登録情報 | データベース: PDB / ID: 3rs7 |
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タイトル | H-Ras soaked in 50% isopropanol: 1 of 10 in MSCS set |
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要素 | GTPase HRas |
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キーワード | SIGNALING PROTEIN / GTP-BINDING / NUCLEOTIDE BINDING |
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機能・相同性 | 機能・相同性情報
phospholipase C activator activity / GTPase complex / positive regulation of ruffle assembly / oncogene-induced cell senescence / negative regulation of GTPase activity / positive regulation of miRNA metabolic process / T-helper 1 type immune response / positive regulation of wound healing / regulation of neurotransmitter receptor localization to postsynaptic specialization membrane / defense response to protozoan ...phospholipase C activator activity / GTPase complex / positive regulation of ruffle assembly / oncogene-induced cell senescence / negative regulation of GTPase activity / positive regulation of miRNA metabolic process / T-helper 1 type immune response / positive regulation of wound healing / regulation of neurotransmitter receptor localization to postsynaptic specialization membrane / defense response to protozoan / Signaling by RAS GAP mutants / Signaling by RAS GTPase mutants / Activation of RAS in B cells / RAS signaling downstream of NF1 loss-of-function variants / SOS-mediated signalling / positive regulation of protein targeting to membrane / Activated NTRK3 signals through RAS / Activated NTRK2 signals through RAS / SHC1 events in ERBB4 signaling / Signalling to RAS / adipose tissue development / Activated NTRK2 signals through FRS2 and FRS3 / SHC-related events triggered by IGF1R / Estrogen-stimulated signaling through PRKCZ / SHC-mediated cascade:FGFR3 / MET activates RAS signaling / Schwann cell development / SHC-mediated cascade:FGFR2 / Signaling by PDGFRA transmembrane, juxtamembrane and kinase domain mutants / Signaling by PDGFRA extracellular domain mutants / PTK6 Regulates RHO GTPases, RAS GTPase and MAP kinases / SHC-mediated cascade:FGFR4 / Erythropoietin activates RAS / Signaling by FGFR4 in disease / SHC-mediated cascade:FGFR1 / FRS-mediated FGFR3 signaling / Signaling by FLT3 ITD and TKD mutants / protein-membrane adaptor activity / FRS-mediated FGFR2 signaling / FRS-mediated FGFR4 signaling / Signaling by FGFR3 in disease / p38MAPK events / Tie2 Signaling / FRS-mediated FGFR1 signaling / Signaling by FGFR2 in disease / GRB2 events in EGFR signaling / SHC1 events in EGFR signaling / EPHB-mediated forward signaling / Signaling by FLT3 fusion proteins / FLT3 Signaling / EGFR Transactivation by Gastrin / Signaling by FGFR1 in disease / myelination / positive regulation of GTPase activity / NCAM signaling for neurite out-growth / positive regulation of MAP kinase activity / CD209 (DC-SIGN) signaling / GRB2 events in ERBB2 signaling / Downstream signal transduction / Ras activation upon Ca2+ influx through NMDA receptor / SHC1 events in ERBB2 signaling / Insulin receptor signalling cascade / intrinsic apoptotic signaling pathway / Constitutive Signaling by Overexpressed ERBB2 / Signaling by phosphorylated juxtamembrane, extracellular and kinase domain KIT mutants / VEGFR2 mediated cell proliferation / positive regulation of epithelial cell proliferation / small monomeric GTPase / animal organ morphogenesis / regulation of actin cytoskeleton organization / FCERI mediated MAPK activation / positive regulation of JNK cascade / RAF activation / regulation of long-term neuronal synaptic plasticity / Signaling by ERBB2 TMD/JMD mutants / Signaling by high-kinase activity BRAF mutants / Signaling by SCF-KIT / Constitutive Signaling by EGFRvIII / MAP2K and MAPK activation / cellular response to gamma radiation / Signaling by ERBB2 ECD mutants / Signaling by ERBB2 KD Mutants / positive regulation of type II interferon production / positive regulation of fibroblast proliferation / endocytosis / Regulation of RAS by GAPs / RAS processing / chemotaxis / Signaling by RAF1 mutants / Negative regulation of MAPK pathway / Signaling by moderate kinase activity BRAF mutants / Paradoxical activation of RAF signaling by kinase inactive BRAF / Signaling downstream of RAS mutants / GDP binding / cellular senescence / Signaling by BRAF and RAF1 fusions / MAPK cascade / insulin receptor signaling pathway / DAP12 signaling / Constitutive Signaling by Ligand-Responsive EGFR Cancer Variants類似検索 - 分子機能 Small GTPase, Ras-type / Small GTPase Ras domain profile. / Rho (Ras homology) subfamily of Ras-like small GTPases / Ras subfamily of RAS small GTPases / Small GTPase / Ras family / Rab subfamily of small GTPases / Small GTP-binding protein domain / P-loop containing nucleotide triphosphate hydrolases / Rossmann fold ...Small GTPase, Ras-type / Small GTPase Ras domain profile. / Rho (Ras homology) subfamily of Ras-like small GTPases / Ras subfamily of RAS small GTPases / Small GTPase / Ras family / Rab subfamily of small GTPases / Small GTP-binding protein domain / P-loop containing nucleotide triphosphate hydrolases / Rossmann fold / P-loop containing nucleoside triphosphate hydrolase / 3-Layer(aba) Sandwich / Alpha Beta類似検索 - ドメイン・相同性 PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER / GTPase HRas類似検索 - 構成要素 |
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生物種 | Homo sapiens (ヒト) |
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手法 | X線回折 / シンクロトロン / 分子置換 / 解像度: 1.7 Å |
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データ登録者 | Mattos, C. / Buhrman, G. / Kearney, B. |
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引用 | ジャーナル: J.Mol.Biol. / 年: 2011 タイトル: Analysis of Binding Site Hot Spots on the Surface of Ras GTPase. 著者: Buhrman, G. / O Connor, C. / Zerbe, B. / Kearney, B.M. / Napoleon, R. / Kovrigina, E.A. / Vajda, S. / Kozakov, D. / Kovrigin, E.L. / Mattos, C. |
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履歴 | 登録 | 2011年5月2日 | 登録サイト: RCSB / 処理サイト: RCSB |
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改定 1.0 | 2011年9月21日 | Provider: repository / タイプ: Initial release |
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改定 1.1 | 2011年10月12日 | Group: Database references |
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改定 1.2 | 2011年11月9日 | Group: Database references |
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改定 1.3 | 2017年11月8日 | Group: Refinement description / カテゴリ: software / Item: _software.name |
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改定 1.4 | 2024年2月28日 | Group: Data collection / Database references / Derived calculations カテゴリ: chem_comp_atom / chem_comp_bond ...chem_comp_atom / chem_comp_bond / database_2 / 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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