| 登録情報 | データベース: PDB / ID: 3p3n |
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| タイトル | Factor inhibiting HIF-1 Alpha in complex with Notch 1 fragment mouse notch (1930-1949) peptide |
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要素 | - Hypoxia-inducible factor 1-alpha inhibitor
- Notch 1 protein
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キーワード | OXIDOREDUCTASE/TRANSCRIPTION / Double Stranded Beta-Helix / hydroxylase / Iron binding / 2-oxoglutarate binding / Hypoxia Inducible Factor binding / Ankyrin Repeat domain binding / OXIDOREDUCTASE-TRANSCRIPTION complex |
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| 機能・相同性 | 機能・相同性情報
Pre-NOTCH Processing in Golgi / regulation of cardioblast proliferation / regulation of inner ear auditory receptor cell differentiation / positive regulation of ephrin receptor signaling pathway / positive regulation of glial cell differentiation / osteoblast fate commitment / venous blood vessel morphogenesis / coronary sinus valve morphogenesis / cardiac right atrium morphogenesis / cardiac right ventricle formation ...Pre-NOTCH Processing in Golgi / regulation of cardioblast proliferation / regulation of inner ear auditory receptor cell differentiation / positive regulation of ephrin receptor signaling pathway / positive regulation of glial cell differentiation / osteoblast fate commitment / venous blood vessel morphogenesis / coronary sinus valve morphogenesis / cardiac right atrium morphogenesis / cardiac right ventricle formation / growth involved in heart morphogenesis / cell differentiation in spinal cord / venous endothelial cell differentiation / arterial endothelial cell differentiation / negative regulation of pro-B cell differentiation / negative regulation of inner ear auditory receptor cell differentiation / mitral valve formation / cell migration involved in endocardial cushion formation / negative regulation of photoreceptor cell differentiation / : / regulation of somitogenesis / Activated NOTCH1 Transmits Signal to the Nucleus / endocardium morphogenesis / foregut morphogenesis / distal tubule development / MAML1-RBP-Jkappa- ICN1 complex / regulation of epithelial cell proliferation involved in prostate gland development / cardiac chamber formation / NOTCH1 Intracellular Domain Regulates Transcription / RUNX3 regulates NOTCH signaling / auditory receptor cell fate commitment / negative regulation of endothelial cell chemotaxis / atrioventricular node development / positive regulation of transcription of Notch receptor target / positive regulation of aorta morphogenesis / cellular response to tumor cell / Notch-HLH transcription pathway / collecting duct development / hypoxia-inducible factor-asparagine dioxygenase / : / [protein]-asparagine 3-dioxygenase activity / compartment pattern specification / negative regulation of extracellular matrix constituent secretion / vasculogenesis involved in coronary vascular morphogenesis / positive regulation of apoptotic process involved in morphogenesis / regulation of extracellular matrix assembly / endocardial cell differentiation / chemical synaptic transmission, postsynaptic / epithelial to mesenchymal transition involved in endocardial cushion formation / peptidyl-histidine dioxygenase activity / T-helper 17 type immune response / cardiac ventricle morphogenesis / endocardial cushion development / positive regulation of smooth muscle cell differentiation / mesenchymal cell development / coronary vein morphogenesis / cardiac left ventricle morphogenesis / cardiac vascular smooth muscle cell development / negative regulation of myotube differentiation / left/right axis specification / negative regulation of catalytic activity / peptidyl-aspartic acid 3-dioxygenase activity / regulation of vascular endothelial growth factor receptor signaling pathway / glomerular mesangial cell development / somatic stem cell division / negative regulation of cell adhesion molecule production / apoptotic process involved in embryonic digit morphogenesis / endocardium development / Cellular response to hypoxia / positive regulation of cardiac epithelial to mesenchymal transition / regulation of cell adhesion involved in heart morphogenesis / regulation of Notch signaling pathway / positive regulation of endothelial cell differentiation / cardiac epithelial to mesenchymal transition / interleukin-17-mediated signaling pathway / pericardium morphogenesis / cardiac atrium morphogenesis / negative regulation of cardiac muscle hypertrophy / secretory columnal luminar epithelial cell differentiation involved in prostate glandular acinus development / cardiac muscle cell myoblast differentiation / neuron fate commitment / negative regulation of collagen biosynthetic process / cellular response to follicle-stimulating hormone stimulus / neuronal stem cell population maintenance / positive regulation of vasculogenesis / positive regulation of astrocyte differentiation / negative regulation of calcium ion-dependent exocytosis / carboxylic acid binding / negative regulation of oligodendrocyte differentiation / camera-type eye morphogenesis / tissue regeneration / luteolysis / pulmonary valve morphogenesis / prostate gland epithelium morphogenesis / heart trabecula morphogenesis / glial cell differentiation / endoderm development / coronary artery morphogenesis / negative regulation of cell-cell adhesion mediated by cadherin / negative regulation of cell migration involved in sprouting angiogenesis類似検索 - 分子機能 Clavaminate synthase-like / Neurogenic locus notch homolog protein 1 / Notch, C-terminal / Domain of unknown function / : / Notch / Notch, NOD domain / Notch, NODP domain / NOTCH protein / NOTCH protein ...Clavaminate synthase-like / Neurogenic locus notch homolog protein 1 / Notch, C-terminal / Domain of unknown function / : / Notch / Notch, NOD domain / Notch, NODP domain / NOTCH protein / NOTCH protein / NOD / NODP / Hypoxia-inducible factor 1-alpha inhibitor, domain II / Notch-like domain superfamily / LNR (Lin-12/Notch) repeat profile. / LNR domain / Notch domain / Domain found in Notch and Lin-12 / Cupin-like domain 8 / Cupin-like domain / EGF-like, conserved site / Human growth factor-like EGF / : / Calcium-binding EGF domain / EGF-like domain / A domain family that is part of the cupin metalloenzyme superfamily. / JmjC domain / JmjC domain profile. / Jelly Rolls / EGF-type aspartate/asparagine hydroxylation site / EGF-like calcium-binding, conserved site / Calcium-binding EGF-like domain signature. / Aspartic acid and asparagine hydroxylation site. / EGF-like calcium-binding domain / Calcium-binding EGF-like domain / Epidermal growth factor-like domain. / Ankyrin repeat / EGF-like domain profile. / Growth factor receptor cysteine-rich domain superfamily / EGF-like domain signature 1. / EGF-like domain signature 2. / EGF-like domain / RmlC-like jelly roll fold / Ankyrin repeats (3 copies) / Ankyrin repeat profile. / Ankyrin repeat region circular profile. / ankyrin repeats / Ankyrin repeat / Ankyrin repeat-containing domain superfamily / Helix Hairpins / Jelly Rolls / Sandwich / Orthogonal Bundle / Mainly Beta / Mainly Alpha類似検索 - ドメイン・相同性 2-OXOGLUTARIC ACID / : / Neurogenic locus notch homolog protein 1 / Neurogenic locus notch homolog protein 1 / Hypoxia-inducible factor 1-alpha inhibitor類似検索 - 構成要素 |
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| 生物種 | Homo sapiens (ヒト)
 Mus musculus (ハツカネズミ) |
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| 手法 | X線回折 / シンクロトロン / フーリエ合成 / 解像度: 2.4 Å |
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データ登録者 | McDonough, M.A. / Schofield, C.J. |
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引用 | ジャーナル: J.Biol.Chem. / 年: 2007 タイトル: Asparaginyl hydroxylation of the Notch ankyrin repeat domain by factor inhibiting hypoxia-inducible factor 著者: Coleman, M.L. / Mcdonough, M.A. / Hewitson, K.S. / Coles, C. / Mecinovic, J. / Edelmann, M. / Cook, K.M. / Cockman, M.E. / Lancaster, D.E. / Kessler, B.M. / Oldham, N.J. / Ratcliffe, P.J. / Schofield, C.J. |
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| 履歴 | | 登録 | 2010年10月5日 | 登録サイト: RCSB / 処理サイト: RCSB |
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| 改定 1.0 | 2010年11月24日 | Provider: repository / タイプ: Initial release |
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| 改定 1.1 | 2011年7月13日 | Group: Version format compliance |
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| 改定 1.2 | 2023年9月6日 | Group: Data collection / Database references ...Data collection / Database references / Derived calculations / Refinement description カテゴリ: chem_comp_atom / chem_comp_bond ...chem_comp_atom / chem_comp_bond / database_2 / pdbx_initial_refinement_model / pdbx_struct_conn_angle / struct_conn / struct_site Item: _database_2.pdbx_DOI / _database_2.pdbx_database_accession ..._database_2.pdbx_DOI / _database_2.pdbx_database_accession / _pdbx_struct_conn_angle.ptnr1_auth_comp_id / _pdbx_struct_conn_angle.ptnr1_auth_seq_id / _pdbx_struct_conn_angle.ptnr1_label_asym_id / _pdbx_struct_conn_angle.ptnr1_label_atom_id / _pdbx_struct_conn_angle.ptnr1_label_comp_id / _pdbx_struct_conn_angle.ptnr1_label_seq_id / _pdbx_struct_conn_angle.ptnr3_auth_comp_id / _pdbx_struct_conn_angle.ptnr3_auth_seq_id / _pdbx_struct_conn_angle.ptnr3_label_asym_id / _pdbx_struct_conn_angle.ptnr3_label_atom_id / _pdbx_struct_conn_angle.ptnr3_label_comp_id / _pdbx_struct_conn_angle.ptnr3_label_seq_id / _pdbx_struct_conn_angle.value / _struct_conn.pdbx_dist_value / _struct_conn.ptnr1_auth_comp_id / _struct_conn.ptnr1_auth_seq_id / _struct_conn.ptnr1_label_asym_id / _struct_conn.ptnr1_label_atom_id / _struct_conn.ptnr1_label_comp_id / _struct_conn.ptnr1_label_seq_id / _struct_conn.ptnr2_auth_comp_id / _struct_conn.ptnr2_auth_seq_id / _struct_conn.ptnr2_label_asym_id / _struct_conn.ptnr2_label_atom_id / _struct_conn.ptnr2_label_comp_id / _struct_site.pdbx_auth_asym_id / _struct_site.pdbx_auth_comp_id / _struct_site.pdbx_auth_seq_id |
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