Keyword Search: Gene Ontology, PubMed or Web (Google)
PDB Keywords for 1U7V
(Keywords from the PDB file are used here. They may or may not correspond to GO term names).
- Smad|Tgf-Beta|Signal Transduction|Protein Complex|Phosphorylation|Signaling Protein [GO] [PubMed] [Google]
GO Keywords for 1U7V
(Here all GO term names are given that map directly to this particular structure).
- negative regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- nuclear chromatin [GO] [PubMed] [Google]
- RNA polymerase II proximal promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- proximal promoter DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- ureteric bud development [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- endoderm formation [GO] [PubMed] [Google]
- mesoderm formation [GO] [PubMed] [Google]
- DNA binding [GO] [PubMed] [Google]
- chromatin binding [GO] [PubMed] [Google]
- double-stranded DNA binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- intracellular [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- nucleoplasm [GO] [PubMed] [Google]
- transcription factor complex [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- cytosol [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]
- protein phosphorylation [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- common-partner SMAD protein phosphorylation [GO] [PubMed] [Google]
- SMAD protein complex assembly [GO] [PubMed] [Google]
- zygotic specification of dorsal/ventral axis [GO] [PubMed] [Google]
- gastrulation [GO] [PubMed] [Google]
- pattern specification process [GO] [PubMed] [Google]
- endoderm development [GO] [PubMed] [Google]
- heart development [GO] [PubMed] [Google]
- transcription factor binding [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- response to glucose [GO] [PubMed] [Google]
- post-embryonic development [GO] [PubMed] [Google]
- embryonic pattern specification [GO] [PubMed] [Google]
- anterior/posterior pattern specification [GO] [PubMed] [Google]
- positive regulation of gene expression [GO] [PubMed] [Google]
- negative regulation of gene expression [GO] [PubMed] [Google]
- positive regulation of epithelial to mesenchymal transition [GO] [PubMed] [Google]
- regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- phosphatase binding [GO] [PubMed] [Google]
- signal transduction involved in regulation of gene expression [GO] [PubMed] [Google]
- insulin secretion [GO] [PubMed] [Google]
- lung development [GO] [PubMed] [Google]
- negative regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- positive regulation of BMP signaling pathway [GO] [PubMed] [Google]
- transforming growth factor beta receptor, pathway-specific cytoplasmic mediator activity [GO] [PubMed] [Google]
- pancreas development [GO] [PubMed] [Google]
- primary miRNA processing [GO] [PubMed] [Google]
- ubiquitin protein ligase binding [GO] [PubMed] [Google]
- activin responsive factor complex [GO] [PubMed] [Google]
- activin receptor signaling pathway [GO] [PubMed] [Google]
- activating transcription factor binding [GO] [PubMed] [Google]
- type I transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- somatic stem cell population maintenance [GO] [PubMed] [Google]
- organ growth [GO] [PubMed] [Google]
- enhancer binding [GO] [PubMed] [Google]
- intracellular signal transduction [GO] [PubMed] [Google]
- nodal signaling pathway [GO] [PubMed] [Google]
- protein homodimerization activity [GO] [PubMed] [Google]
- cell fate commitment [GO] [PubMed] [Google]
- negative regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- SMAD binding [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]
- protein heterodimerization activity [GO] [PubMed] [Google]
- paraxial mesoderm morphogenesis [GO] [PubMed] [Google]
- developmental growth [GO] [PubMed] [Google]
- embryonic foregut morphogenesis [GO] [PubMed] [Google]
- embryonic cranial skeleton morphogenesis [GO] [PubMed] [Google]
- regulation of binding [GO] [PubMed] [Google]
- roof of mouth development [GO] [PubMed] [Google]
- pericardium development [GO] [PubMed] [Google]
- SMAD protein signal transduction [GO] [PubMed] [Google]
- co-SMAD binding [GO] [PubMed] [Google]
- I-SMAD binding [GO] [PubMed] [Google]
- R-SMAD binding [GO] [PubMed] [Google]
- response to cholesterol [GO] [PubMed] [Google]
- SMAD protein complex [GO] [PubMed] [Google]
- heteromeric SMAD protein complex [GO] [PubMed] [Google]
- positive regulation of nodal signaling pathway involved in determination of lateral mesoderm left/right asymmetry [GO] [PubMed] [Google]
- negative regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- nuclear chromatin [GO] [PubMed] [Google]
- RNA polymerase II regulatory region sequence-specific DNA binding [GO] [PubMed] [Google]
- RNA polymerase II proximal promoter sequence-specific DNA binding [GO] [PubMed] [Google]
- 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]
- RNA polymerase II transcription factor binding [GO] [PubMed] [Google]
- DNA-binding transcription activator activity, RNA polymerase II-specific [GO] [PubMed] [Google]
- ovarian follicle development [GO] [PubMed] [Google]
- branching involved in ureteric bud morphogenesis [GO] [PubMed] [Google]
- response to hypoxia [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- gastrulation with mouth forming second [GO] [PubMed] [Google]
- kidney development [GO] [PubMed] [Google]
- atrioventricular valve formation [GO] [PubMed] [Google]
- epithelial to mesenchymal transition involved in endocardial cushion formation [GO] [PubMed] [Google]
- positive regulation of cell proliferation involved in heart valve morphogenesis [GO] [PubMed] [Google]
- cardiac septum development [GO] [PubMed] [Google]
- brainstem development [GO] [PubMed] [Google]
- DNA binding [GO] [PubMed] [Google]
- chromatin binding [GO] [PubMed] [Google]
- DNA-binding transcription factor activity [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- collagen binding [GO] [PubMed] [Google]
- intracellular [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- nucleoplasm [GO] [PubMed] [Google]
- transcription factor complex [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- cytosol [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]
- cellular iron ion homeostasis [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- SMAD protein complex assembly [GO] [PubMed] [Google]
- spermatogenesis [GO] [PubMed] [Google]
- single fertilization [GO] [PubMed] [Google]
- gastrulation [GO] [PubMed] [Google]
- axon guidance [GO] [PubMed] [Google]
- endoderm development [GO] [PubMed] [Google]
- mesoderm development [GO] [PubMed] [Google]
- cell proliferation [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- male gonad development [GO] [PubMed] [Google]
- female gonad development [GO] [PubMed] [Google]
- anterior/posterior pattern specification [GO] [PubMed] [Google]
- positive regulation of epithelial to mesenchymal transition [GO] [PubMed] [Google]
- positive regulation of pathway-restricted SMAD protein phosphorylation [GO] [PubMed] [Google]
- neural crest cell differentiation [GO] [PubMed] [Google]
- regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- negative regulation of cell growth [GO] [PubMed] [Google]
- BMP signaling pathway [GO] [PubMed] [Google]
- positive regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- positive regulation of BMP signaling pathway [GO] [PubMed] [Google]
- transforming growth factor beta receptor, common-partner cytoplasmic mediator activity [GO] [PubMed] [Google]
- activin responsive factor complex [GO] [PubMed] [Google]
- somite rostral/caudal axis specification [GO] [PubMed] [Google]
- regulation of transforming growth factor beta2 production [GO] [PubMed] [Google]
- positive regulation of luteinizing hormone secretion [GO] [PubMed] [Google]
- somatic stem cell population maintenance [GO] [PubMed] [Google]
- intracellular signal transduction [GO] [PubMed] [Google]
- atrioventricular canal development [GO] [PubMed] [Google]
- endothelial cell activation [GO] [PubMed] [Google]
- regulation of cell proliferation [GO] [PubMed] [Google]
- embryonic digit morphogenesis [GO] [PubMed] [Google]
- identical protein binding [GO] [PubMed] [Google]
- protein homodimerization activity [GO] [PubMed] [Google]
- transcription regulatory region DNA binding [GO] [PubMed] [Google]
- negative regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]
- positive regulation of follicle-stimulating hormone secretion [GO] [PubMed] [Google]
- protein heterodimerization activity [GO] [PubMed] [Google]
- developmental growth [GO] [PubMed] [Google]
- neuron fate commitment [GO] [PubMed] [Google]
- tissue morphogenesis [GO] [PubMed] [Google]
- sebaceous gland development [GO] [PubMed] [Google]
- formation of anatomical boundary [GO] [PubMed] [Google]
- regulation of binding [GO] [PubMed] [Google]
- positive regulation of histone H3-K4 methylation [GO] [PubMed] [Google]
- regulation of hair follicle development [GO] [PubMed] [Google]
- roof of mouth development [GO] [PubMed] [Google]
- uterus development [GO] [PubMed] [Google]
- positive regulation of SMAD protein signal transduction [GO] [PubMed] [Google]
- SMAD protein signal transduction [GO] [PubMed] [Google]
- negative regulation of cell death [GO] [PubMed] [Google]
- endocardial cell differentiation [GO] [PubMed] [Google]
- female gonad morphogenesis [GO] [PubMed] [Google]
- interleukin-6-mediated signaling pathway [GO] [PubMed] [Google]
- I-SMAD binding [GO] [PubMed] [Google]
- R-SMAD binding [GO] [PubMed] [Google]
- SMAD protein complex [GO] [PubMed] [Google]
- response to transforming growth factor beta [GO] [PubMed] [Google]
- cellular response to BMP stimulus [GO] [PubMed] [Google]
- metanephric mesenchyme morphogenesis [GO] [PubMed] [Google]
- nephrogenic mesenchyme morphogenesis [GO] [PubMed] [Google]
- seminiferous tubule development [GO] [PubMed] [Google]
- RNA polymerase II transcription factor complex [GO] [PubMed] [Google]
- positive regulation of transcription from RNA polymerase II promoter involved in cellular response to chemical stimulus [GO] [PubMed] [Google]
- positive regulation of histone H3-K9 acetylation [GO] [PubMed] [Google]
- obsolete transcription factor activity, protein binding [GO] [PubMed] [Google]
- sequence-specific DNA binding [GO] [PubMed] [Google]