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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 | USP1 bound to KSQ-4279 and ubiquitin conjugated to FANCD2 (focused refinement) | |||||||||
![]() | Globally sharpened map (B-factor 97.9) | |||||||||
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![]() | INHIBITOR / DEUBIQUITINASE / COMPLEX / ENZYME-SUBSTRATE / HYDROLASE | |||||||||
機能・相同性 | ![]() positive regulation of error-prone translesion synthesis / monoubiquitinated protein deubiquitination / protein deubiquitination / Maturation of protein E / Maturation of protein E / ER Quality Control Compartment (ERQC) / Myoclonic epilepsy of Lafora / FLT3 signaling by CBL mutants / Prevention of phagosomal-lysosomal fusion / IRAK2 mediated activation of TAK1 complex ...positive regulation of error-prone translesion synthesis / monoubiquitinated protein deubiquitination / protein deubiquitination / Maturation of protein E / Maturation of protein E / ER Quality Control Compartment (ERQC) / Myoclonic epilepsy of Lafora / FLT3 signaling by CBL mutants / Prevention of phagosomal-lysosomal fusion / IRAK2 mediated activation of TAK1 complex / Alpha-protein kinase 1 signaling pathway / Glycogen synthesis / IRAK1 recruits IKK complex / IRAK1 recruits IKK complex upon TLR7/8 or 9 stimulation / Membrane binding and targetting of GAG proteins / Endosomal Sorting Complex Required For Transport (ESCRT) / Regulation of TBK1, IKKε (IKBKE)-mediated activation of IRF3, IRF7 / Negative regulation of FLT3 / PTK6 Regulates RTKs and Their Effectors AKT1 and DOK1 / Regulation of TBK1, IKKε-mediated activation of IRF3, IRF7 upon TLR3 ligation / Constitutive Signaling by NOTCH1 HD Domain Mutants / IRAK2 mediated activation of TAK1 complex upon TLR7/8 or 9 stimulation / NOTCH2 Activation and Transmission of Signal to the Nucleus / TICAM1,TRAF6-dependent induction of TAK1 complex / TICAM1-dependent activation of IRF3/IRF7 / APC/C:Cdc20 mediated degradation of Cyclin B / Regulation of FZD by ubiquitination / Downregulation of ERBB4 signaling / p75NTR recruits signalling complexes / APC-Cdc20 mediated degradation of Nek2A / InlA-mediated entry of Listeria monocytogenes into host cells / Regulation of pyruvate metabolism / TRAF6-mediated induction of TAK1 complex within TLR4 complex / TRAF6 mediated IRF7 activation in TLR7/8 or 9 signaling / regulation of DNA repair / Regulation of innate immune responses to cytosolic DNA / response to UV / NF-kB is activated and signals survival / Downregulation of ERBB2:ERBB3 signaling / NRIF signals cell death from the nucleus / Pexophagy / VLDLR internalisation and degradation / Regulation of PTEN localization / Activated NOTCH1 Transmits Signal to the Nucleus / Regulation of BACH1 activity / MAP3K8 (TPL2)-dependent MAPK1/3 activation / Translesion synthesis by REV1 / Synthesis of active ubiquitin: roles of E1 and E2 enzymes / InlB-mediated entry of Listeria monocytogenes into host cell / Translesion synthesis by POLK / Activation of IRF3, IRF7 mediated by TBK1, IKKε (IKBKE) / Downregulation of TGF-beta receptor signaling / Josephin domain DUBs / TICAM1, RIP1-mediated IKK complex recruitment / JNK (c-Jun kinases) phosphorylation and activation mediated by activated human TAK1 / Translesion synthesis by POLI / Gap-filling DNA repair synthesis and ligation in GG-NER / IKK complex recruitment mediated by RIP1 / Regulation of activated PAK-2p34 by proteasome mediated degradation / TGF-beta receptor signaling in EMT (epithelial to mesenchymal transition) / TNFR1-induced NF-kappa-B signaling pathway / PINK1-PRKN Mediated Mitophagy / TCF dependent signaling in response to WNT / Autodegradation of Cdh1 by Cdh1:APC/C / N-glycan trimming in the ER and Calnexin/Calreticulin cycle / APC/C:Cdc20 mediated degradation of Securin / activated TAK1 mediates p38 MAPK activation / Regulation of NF-kappa B signaling / Asymmetric localization of PCP proteins / Ubiquitin-dependent degradation of Cyclin D / Regulation of signaling by CBL / NIK-->noncanonical NF-kB signaling / NOTCH3 Activation and Transmission of Signal to the Nucleus / SCF-beta-TrCP mediated degradation of Emi1 / Negative regulators of DDX58/IFIH1 signaling / Deactivation of the beta-catenin transactivating complex / TNFR2 non-canonical NF-kB pathway / Negative regulation of FGFR3 signaling / AUF1 (hnRNP D0) binds and destabilizes mRNA / Fanconi Anemia Pathway / Vpu mediated degradation of CD4 / Assembly of the pre-replicative complex / Ubiquitin-Mediated Degradation of Phosphorylated Cdc25A / Negative regulation of FGFR2 signaling / Degradation of DVL / Peroxisomal protein import / Negative regulation of FGFR4 signaling / Stabilization of p53 / Dectin-1 mediated noncanonical NF-kB signaling / Cdc20:Phospho-APC/C mediated degradation of Cyclin A / Negative regulation of FGFR1 signaling / EGFR downregulation / Downregulation of SMAD2/3:SMAD4 transcriptional activity / Termination of translesion DNA synthesis / Degradation of AXIN / Regulation of TNFR1 signaling / Hh mutants are degraded by ERAD / SMAD2/SMAD3:SMAD4 heterotrimer regulates transcription / Iron uptake and transport / Activation of NF-kappaB in B cells 類似検索 - 分子機能 | |||||||||
生物種 | ![]() | |||||||||
手法 | 単粒子再構成法 / クライオ電子顕微鏡法 / 解像度: 3.2 Å | |||||||||
![]() | Rennie ML / Gundogdu M / Walden H | |||||||||
資金援助 | ![]()
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![]() | ![]() タイトル: Structural and Biochemical Insights into the Mechanism of Action of the Clinical USP1 Inhibitor, KSQ-4279. 著者: Martin Luke Rennie / Mehmet Gundogdu / Connor Arkinson / Steven Liness / Sheelagh Frame / Helen Walden / ![]() 要旨: DNA damage triggers cell signaling cascades that mediate repair. This signaling is frequently dysregulated in cancers. The proteins that mediate this signaling are potential targets for therapeutic ...DNA damage triggers cell signaling cascades that mediate repair. This signaling is frequently dysregulated in cancers. The proteins that mediate this signaling are potential targets for therapeutic intervention. Ubiquitin-specific protease 1 (USP1) is one such target, with small-molecule inhibitors already in clinical trials. Here, we use biochemical assays and cryo-electron microscopy (cryo-EM) to study the clinical USP1 inhibitor, KSQ-4279 (RO7623066), and compare this to the well-established tool compound, ML323. We find that KSQ-4279 binds to the same cryptic site of USP1 as ML323 but disrupts the protein structure in subtly different ways. Inhibitor binding drives a substantial increase in thermal stability of USP1, which may be mediated through the inhibitors filling a hydrophobic tunnel-like pocket in USP1. Our results contribute to the understanding of the mechanism of action of USP1 inhibitors at the molecular level. | |||||||||
履歴 |
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構造の表示
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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 | ![]() | 203.8 MB | ![]() | |
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ヘッダ (付随情報) | ![]() ![]() | 21.6 KB 21.6 KB | 表示 表示 | ![]() |
FSC (解像度算出) | ![]() | 14.4 KB | 表示 | ![]() |
画像 | ![]() | 81.8 KB | ||
マスクデータ | ![]() ![]() ![]() | 27 MB 216 MB 216 MB | ![]() | |
Filedesc metadata | ![]() | 6.9 KB | ||
その他 | ![]() ![]() ![]() | 204 MB 200.6 MB 200.7 MB | ||
アーカイブディレクトリ | ![]() ![]() | HTTPS FTP |
-検証レポート
文書・要旨 | ![]() | 1.3 MB | 表示 | ![]() |
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文書・詳細版 | ![]() | 1.3 MB | 表示 | |
XML形式データ | ![]() | 21.6 KB | 表示 | |
CIF形式データ | ![]() | 28.1 KB | 表示 | |
アーカイブディレクトリ | ![]() ![]() | HTTPS FTP |
-関連構造データ
関連構造データ | ![]() 9fciMC ![]() 9fcjC 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 ![]() |
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リンク
EMDBのページ | ![]() ![]() |
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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 | ![]() | ||||||||||||||||||||||||||||||||||||
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注釈 | Globally sharpened map (B-factor 97.9) | ||||||||||||||||||||||||||||||||||||
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: 0.83 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
-マスク #1
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密度ヒストグラム |
-マスク #2
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密度ヒストグラム |
-マスク #3
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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 : USP1 BOUND TO KSQ-4279 AND UBIQUITIN CONJUGATED TO FANCD2
全体 | 名称: USP1 BOUND TO KSQ-4279 AND UBIQUITIN CONJUGATED TO FANCD2 |
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要素 |
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-超分子 #1: USP1 BOUND TO KSQ-4279 AND UBIQUITIN CONJUGATED TO FANCD2
超分子 | 名称: USP1 BOUND TO KSQ-4279 AND UBIQUITIN CONJUGATED TO FANCD2 タイプ: complex / ID: 1 / 親要素: 0 / 含まれる分子: #1-#2 |
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由来(天然) | 生物種: ![]() |
-分子 #1: Ubiquitin carboxyl-terminal hydrolase 1
分子 | 名称: Ubiquitin carboxyl-terminal hydrolase 1 / タイプ: protein_or_peptide / ID: 1 / コピー数: 1 / 光学異性体: LEVO / EC番号: ubiquitinyl hydrolase 1 |
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由来(天然) | 生物種: ![]() |
分子量 | 理論値: 88.390273 KDa |
組換発現 | 生物種: ![]() ![]() |
配列 | 文字列: GMPGVIPSES NGLSRGSPSK KNRLSLKFFQ KKETKRALDF TDSQENEEKA SEYRASEIDQ VVPAAQSSPI NCEKRENLLP FVGLNNLGN TSYLNSILQV LYFCPGFKSG VKHLFNIISR KKEALKDEAN QKDKGNCKED SLASYELICS LQSLIISVEQ L QASFLLNP ...文字列: GMPGVIPSES NGLSRGSPSK KNRLSLKFFQ KKETKRALDF TDSQENEEKA SEYRASEIDQ VVPAAQSSPI NCEKRENLLP FVGLNNLGN TSYLNSILQV LYFCPGFKSG VKHLFNIISR KKEALKDEAN QKDKGNCKED SLASYELICS LQSLIISVEQ L QASFLLNP EKYTDELATQ PRRLLNTLRE LNPMYEGYLQ HDAQEVLQCI LGNIQETCQL LKKEEVKNVA ELPTKVEEIP HP KEEMNGI NSIEMDSMRH SEDFKEKLPK GNGKRKSDTE FGNMKKKVKL SKEHQSLEEN QRQTRSKRKA TSDTLESPPK IIP KYISEN ESPRPSQKKS RVKINWLKSA TKQPSILSKF CSLGKITTNQ GVKGQSKENE CDPEEDLGKC ESDNTTNGCG LESP GNTVT PVNVNEVKPI NKGEEQIGFE LVEKLFQGQL VLRTRCLECE SLTERREDFQ DISVPVQEDE LSKVEESSEI SPEPK TEMK TLRWAISQFA SVERIVGEDK YFCENCHHYT EAERSLLFDK MPEVITIHLK CFAASGLEFD CYGGGLSKIN TPLLTP LKL SLEEWSTKPT NDSYGLFAVV MHSGITISSG HYTASVKVTD LNSLELDKGN FVVDQMCEIG KPEPLNEEEA RGVVENY ND EEVSIRVGGN TQPSKVLNKK NVEAIGLLAA QKSKADYELY NKASNPDKVA STAFAENRNS ETSDTTGTHE SDRNKESS D QTGINISGFE NKISYVVQSL KEYEGKWLLF DDSEVKVTEE KDFLNSLSPS TSPTSTPYLL FYKKL UniProtKB: Ubiquitin carboxyl-terminal hydrolase 1 |
-分子 #2: Polyubiquitin-C
分子 | 名称: Polyubiquitin-C / タイプ: protein_or_peptide / ID: 2 / コピー数: 1 / 光学異性体: LEVO |
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由来(天然) | 生物種: ![]() |
分子量 | 理論値: 8.875125 KDa |
組換発現 | 生物種: ![]() ![]() |
配列 | 文字列: GPGSMQIFVK TLTGKTITLE VEPSDTIENV KAKIQDKEGI PPDQQRLIFA GKQLEDGRTL SDYNIQKEST LHLVLRLRGG UniProtKB: Polyubiquitin-C |
-分子 #3: ZINC ION
分子 | 名称: ZINC ION / タイプ: ligand / ID: 3 / コピー数: 1 / 式: ZN |
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分子量 | 理論値: 65.409 Da |
-分子 #4: 6-(4-cyclopropyl-6-methoxy-pyrimidin-5-yl)-1-[[4-[1-propan-2-yl-4...
分子 | 名称: 6-(4-cyclopropyl-6-methoxy-pyrimidin-5-yl)-1-[[4-[1-propan-2-yl-4-(trifluoromethyl)imidazol-2-yl]phenyl]methyl]pyrazolo[3,4-d]pyrimidine タイプ: ligand / ID: 4 / コピー数: 1 / 式: A1IB8 |
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分子量 | 理論値: 534.536 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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![]() | 単粒子再構成法 |
試料の集合状態 | particle |
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試料調製
緩衝液 | pH: 8 構成要素:
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グリッド | モデル: UltrAuFoil R1.2/1.3 / メッシュ: 300 / 前処理 - タイプ: GLOW DISCHARGE / 前処理 - 時間: 60 sec. | |||||||||||||||
凍結 | 凍結剤: ETHANE / チャンバー内湿度: 95 % / チャンバー内温度: 288 K / 装置: FEI VITROBOT MARK IV | |||||||||||||||
詳細 | 9.6 uM USP1-UAF1, 1.9 uM FANCI-FANCD2Ub, 2.3 uM dsDNA, 18.8 uM ML323 |
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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: 60.0 e/Å2 |
電子線 | 加速電圧: 300 kV / 電子線源: ![]() |
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): 2.0 µm / 最小 デフォーカス(公称値): 0.5 µm / 倍率(公称値): 105000 |
実験機器 | ![]() モデル: Titan Krios / 画像提供: FEI Company |