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PDB Keywords for 1HBX
(Keywords from the PDB file are used here. They may or may not correspond to GO term names).
- Gene Regulation|Transcription Complex|Serum Response Factor|Ternary Complex Factor [GO] [PubMed] [Google]
GO Keywords for 1HBX
(Here all GO term names are given that map directly to this particular structure).
- nuclear chromatin [GO] [PubMed] [Google]
- RNA polymerase II proximal promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- obsolete transcription factor activity, RNA polymerase II transcription factor binding [GO] [PubMed] [Google]
- proximal promoter DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- branching involved in blood vessel morphogenesis [GO] [PubMed] [Google]
- response to hypoxia [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- mesoderm formation [GO] [PubMed] [Google]
- neuron migration [GO] [PubMed] [Google]
- trophectodermal cell differentiation [GO] [PubMed] [Google]
- heart looping [GO] [PubMed] [Google]
- morphogenesis of an epithelial sheet [GO] [PubMed] [Google]
- cell migration involved in sprouting angiogenesis [GO] [PubMed] [Google]
- leukocyte differentiation [GO] [PubMed] [Google]
- positive regulation of transcription from RNA polymerase II promoter involved in myocardial precursor cell differentiation [GO] [PubMed] [Google]
- DNA binding [GO] [PubMed] [Google]
- chromatin binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- transcription factor activity, RNA polymerase II distal enhancer sequence-specific binding [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- nucleoplasm [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- transcription, DNA-templated [GO] [PubMed] [Google]
- regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- transcription by RNA polymerase II [GO] [PubMed] [Google]
- actin filament organization [GO] [PubMed] [Google]
- cell-matrix adhesion [GO] [PubMed] [Google]
- multicellular organism development [GO] [PubMed] [Google]
- gastrulation [GO] [PubMed] [Google]
- heart development [GO] [PubMed] [Google]
- long-term memory [GO] [PubMed] [Google]
- transcription factor binding [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- associative learning [GO] [PubMed] [Google]
- response to toxic substance [GO] [PubMed] [Google]
- response to hormone [GO] [PubMed] [Google]
- epithelial structure maintenance [GO] [PubMed] [Google]
- positive regulation of transcription via serum response element binding [GO] [PubMed] [Google]
- serum response element binding [GO] [PubMed] [Google]
- hippocampus development [GO] [PubMed] [Google]
- tangential migration from the subventricular zone to the olfactory bulb [GO] [PubMed] [Google]
- actin cytoskeleton organization [GO] [PubMed] [Google]
- contractile actin filament bundle assembly [GO] [PubMed] [Google]
- regulation of cell adhesion [GO] [PubMed] [Google]
- platelet activation [GO] [PubMed] [Google]
- platelet formation [GO] [PubMed] [Google]
- negative regulation of cell migration [GO] [PubMed] [Google]
- thyroid gland development [GO] [PubMed] [Google]
- neuron projection development [GO] [PubMed] [Google]
- chromatin DNA binding [GO] [PubMed] [Google]
- regulation of water loss via skin [GO] [PubMed] [Google]
- response to cytokine [GO] [PubMed] [Google]
- megakaryocyte development [GO] [PubMed] [Google]
- dorsal aorta morphogenesis [GO] [PubMed] [Google]
- mRNA transcription by RNA polymerase II [GO] [PubMed] [Google]
- protein homodimerization activity [GO] [PubMed] [Google]
- histone deacetylase binding [GO] [PubMed] [Google]
- stress fiber assembly [GO] [PubMed] [Google]
- sequence-specific DNA binding [GO] [PubMed] [Google]
- skin morphogenesis [GO] [PubMed] [Google]
- positive thymic T cell selection [GO] [PubMed] [Google]
- sarcomere organization [GO] [PubMed] [Google]
- positive regulation of cell differentiation [GO] [PubMed] [Google]
- positive regulation of axon extension [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- positive regulation of smooth muscle contraction [GO] [PubMed] [Google]
- positive regulation of transcription by glucose [GO] [PubMed] [Google]
- muscle cell cellular homeostasis [GO] [PubMed] [Google]
- protein dimerization activity [GO] [PubMed] [Google]
- thymus development [GO] [PubMed] [Google]
- developmental growth [GO] [PubMed] [Google]
- neuron development [GO] [PubMed] [Google]
- erythrocyte development [GO] [PubMed] [Google]
- positive regulation of DNA-binding transcription factor activity [GO] [PubMed] [Google]
- regulation of smooth muscle cell differentiation [GO] [PubMed] [Google]
- positive regulation of filopodium assembly [GO] [PubMed] [Google]
- cardiac myofibril assembly [GO] [PubMed] [Google]
- angiogenesis involved in wound healing [GO] [PubMed] [Google]
- hematopoietic stem cell differentiation [GO] [PubMed] [Google]
- positive regulation of transcription initiation from RNA polymerase II promoter [GO] [PubMed] [Google]
- long-term synaptic depression [GO] [PubMed] [Google]
- face development [GO] [PubMed] [Google]
- heart trabecula formation [GO] [PubMed] [Google]
- lung morphogenesis [GO] [PubMed] [Google]
- bronchus cartilage development [GO] [PubMed] [Google]
- trachea cartilage development [GO] [PubMed] [Google]
- cardiac vascular smooth muscle cell differentiation [GO] [PubMed] [Google]
- eyelid development in camera-type eye [GO] [PubMed] [Google]
- lung smooth muscle development [GO] [PubMed] [Google]
- bicellular tight junction assembly [GO] [PubMed] [Google]
- primary miRNA binding [GO] [PubMed] [Google]
- cellular response to glucose stimulus [GO] [PubMed] [Google]
- primitive streak formation [GO] [PubMed] [Google]
- epithelial cell-cell adhesion [GO] [PubMed] [Google]
- cellular senescence [GO] [PubMed] [Google]
- negative regulation of amyloid-beta clearance [GO] [PubMed] [Google]
- negative regulation of pri-miRNA transcription by RNA polymerase II [GO] [PubMed] [Google]
- positive regulation of pri-miRNA transcription by RNA polymerase II [GO] [PubMed] [Google]
- transcription factor activity, RNA polymerase II core promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- negative regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- DNA-binding transcription factor activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- core promoter binding [GO] [PubMed] [Google]
- DNA binding [GO] [PubMed] [Google]
- chromatin binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- transcription coregulator activity [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- nucleoplasm [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- transcription, DNA-templated [GO] [PubMed] [Google]
- regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- cell differentiation [GO] [PubMed] [Google]
- sequence-specific DNA binding [GO] [PubMed] [Google]
- histone H3 deacetylation [GO] [PubMed] [Google]