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PDB Keywords for 2IOM
(Keywords from the PDB file are used here. They may or may not correspond to GO term names).
GO Keywords for 2IOM
(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]
- DNA binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- transcription, DNA-templated [GO] [PubMed] [Google]
- regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- apoptotic process [GO] [PubMed] [Google]
- cell cycle [GO] [PubMed] [Google]
- transcription regulatory region DNA binding [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]