cell death [GO] [PubMed] [Google]
- viral process [GO] [PubMed] [Google]
- nuclear matrix [GO] [PubMed] [Google]
- PML body [GO] [PubMed] [Google]
- enzyme binding [GO] [PubMed] [Google]
- protein kinase binding [GO] [PubMed] [Google]
- protein phosphatase binding [GO] [PubMed] [Google]
- cerebellum development [GO] [PubMed] [Google]
- negative regulation of cell growth [GO] [PubMed] [Google]
- DNA damage response, signal transduction by p53 class mediator [GO] [PubMed] [Google]
- negative regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- receptor tyrosine kinase binding [GO] [PubMed] [Google]
- chromosome breakage [GO] [PubMed] [Google]
- positive regulation of histone deacetylation [GO] [PubMed] [Google]
- chromatin assembly [GO] [PubMed] [Google]
- mitotic G1 DNA damage checkpoint [GO] [PubMed] [Google]
- ubiquitin protein ligase binding [GO] [PubMed] [Google]
- positive regulation of protein oligomerization [GO] [PubMed] [Google]
- T cell differentiation in thymus [GO] [PubMed] [Google]
- regulation of tissue remodeling [GO] [PubMed] [Google]
- cellular protein localization [GO] [PubMed] [Google]
- cellular response to UV [GO] [PubMed] [Google]
- histone deacetylase regulator activity [GO] [PubMed] [Google]
- histone acetyltransferase binding [GO] [PubMed] [Google]
- multicellular organism growth [GO] [PubMed] [Google]
- positive regulation of mitochondrial membrane permeability [GO] [PubMed] [Google]
- site of double-strand break [GO] [PubMed] [Google]
- regulation of cell proliferation [GO] [PubMed] [Google]
- cellular response to glucose starvation [GO] [PubMed] [Google]
- response to drug [GO] [PubMed] [Google]
- intrinsic apoptotic signaling pathway in response to DNA damage by p53 class mediator [GO] [PubMed] [Google]
- identical protein binding [GO] [PubMed] [Google]
- regulation of apoptotic process [GO] [PubMed] [Google]
- positive regulation of apoptotic process [GO] [PubMed] [Google]
- negative regulation of apoptotic process [GO] [PubMed] [Google]
- entrainment of circadian clock by photoperiod [GO] [PubMed] [Google]
- mitochondrial DNA repair [GO] [PubMed] [Google]
- regulation of neuron apoptotic process [GO] [PubMed] [Google]
- positive regulation of neuron apoptotic process [GO] [PubMed] [Google]
- protein self-association [GO] [PubMed] [Google]
- transcription regulatory region DNA binding [GO] [PubMed] [Google]
- negative regulation of proteolysis [GO] [PubMed] [Google]
- negative regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- negative regulation of mitotic cell cycle [GO] [PubMed] [Google]
- positive regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]
- protein heterodimerization activity [GO] [PubMed] [Google]
- protein N-terminus binding [GO] [PubMed] [Google]
- negative regulation of fibroblast proliferation [GO] [PubMed] [Google]
- rhythmic process [GO] [PubMed] [Google]
- circadian behavior [GO] [PubMed] [Google]
- embryonic organ development [GO] [PubMed] [Google]
- positive regulation of peptidyl-tyrosine phosphorylation [GO] [PubMed] [Google]
- protein stabilization [GO] [PubMed] [Google]
- chaperone binding [GO] [PubMed] [Google]
- protein tetramerization [GO] [PubMed] [Google]
- chromosome organization [GO] [PubMed] [Google]
- neuron apoptotic process [GO] [PubMed] [Google]
- protein phosphatase 2A binding [GO] [PubMed] [Google]
- regulation of cell cycle [GO] [PubMed] [Google]
- negative regulation of telomerase activity [GO] [PubMed] [Google]
- cardiac septum morphogenesis [GO] [PubMed] [Google]
- positive regulation of transcription from RNA polymerase II promoter in response to hypoxia [GO] [PubMed] [Google]
- intrinsic apoptotic signaling pathway in response to endoplasmic reticulum stress [GO] [PubMed] [Google]
- regulation of thymocyte apoptotic process [GO] [PubMed] [Google]
- positive regulation of thymocyte apoptotic process [GO] [PubMed] [Google]
- necroptotic process [GO] [PubMed] [Google]
- positive regulation of cell cycle arrest [GO] [PubMed] [Google]
- cellular response to ionizing radiation [GO] [PubMed] [Google]
- cellular response to UV-C [GO] [PubMed] [Google]
- mitotic cell cycle arrest [GO] [PubMed] [Google]
- intrinsic apoptotic signaling pathway by p53 class mediator [GO] [PubMed] [Google]
- regulation of glycolytic process by positive regulation of transcription from RNA polymerase II promoter [GO] [PubMed] [Google]
- positive regulation of release of cytochrome c from mitochondria [GO] [PubMed] [Google]
- positive regulation of cell aging [GO] [PubMed] [Google]
- replicative senescence [GO] [PubMed] [Google]
- oxidative stress-induced premature senescence [GO] [PubMed] [Google]
- oligodendrocyte apoptotic process [GO] [PubMed] [Google]
- MDM2/MDM4 family protein binding [GO] [PubMed] [Google]
- positive regulation of execution phase of apoptosis [GO] [PubMed] [Google]
- negative regulation of mitophagy [GO] [PubMed] [Google]
- regulation of mitochondrial membrane permeability involved in apoptotic process [GO] [PubMed] [Google]
- regulation of intrinsic apoptotic signaling pathway by p53 class mediator [GO] [PubMed] [Google]
- negative regulation of glucose catabolic process to lactate via pyruvate [GO] [PubMed] [Google]
- intrinsic apoptotic signaling pathway in response to hypoxia [GO] [PubMed] [Google]
- positive regulation of transcription from RNA polymerase II promoter in response to endoplasmic reticulum stress [GO] [PubMed] [Google]
- regulation of fibroblast apoptotic process [GO] [PubMed] [Google]
- negative regulation of reactive oxygen species metabolic process [GO] [PubMed] [Google]
- positive regulation of reactive oxygen species metabolic process [GO] [PubMed] [Google]
- regulation of cellular senescence [GO] [PubMed] [Google]
- positive regulation of intrinsic apoptotic signaling pathway [GO] [PubMed] [Google]
- transcription factor TFIID complex [GO] [PubMed] [Google]
- nuclear body [GO] [PubMed] [Google]