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データを開く
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基本情報
| 登録情報 | ![]() | |||||||||
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| タイトル | Cryo-EM Structure of the BRAF V600E monomer bound to PLX8394 | |||||||||
マップデータ | ||||||||||
試料 |
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キーワード | BRAF Kinase Monomer Mutant Inhibitor / TRANSFERASE-INHIBITOR complex | |||||||||
| 機能・相同性 | 機能・相同性情報synaptic target recognition / Golgi reassembly / positive regulation of axon regeneration / CD4-positive, alpha-beta T cell differentiation / NOTCH4 Activation and Transmission of Signal to the Nucleus / CD4-positive or CD8-positive, alpha-beta T cell lineage commitment / negative regulation of synaptic vesicle exocytosis / establishment of Golgi localization / Signalling to p38 via RIT and RIN / respiratory system process ...synaptic target recognition / Golgi reassembly / positive regulation of axon regeneration / CD4-positive, alpha-beta T cell differentiation / NOTCH4 Activation and Transmission of Signal to the Nucleus / CD4-positive or CD8-positive, alpha-beta T cell lineage commitment / negative regulation of synaptic vesicle exocytosis / establishment of Golgi localization / Signalling to p38 via RIT and RIN / respiratory system process / head morphogenesis / ARMS-mediated activation / tube formation / endothelial cell apoptotic process / regulation of synapse maturation / myeloid progenitor cell differentiation / SHOC2 M1731 mutant abolishes MRAS complex function / Gain-of-function MRAS complexes activate RAF signaling / positive regulation of D-glucose transmembrane transport / negative regulation of fibroblast migration / Rap1 signalling / establishment of protein localization to membrane / positive regulation of axonogenesis / negative regulation of protein localization to nucleus / regulation of T cell differentiation / Negative feedback regulation of MAPK pathway / KSRP (KHSRP) binds and destabilizes mRNA / Frs2-mediated activation / GP1b-IX-V activation signalling / stress fiber assembly / face development / MAP kinase kinase activity / thyroid gland development / Interleukin-3, Interleukin-5 and GM-CSF signaling / Regulation of localization of FOXO transcription factors / synaptic vesicle exocytosis / somatic stem cell population maintenance / positive regulation of peptidyl-serine phosphorylation / Activation of BAD and translocation to mitochondria / phosphoserine residue binding / MAP kinase kinase kinase activity / negative regulation of endothelial cell apoptotic process / regulation of ERK1 and ERK2 cascade / protein targeting / Chk1/Chk2(Cds1) mediated inactivation of Cyclin B:Cdk1 complex / postsynaptic modulation of chemical synaptic transmission / SARS-CoV-2 targets host intracellular signalling and regulatory pathways / cellular response to glucose starvation / RHO GTPases activate PKNs / SARS-CoV-1 targets host intracellular signalling and regulatory pathways / positive regulation of stress fiber assembly / negative regulation of TORC1 signaling / ERK1 and ERK2 cascade / positive regulation of substrate adhesion-dependent cell spreading / Transcriptional and post-translational regulation of MITF-M expression and activity / substrate adhesion-dependent cell spreading / protein sequestering activity / lung development / cellular response to calcium ion / negative regulation of innate immune response / thymus development / hippocampal mossy fiber to CA3 synapse / animal organ morphogenesis / TP53 Regulates Metabolic Genes / Translocation of SLC2A4 (GLUT4) to the plasma membrane / Deactivation of the beta-catenin transactivating complex / RAF activation / Spry regulation of FGF signaling / Negative regulation of NOTCH4 signaling / Signaling by high-kinase activity BRAF mutants / MAP2K and MAPK activation / visual learning / regulation of protein stability / centriolar satellite / cellular response to xenobiotic stimulus / epidermal growth factor receptor signaling pathway / long-term synaptic potentiation / Negative regulation of MAPK pathway / Signaling by RAF1 mutants / Signaling by moderate kinase activity BRAF mutants / Paradoxical activation of RAF signaling by kinase inactive BRAF / Signaling downstream of RAS mutants / Signaling by BRAF and RAF1 fusions / intracellular protein localization / melanosome / T cell differentiation in thymus / T cell receptor signaling pathway / MAPK cascade / presynapse / regulation of cell population proliferation / cell body / scaffold protein binding / angiogenesis / protein phosphatase binding / blood microparticle / vesicle / DNA-binding transcription factor binding / negative regulation of neuron apoptotic process / transmembrane transporter binding / positive regulation of ERK1 and ERK2 cascade 類似検索 - 分子機能 | |||||||||
| 生物種 | Homo sapiens (ヒト) | |||||||||
| 手法 | 単粒子再構成法 / クライオ電子顕微鏡法 / 解像度: 3.06 Å | |||||||||
データ登録者 | Lavoie H / Lajoie D / Jin T / Decossas M / Maisonneuve P / Therrien M | |||||||||
| 資金援助 | カナダ, 1件
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引用 | ジャーナル: Science / 年: 2025タイトル: BRAF oncogenic mutants evade autoinhibition through a common mechanism. 著者: Hugo Lavoie / Ting Jin / Driss Lajoie / Marion Decossas / Patrick Gendron / Bing Wang / Frantisek Filandr / Malha Sahmi / Chang Hwa Jo / Sandra Weber / Geneviève Arseneault / Sasmita ...著者: Hugo Lavoie / Ting Jin / Driss Lajoie / Marion Decossas / Patrick Gendron / Bing Wang / Frantisek Filandr / Malha Sahmi / Chang Hwa Jo / Sandra Weber / Geneviève Arseneault / Sasmita Tripathy / Pierre Beaulieu / Doris A Schuetz / David C Schriemer / Anne Marinier / William J Rice / Pierre Maisonneuve / Marc Therrien / ![]() 要旨: Uncontrolled activation of the rat sarcoma (RAS)-extracellular signal-regulated kinase (ERK) pathway drives tumor growth, often because of oncogenic BRAF mutations. BRAF regulation, involving ...Uncontrolled activation of the rat sarcoma (RAS)-extracellular signal-regulated kinase (ERK) pathway drives tumor growth, often because of oncogenic BRAF mutations. BRAF regulation, involving monomeric autoinhibition and activation by dimerization, has been intensely scrutinized, but mechanisms enabling oncogenic mutants to evade regulation remain unclear. By using cryo-electron microscopy, we solved the three-dimensional structures of the three oncogenic BRAF mutant classes, including the common V600E variant. These mutations disrupted wild-type BRAF's autoinhibited state, mediated by interactions between the cysteine-rich domain and kinase domain, thereby shifting the kinase domain into a preactivated conformation. This structural change likely results from helix αC displacement. PLX8394, a BRAF inhibitor that stabilizes helix αC in an inactive conformation, restored the autoinhibited conformation of oncogenic BRAF, explaining the properties of this class of compounds. | |||||||||
| 履歴 |
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構造の表示
| 添付画像 |
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ダウンロードとリンク
-EMDBアーカイブ
| マップデータ | emd_43677.map.gz | 59.7 MB | EMDBマップデータ形式 | |
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| ヘッダ (付随情報) | emd-43677-v30.xml emd-43677.xml | 21.1 KB 21.1 KB | 表示 表示 | EMDBヘッダ |
| FSC (解像度算出) | emd_43677_fsc.xml | 11.7 KB | 表示 | FSCデータファイル |
| 画像 | emd_43677.png | 119.6 KB | ||
| Filedesc metadata | emd-43677.cif.gz | 7.2 KB | ||
| その他 | emd_43677_half_map_1.map.gz emd_43677_half_map_2.map.gz | 59.3 MB 59.3 MB | ||
| アーカイブディレクトリ | http://ftp.pdbj.org/pub/emdb/structures/EMD-43677 ftp://ftp.pdbj.org/pub/emdb/structures/EMD-43677 | HTTPS FTP |
-検証レポート
| 文書・要旨 | emd_43677_validation.pdf.gz | 873.5 KB | 表示 | EMDB検証レポート |
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| 文書・詳細版 | emd_43677_full_validation.pdf.gz | 873.2 KB | 表示 | |
| XML形式データ | emd_43677_validation.xml.gz | 16 KB | 表示 | |
| CIF形式データ | emd_43677_validation.cif.gz | 21.3 KB | 表示 | |
| アーカイブディレクトリ | https://ftp.pdbj.org/pub/emdb/validation_reports/EMD-43677 ftp://ftp.pdbj.org/pub/emdb/validation_reports/EMD-43677 | HTTPS FTP |
-関連構造データ
| 関連構造データ | ![]() 8vysMC ![]() 8vyoC ![]() 8vypC ![]() 8vyqC ![]() 8vyrC ![]() 8vyuC ![]() 8vyvC ![]() 8vywC M: このマップから作成された原子モデル C: 同じ文献を引用 ( |
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| 類似構造データ | 類似検索 - 機能・相同性 F&H 検索 |
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リンク
| EMDBのページ | EMDB (EBI/PDBe) / EMDataResource |
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| 「今月の分子」の関連する項目 |
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マップ
| ファイル | ダウンロード / ファイル: emd_43677.map.gz / 形式: CCP4 / 大きさ: 64 MB / タイプ: IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES) | ||||||||||||||||||||||||||||||||||||
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| 投影像・断面図 | 画像のコントロール
画像は Spider により作成 | ||||||||||||||||||||||||||||||||||||
| ボクセルのサイズ | X=Y=Z: 0.852 Å | ||||||||||||||||||||||||||||||||||||
| 密度 |
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| 対称性 | 空間群: 1 | ||||||||||||||||||||||||||||||||||||
| 詳細 | EMDB XML:
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-添付データ
-ハーフマップ: #1
| ファイル | emd_43677_half_map_1.map | ||||||||||||
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| 投影像・断面図 |
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| 密度ヒストグラム |
-ハーフマップ: #2
| ファイル | emd_43677_half_map_2.map | ||||||||||||
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| 投影像・断面図 |
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| 密度ヒストグラム |
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試料の構成要素
-全体 : BRAF V600E - 14.3.3 complex bound to PLX8394
| 全体 | 名称: BRAF V600E - 14.3.3 complex bound to PLX8394 |
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| 要素 |
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-超分子 #1: BRAF V600E - 14.3.3 complex bound to PLX8394
| 超分子 | 名称: BRAF V600E - 14.3.3 complex bound to PLX8394 / タイプ: complex / ID: 1 / 親要素: 0 / 含まれる分子: #1-#2 詳細: BRAF complex purified by Flag affinity purification followed by TEV elution from FreeStyle 293F cells |
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| 由来(天然) | 生物種: Homo sapiens (ヒト) |
| 分子量 | 理論値: 141 KDa |
-分子 #1: Serine/threonine-protein kinase B-raf
| 分子 | 名称: Serine/threonine-protein kinase B-raf / タイプ: protein_or_peptide / ID: 1 / コピー数: 1 / 光学異性体: LEVO / EC番号: non-specific serine/threonine protein kinase |
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| 由来(天然) | 生物種: Homo sapiens (ヒト) / 細胞: FreeStyle 293-F cells |
| 分子量 | 理論値: 84.80075 KDa |
| 組換発現 | 生物種: Homo sapiens (ヒト) |
| 配列 | 文字列: GMAALSGGGG GGAEPGQALF NGDMEPEAGA GAGAAASSAA DPAIPEEVWN IKQMIKLTQE HIEALLDKFG GEHNPPSIYL EAYEEYTSK LDALQQREQQ LLESLGNGTD FSVSSSASMD TVTSSSSSSL SVLPSSLSVF QNPTDVARSN PKSPQKPIVR V FLPNKQRT ...文字列: GMAALSGGGG GGAEPGQALF NGDMEPEAGA GAGAAASSAA DPAIPEEVWN IKQMIKLTQE HIEALLDKFG GEHNPPSIYL EAYEEYTSK LDALQQREQQ LLESLGNGTD FSVSSSASMD TVTSSSSSSL SVLPSSLSVF QNPTDVARSN PKSPQKPIVR V FLPNKQRT VVPARCGVTV RDSLKKALMM RGLIPECCAV YRIQDGEKKP IGWDTDISWL TGEELHVEVL ENVPLTTHNF VR KTFFTLA FCDFCRKLLF QGFRCQTCGY KFHQRCSTEV PLMCVNYDQL DLLFVSKFFE HHPIPQEEAS LAETALTSGS SPS APASDS IGPQILTSPS PSKSIPIPQP FRPADEDHRN QFGQRDRSS(SEP) APNVHINTIE PVNIDDLIRD QGFRGDGGST TGLSATPPA SLPGSLTNVK ALQKSPGPQR ERKSSSSSED RNRMKTLGRR DSSDDWEIPD GQITVGQRIG SGSFGTVYKG K WHGDVAVK MLNVTAPTPQ QLQAFKNEVG VLRKTRHVNI LLFMGYSTKP QLAIVTQWCE GSSLYHHLHI IETKFEMKKL ID IARQTAQ GMDYLHAKSI IHRDLKSNNI FLHEDLTVKI GDFGLATEKS RWSGSHQFEQ LSGSILWMAP EVIRMQDKNP YSF QSDVYA FGIVLYELMT GQLPYSNINN RDQIIFMVGR GYLSPDLSKV RSNCPKAMKR LMAECLKKKR DERPLFPQIL ASIE LLARS LPKIHRSA(SEP)E PSLNRAGFQT EDFSLYACAS PKTPIQAGGY GAFPVH UniProtKB: Serine/threonine-protein kinase B-raf |
-分子 #2: 14-3-3 protein zeta/delta
| 分子 | 名称: 14-3-3 protein zeta/delta / タイプ: protein_or_peptide / ID: 2 / コピー数: 2 / 光学異性体: LEVO |
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| 由来(天然) | 生物種: Homo sapiens (ヒト) |
| 分子量 | 理論値: 27.645895 KDa |
| 配列 | 文字列: DKNELVQKAK LAEQAERYDD MAACMKSVTE QGAELSNEER NLLSVAYKNV VGARRSSWRV VSSIEQKTEG AEKKQQMARE YREKIETEL RDICNDVLSL LEKFLIPNAS QAESKVFYLK MKGDYYRYLA EVAAGDDKKG IVDQSQQAYQ EAFEISKKEM Q PTHPIRLG ...文字列: DKNELVQKAK LAEQAERYDD MAACMKSVTE QGAELSNEER NLLSVAYKNV VGARRSSWRV VSSIEQKTEG AEKKQQMARE YREKIETEL RDICNDVLSL LEKFLIPNAS QAESKVFYLK MKGDYYRYLA EVAAGDDKKG IVDQSQQAYQ EAFEISKKEM Q PTHPIRLG LALNFSVFYY EILNSPEKAC SLAKTAFDEA IAELDTLSEE SYKDSTLIMQ LLRDNLTLWT SDTQGDEAEA GE GGEN UniProtKB: 14-3-3 protein zeta/delta |
-分子 #3: (3S)-N-{3-[5-(2-cyclopropylpyrimidin-5-yl)-1H-pyrrolo[2,3-b]pyrid...
| 分子 | 名称: (3S)-N-{3-[5-(2-cyclopropylpyrimidin-5-yl)-1H-pyrrolo[2,3-b]pyridine-3-carbonyl]-2,4-difluorophenyl}-3-fluoropyrrolidine-1-sulfonamide タイプ: ligand / ID: 3 / コピー数: 1 / 式: A1AEN |
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| 分子量 | 理論値: 542.533 Da |
-実験情報
-構造解析
| 手法 | クライオ電子顕微鏡法 |
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解析 | 単粒子再構成法 |
| 試料の集合状態 | particle |
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試料調製
| 濃度 | 1 mg/mL | ||||||||||||||||||
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| 緩衝液 | pH: 7.5 構成要素:
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| 凍結 | 凍結剤: ETHANE / チャンバー内湿度: 80 % / 詳細: Chameleon system (SPT Labtech). |
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電子顕微鏡法
| 顕微鏡 | TFS KRIOS |
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| 撮影 | フィルム・検出器のモデル: GATAN K3 BIOQUANTUM (6k x 4k) 平均電子線量: 56.44 e/Å2 |
| 電子線 | 加速電圧: 300 kV / 電子線源: FIELD EMISSION GUN |
| 電子光学系 | 照射モード: FLOOD BEAM / 撮影モード: BRIGHT FIELD / 最大 デフォーカス(公称値): 1.5 µm / 最小 デフォーカス(公称値): 1.3 µm |
| 実験機器 | ![]() モデル: Titan Krios / 画像提供: FEI Company |
ムービー
コントローラー
万見について




キーワード
Homo sapiens (ヒト)
データ登録者
カナダ, 1件
引用


























Z (Sec.)
Y (Row.)
X (Col.)




































解析
FIELD EMISSION GUN


