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PDB Keywords for 2PJY
(Keywords from the PDB file are used here. They may or may not correspond to GO term names).
- Ternary Complex|Three Finger Toxin|Cytokine-Cytokine Receptor Complex [GO] [PubMed] [Google]
GO Keywords for 2PJY
(Here all GO term names are given that map directly to this particular structure).
- nucleotide binding [GO] [PubMed] [Google]
- blood vessel development [GO] [PubMed] [Google]
- branching involved in blood vessel morphogenesis [GO] [PubMed] [Google]
- vasculogenesis [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- positive regulation of mesenchymal cell proliferation [GO] [PubMed] [Google]
- lens development in camera-type eye [GO] [PubMed] [Google]
- positive regulation of tolerance induction to self antigen [GO] [PubMed] [Google]
- positive regulation of B cell tolerance induction [GO] [PubMed] [Google]
- positive regulation of T cell tolerance induction [GO] [PubMed] [Google]
- growth plate cartilage development [GO] [PubMed] [Google]
- growth plate cartilage chondrocyte growth [GO] [PubMed] [Google]
- protein kinase activity [GO] [PubMed] [Google]
- protein serine/threonine kinase activity [GO] [PubMed] [Google]
- transmembrane receptor protein serine/threonine kinase activity [GO] [PubMed] [Google]
- obsolete signal transducer, downstream of receptor, with serine/threonine kinase activity [GO] [PubMed] [Google]
- transforming growth factor beta-activated receptor activity [GO] [PubMed] [Google]
- transforming growth factor beta receptor activity, type II [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- ATP binding [GO] [PubMed] [Google]
- glycosaminoglycan binding [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- cytosol [GO] [PubMed] [Google]
- plasma membrane [GO] [PubMed] [Google]
- integral component of plasma membrane [GO] [PubMed] [Google]
- caveola [GO] [PubMed] [Google]
- protein phosphorylation [GO] [PubMed] [Google]
- receptor-mediated endocytosis [GO] [PubMed] [Google]
- apoptotic process [GO] [PubMed] [Google]
- transmembrane receptor protein serine/threonine kinase signaling pathway [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- common-partner SMAD protein phosphorylation [GO] [PubMed] [Google]
- Notch signaling pathway [GO] [PubMed] [Google]
- smoothened signaling pathway [GO] [PubMed] [Google]
- gastrulation [GO] [PubMed] [Google]
- brain development [GO] [PubMed] [Google]
- heart development [GO] [PubMed] [Google]
- embryo implantation [GO] [PubMed] [Google]
- aging [GO] [PubMed] [Google]
- response to nutrient [GO] [PubMed] [Google]
- positive regulation of cell proliferation [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- response to mechanical stimulus [GO] [PubMed] [Google]
- response to glucose [GO] [PubMed] [Google]
- animal organ morphogenesis [GO] [PubMed] [Google]
- external side of plasma membrane [GO] [PubMed] [Google]
- cell surface [GO] [PubMed] [Google]
- response to organic substance [GO] [PubMed] [Google]
- regulation of gene expression [GO] [PubMed] [Google]
- positive regulation of epithelial cell migration [GO] [PubMed] [Google]
- positive regulation of epithelial to mesenchymal transition [GO] [PubMed] [Google]
- response to organic cyclic compound [GO] [PubMed] [Google]
- membrane [GO] [PubMed] [Google]
- integral component of membrane [GO] [PubMed] [Google]
- kinase activity [GO] [PubMed] [Google]
- phosphorylation [GO] [PubMed] [Google]
- transferase activity [GO] [PubMed] [Google]
- peptidyl-serine phosphorylation [GO] [PubMed] [Google]
- peptidyl-threonine phosphorylation [GO] [PubMed] [Google]
- signal transduction by protein phosphorylation [GO] [PubMed] [Google]
- cell differentiation [GO] [PubMed] [Google]
- lung development [GO] [PubMed] [Google]
- negative regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- animal organ regeneration [GO] [PubMed] [Google]
- mitogen-activated protein kinase kinase kinase binding [GO] [PubMed] [Google]
- activation of protein kinase activity [GO] [PubMed] [Google]
- type I transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- type III transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- embryonic hemopoiesis [GO] [PubMed] [Google]
- regulation of growth [GO] [PubMed] [Google]
- wound healing [GO] [PubMed] [Google]
- regulation of cell proliferation [GO] [PubMed] [Google]
- response to drug [GO] [PubMed] [Google]
- myeloid dendritic cell differentiation [GO] [PubMed] [Google]
- receptor complex [GO] [PubMed] [Google]
- positive regulation of skeletal muscle tissue regeneration [GO] [PubMed] [Google]
- response to estrogen [GO] [PubMed] [Google]
- membrane raft [GO] [PubMed] [Google]
- positive regulation of angiogenesis [GO] [PubMed] [Google]
- SMAD binding [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]
- response to steroid hormone [GO] [PubMed] [Google]
- digestive tract development [GO] [PubMed] [Google]
- positive regulation of smooth muscle cell proliferation [GO] [PubMed] [Google]
- embryonic cranial skeleton morphogenesis [GO] [PubMed] [Google]
- transforming growth factor beta binding [GO] [PubMed] [Google]
- positive regulation of NK T cell differentiation [GO] [PubMed] [Google]
- cartilage development [GO] [PubMed] [Google]
- roof of mouth development [GO] [PubMed] [Google]
- negative regulation of cardiac muscle cell proliferation [GO] [PubMed] [Google]
- pathway-restricted SMAD protein phosphorylation [GO] [PubMed] [Google]
- lung morphogenesis [GO] [PubMed] [Google]
- bronchus development [GO] [PubMed] [Google]
- bronchus morphogenesis [GO] [PubMed] [Google]
- trachea morphogenesis [GO] [PubMed] [Google]
- trachea formation [GO] [PubMed] [Google]
- mammary gland morphogenesis [GO] [PubMed] [Google]
- lung lobe morphogenesis [GO] [PubMed] [Google]
- transforming growth factor beta receptor complex [GO] [PubMed] [Google]
- response to cholesterol [GO] [PubMed] [Google]
- lens fiber cell apoptotic process [GO] [PubMed] [Google]
- positive regulation of reactive oxygen species metabolic process [GO] [PubMed] [Google]
- nucleotide binding [GO] [PubMed] [Google]
- activation of MAPKK activity [GO] [PubMed] [Google]
- skeletal system development [GO] [PubMed] [Google]
- angiogenesis [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- kidney development [GO] [PubMed] [Google]
- blastocyst development [GO] [PubMed] [Google]
- epithelial to mesenchymal transition [GO] [PubMed] [Google]
- negative regulation of endothelial cell proliferation [GO] [PubMed] [Google]
- positive regulation of endothelial cell proliferation [GO] [PubMed] [Google]
- lens development in camera-type eye [GO] [PubMed] [Google]
- protein kinase activity [GO] [PubMed] [Google]
- protein serine/threonine kinase activity [GO] [PubMed] [Google]
- transmembrane receptor protein serine/threonine kinase activity [GO] [PubMed] [Google]
- obsolete signal transducer, downstream of receptor, with serine/threonine kinase activity [GO] [PubMed] [Google]
- transforming growth factor beta-activated receptor activity [GO] [PubMed] [Google]
- transforming growth factor beta receptor activity, type I [GO] [PubMed] [Google]
- obsolete signal transducer activity, downstream of receptor [GO] [PubMed] [Google]
- signaling receptor binding [GO] [PubMed] [Google]
- type II transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- ATP binding [GO] [PubMed] [Google]
- intracellular [GO] [PubMed] [Google]
- cell [GO] [PubMed] [Google]
- endosome [GO] [PubMed] [Google]
- plasma membrane [GO] [PubMed] [Google]
- bicellular tight junction [GO] [PubMed] [Google]
- regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- protein phosphorylation [GO] [PubMed] [Google]
- apoptotic process [GO] [PubMed] [Google]
- cell cycle arrest [GO] [PubMed] [Google]
- signal transduction [GO] [PubMed] [Google]
- transmembrane receptor protein serine/threonine kinase signaling pathway [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- heart development [GO] [PubMed] [Google]
- positive regulation of cell proliferation [GO] [PubMed] [Google]
- germ cell migration [GO] [PubMed] [Google]
- male gonad development [GO] [PubMed] [Google]
- post-embryonic development [GO] [PubMed] [Google]
- anterior/posterior pattern specification [GO] [PubMed] [Google]
- cell surface [GO] [PubMed] [Google]
- regulation of gene expression [GO] [PubMed] [Google]
- positive regulation of gene expression [GO] [PubMed] [Google]
- regulation of epithelial to mesenchymal transition [GO] [PubMed] [Google]
- positive regulation of pathway-restricted SMAD protein phosphorylation [GO] [PubMed] [Google]
- membrane [GO] [PubMed] [Google]
- integral component of membrane [GO] [PubMed] [Google]
- kinase activity [GO] [PubMed] [Google]
- phosphorylation [GO] [PubMed] [Google]
- transferase activity [GO] [PubMed] [Google]
- peptidyl-serine phosphorylation [GO] [PubMed] [Google]
- peptidyl-threonine phosphorylation [GO] [PubMed] [Google]
- signal transduction by protein phosphorylation [GO] [PubMed] [Google]
- cell junction [GO] [PubMed] [Google]
- cell differentiation [GO] [PubMed] [Google]
- collagen fibril organization [GO] [PubMed] [Google]
- positive regulation of cell growth [GO] [PubMed] [Google]
- positive regulation of cell migration [GO] [PubMed] [Google]
- negative regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- regulation of protein ubiquitination [GO] [PubMed] [Google]
- negative regulation of chondrocyte differentiation [GO] [PubMed] [Google]
- activin receptor signaling pathway [GO] [PubMed] [Google]
- intracellular signal transduction [GO] [PubMed] [Google]
- regulation of growth [GO] [PubMed] [Google]
- wound healing [GO] [PubMed] [Google]
- endothelial cell activation [GO] [PubMed] [Google]
- extracellular structure organization [GO] [PubMed] [Google]
- negative regulation of apoptotic process [GO] [PubMed] [Google]
- receptor complex [GO] [PubMed] [Google]
- regulation of protein binding [GO] [PubMed] [Google]
- endothelial cell migration [GO] [PubMed] [Google]
- membrane raft [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- SMAD binding [GO] [PubMed] [Google]
- metal ion binding [GO] [PubMed] [Google]
- thymus development [GO] [PubMed] [Google]
- neuron fate commitment [GO] [PubMed] [Google]
- embryonic cranial skeleton morphogenesis [GO] [PubMed] [Google]
- skeletal system morphogenesis [GO] [PubMed] [Google]
- mesenchymal cell differentiation [GO] [PubMed] [Google]
- artery morphogenesis [GO] [PubMed] [Google]
- cell motility [GO] [PubMed] [Google]
- transforming growth factor beta binding [GO] [PubMed] [Google]
- positive regulation of cellular component movement [GO] [PubMed] [Google]
- positive regulation of filopodium assembly [GO] [PubMed] [Google]
- positive regulation of protein kinase B signaling [GO] [PubMed] [Google]
- parathyroid gland development [GO] [PubMed] [Google]
- roof of mouth development [GO] [PubMed] [Google]
- pharyngeal system development [GO] [PubMed] [Google]
- cardiac epithelial to mesenchymal transition [GO] [PubMed] [Google]
- pathway-restricted SMAD protein phosphorylation [GO] [PubMed] [Google]
- positive regulation of SMAD protein signal transduction [GO] [PubMed] [Google]
- transforming growth factor beta receptor complex [GO] [PubMed] [Google]
- I-SMAD binding [GO] [PubMed] [Google]
- response to cholesterol [GO] [PubMed] [Google]
- cellular response to transforming growth factor beta stimulus [GO] [PubMed] [Google]
- positive regulation of apoptotic signaling pathway [GO] [PubMed] [Google]
- negative regulation of extrinsic apoptotic signaling pathway [GO] [PubMed] [Google]
- growth factor binding [GO] [PubMed] [Google]
- activation of MAPK activity [GO] [PubMed] [Google]
- response to hypoxia [GO] [PubMed] [Google]
- in utero embryonic development [GO] [PubMed] [Google]
- platelet degranulation [GO] [PubMed] [Google]
- type II transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- cytokine activity [GO] [PubMed] [Google]
- transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- protein binding [GO] [PubMed] [Google]
- extracellular region [GO] [PubMed] [Google]
- extracellular space [GO] [PubMed] [Google]
- nucleus [GO] [PubMed] [Google]
- cytoplasm [GO] [PubMed] [Google]
- plasma membrane [GO] [PubMed] [Google]
- transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- salivary gland morphogenesis [GO] [PubMed] [Google]
- female pregnancy [GO] [PubMed] [Google]
- aging [GO] [PubMed] [Google]
- growth factor activity [GO] [PubMed] [Google]
- negative regulation of DNA replication [GO] [PubMed] [Google]
- negative regulation of cell proliferation [GO] [PubMed] [Google]
- cell surface [GO] [PubMed] [Google]
- positive regulation of epithelial to mesenchymal transition [GO] [PubMed] [Google]
- positive regulation of pathway-restricted SMAD protein phosphorylation [GO] [PubMed] [Google]
- negative regulation of macrophage cytokine production [GO] [PubMed] [Google]
- cell growth [GO] [PubMed] [Google]
- secretory granule [GO] [PubMed] [Google]
- T-tubule [GO] [PubMed] [Google]
- positive regulation of bone mineralization [GO] [PubMed] [Google]
- negative regulation of transforming growth factor beta receptor signaling pathway [GO] [PubMed] [Google]
- mammary gland development [GO] [PubMed] [Google]
- extracellular matrix [GO] [PubMed] [Google]
- platelet alpha granule lumen [GO] [PubMed] [Google]
- response to progesterone [GO] [PubMed] [Google]
- positive regulation of collagen biosynthetic process [GO] [PubMed] [Google]
- response to laminar fluid shear stress [GO] [PubMed] [Google]
- type I transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- type III transforming growth factor beta receptor binding [GO] [PubMed] [Google]
- growth [GO] [PubMed] [Google]
- wound healing [GO] [PubMed] [Google]
- regulation of cell proliferation [GO] [PubMed] [Google]
- odontogenesis [GO] [PubMed] [Google]
- uterine wall breakdown [GO] [PubMed] [Google]
- identical protein binding [GO] [PubMed] [Google]
- regulation of apoptotic process [GO] [PubMed] [Google]
- neuronal cell body [GO] [PubMed] [Google]
- positive regulation of apoptotic process [GO] [PubMed] [Google]
- regulation of MAPK cascade [GO] [PubMed] [Google]
- negative regulation of neuron apoptotic process [GO] [PubMed] [Google]
- response to estrogen [GO] [PubMed] [Google]
- ossification involved in bone remodeling [GO] [PubMed] [Google]
- cell-cell junction organization [GO] [PubMed] [Google]
- positive regulation of DNA replication [GO] [PubMed] [Google]
- positive regulation of transcription, DNA-templated [GO] [PubMed] [Google]
- positive regulation of transcription by RNA polymerase II [GO] [PubMed] [Google]
- protein heterodimerization activity [GO] [PubMed] [Google]
- lung alveolus development [GO] [PubMed] [Google]
- digestive tract development [GO] [PubMed] [Google]
- embryonic neurocranium morphogenesis [GO] [PubMed] [Google]
- inner ear development [GO] [PubMed] [Google]
- transforming growth factor beta binding [GO] [PubMed] [Google]
- positive regulation of protein secretion [GO] [PubMed] [Google]
- positive regulation of filopodium assembly [GO] [PubMed] [Google]
- positive regulation of cell division [GO] [PubMed] [Google]
- roof of mouth development [GO] [PubMed] [Google]
- face morphogenesis [GO] [PubMed] [Google]
- frontal suture morphogenesis [GO] [PubMed] [Google]
- positive regulation of SMAD protein signal transduction [GO] [PubMed] [Google]
- SMAD protein signal transduction [GO] [PubMed] [Google]
- detection of hypoxia [GO] [PubMed] [Google]
- regulation of epithelial to mesenchymal transition involved in endocardial cushion formation [GO] [PubMed] [Google]