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データを開く
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基本情報
| 登録情報 | データベース: PDB / ID: 7krj | ||||||
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| タイトル | The GR-Maturation Complex: Glucocorticoid Receptor in complex with Hsp90 and co-chaperone p23 | ||||||
要素 |
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キーワード | CHAPERONE / ligand binding / ATP binding / protein folding / cryo-EM | ||||||
| 機能・相同性 | 機能・相同性情報prostaglandin-E synthase / prostaglandin-E synthase activity / Regulation of NPAS4 gene transcription / regulation of glucocorticoid biosynthetic process / nuclear glucocorticoid receptor activity / Aryl hydrocarbon receptor signalling / telomerase activity / steroid hormone binding / prostanoid biosynthetic process / PTK6 Expression ...prostaglandin-E synthase / prostaglandin-E synthase activity / Regulation of NPAS4 gene transcription / regulation of glucocorticoid biosynthetic process / nuclear glucocorticoid receptor activity / Aryl hydrocarbon receptor signalling / telomerase activity / steroid hormone binding / prostanoid biosynthetic process / PTK6 Expression / glucocorticoid metabolic process / neuroinflammatory response / response to cortisol / Synthesis of Prostaglandins (PG) and Thromboxanes (TX) / mammary gland duct morphogenesis / microglia differentiation / astrocyte differentiation / maternal behavior / prostaglandin biosynthetic process / telomerase holoenzyme complex / regulation of gluconeogenesis / adrenal gland development / cellular response to glucocorticoid stimulus / sperm mitochondrial sheath / sulfonylurea receptor binding / CTP binding / positive regulation of protein polymerization / Scavenging by Class F Receptors / vRNP Assembly / UTP binding / dATP binding / cellular response to steroid hormone stimulus / chaperone-mediated autophagy / sperm plasma membrane / Respiratory syncytial virus genome replication / Rho GDP-dissociation inhibitor binding / telomerase holoenzyme complex assembly / mitochondrial transport / Uptake and function of diphtheria toxin / Drug-mediated inhibition of ERBB2 signaling / Resistance of ERBB2 KD mutants to trastuzumab / Resistance of ERBB2 KD mutants to sapitinib / Resistance of ERBB2 KD mutants to tesevatinib / Resistance of ERBB2 KD mutants to neratinib / Resistance of ERBB2 KD mutants to osimertinib / Resistance of ERBB2 KD mutants to afatinib / Resistance of ERBB2 KD mutants to AEE788 / Resistance of ERBB2 KD mutants to lapatinib / Drug resistance in ERBB2 TMD/JMD mutants / protein import into mitochondrial matrix / TPR domain binding / dendritic growth cone / PIWI-interacting RNA (piRNA) biogenesis / Assembly and release of respiratory syncytial virus (RSV) virions / non-chaperonin molecular chaperone ATPase / motor behavior / nuclear receptor-mediated steroid hormone signaling pathway / protein unfolding / Sema3A PAK dependent Axon repulsion / regulation of protein ubiquitination / estrogen response element binding / HSF1-dependent transactivation / positive regulation of cell size / protein folding chaperone complex / cellular response to dexamethasone stimulus / response to unfolded protein / regulation of protein-containing complex assembly / enzyme-substrate adaptor activity / FOXO-mediated transcription of oxidative stress, metabolic and neuronal genes / HSF1 activation / Attenuation phase / cellular response to transforming growth factor beta stimulus / neurofibrillary tangle assembly / chaperone-mediated protein complex assembly / RHOBTB2 GTPase cycle / telomere maintenance via telomerase / axonal growth cone / regulation of postsynaptic membrane neurotransmitter receptor levels / core promoter sequence-specific DNA binding / positive regulation of lamellipodium assembly / nitric oxide metabolic process / skeletal muscle contraction / steroid binding / positive regulation of defense response to virus by host / response to salt stress / eNOS activation / Signaling by ERBB2 / cardiac muscle cell apoptotic process / Tetrahydrobiopterin (BH4) synthesis, recycling, salvage and regulation / positive regulation of telomere maintenance via telomerase / DNA polymerase binding / endocytic vesicle lumen / positive regulation of cardiac muscle contraction / Loss of Nlp from mitotic centrosomes / Loss of proteins required for interphase microtubule organization from the centrosome / Recruitment of mitotic centrosome proteins and complexes / activation of innate immune response / Recruitment of NuMA to mitotic centrosomes / lysosomal lumen / Anchoring of the basal body to the plasma membrane 類似検索 - 分子機能 | ||||||
| 生物種 | Homo sapiens (ヒト) | ||||||
| 手法 | 電子顕微鏡法 / 単粒子再構成法 / クライオ電子顕微鏡法 / 解像度: 2.56 Å | ||||||
データ登録者 | Noddings, C.M. / Wang, Y.-R. / Agard, D.A. | ||||||
| 資金援助 | 米国, 1件
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引用 | ジャーナル: Nature / 年: 2022タイトル: Structure of Hsp90-p23-GR reveals the Hsp90 client-remodelling mechanism. 著者: Chari M Noddings / Ray Yu-Ruei Wang / Jill L Johnson / David A Agard / ![]() 要旨: Hsp90 is a conserved and essential molecular chaperone responsible for the folding and activation of hundreds of 'client' proteins. The glucocorticoid receptor (GR) is a model client that constantly ...Hsp90 is a conserved and essential molecular chaperone responsible for the folding and activation of hundreds of 'client' proteins. The glucocorticoid receptor (GR) is a model client that constantly depends on Hsp90 for activity. GR ligand binding was previously shown to nr inhibited by Hsp70 and restored by Hsp90, aided by the co-chaperone p23. However, a molecular understanding of the chaperone-mediated remodelling that occurs between the inactive Hsp70-Hsp90 'client-loading complex' and an activated Hsp90-p23 'client-maturation complex' is lacking for any client, including GR. Here we present a cryo-electron microscopy (cryo-EM) structure of the human GR-maturation complex (GR-Hsp90-p23), revealing that the GR ligand-binding domain is restored to a folded, ligand-bound conformation, while being simultaneously threaded through the Hsp90 lumen. In addition, p23 directly stabilizes native GR using a C-terminal helix, resulting in enhanced ligand binding. This structure of a client bound to Hsp90 in a native conformation contrasts sharply with the unfolded kinase-Hsp90 structure. Thus, aided by direct co-chaperone-client interactions, Hsp90 can directly dictate client-specific folding outcomes. Together with the GR-loading complex structure, we present the molecular mechanism of chaperone-mediated GR remodelling, establishing the first, to our knowledge, complete chaperone cycle for any Hsp90 client. | ||||||
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構造の表示
| ムービー |
ムービービューア |
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| 構造ビューア | 分子: Molmil Jmol/JSmol |
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ダウンロードとリンク
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ダウンロード
| PDBx/mmCIF形式 | 7krj.cif.gz | 630.5 KB | 表示 | PDBx/mmCIF形式 |
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| PDB形式 | pdb7krj.ent.gz | 522.1 KB | 表示 | PDB形式 |
| PDBx/mmJSON形式 | 7krj.json.gz | ツリー表示 | PDBx/mmJSON形式 | |
| その他 | その他のダウンロード |
-検証レポート
| アーカイブディレクトリ | https://data.pdbj.org/pub/pdb/validation_reports/kr/7krj ftp://data.pdbj.org/pub/pdb/validation_reports/kr/7krj | HTTPS FTP |
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-関連構造データ
| 関連構造データ | ![]() 23004MC M: このデータのモデリングに利用したマップデータ C: 同じ文献を引用 ( |
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| 類似構造データ | |
| 電子顕微鏡画像生データ | EMPIAR-11028 (タイトル: Cryo-EM Structures of Glucocorticoid Receptor-Hsp90-p23 [the GR Maturation Complex], Hsp90-p23, and MBP-Hsp90-p23Data size: 494.1 Data #1: MotionCor2 aligned frames of GR-Hsp90-p23 collected on Gatan K3 [micrographs - single frame] Data #2: Processed subsets [picked particles - single frame - processed]) |
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リンク
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集合体
| 登録構造単位 | ![]()
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要素
-タンパク質 , 3種, 4分子 ABCD
| #1: タンパク質 | 分子量: 84781.727 Da / 分子数: 2 / 由来タイプ: 組換発現 / 由来: (組換発現) Homo sapiens (ヒト) / 遺伝子: HSP90AA1, HSP90A, HSPC1, HSPCA / 発現宿主: ![]() #2: タンパク質 | | 分子量: 18720.395 Da / 分子数: 1 / 由来タイプ: 組換発現 / 由来: (組換発現) Homo sapiens (ヒト) / 遺伝子: PTGES3, P23, TEBP / 発現宿主: ![]() #3: タンパク質 | | 分子量: 29924.867 Da / 分子数: 1 / Mutation: F602S / 由来タイプ: 組換発現 / 由来: (組換発現) Homo sapiens (ヒト) / 遺伝子: NR3C1, GRL / 発現宿主: ![]() |
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-非ポリマー , 3種, 5分子 




| #4: 化合物 | | #5: 化合物 | #6: 化合物 | ChemComp-DEX / | |
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-詳細
| 研究の焦点であるリガンドがあるか | N |
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-実験情報
-実験
| 実験 | 手法: 電子顕微鏡法 |
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| EM実験 | 試料の集合状態: PARTICLE / 3次元再構成法: 単粒子再構成法 |
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試料調製
| 構成要素 | 名称: Complex of the Glucocorticoid Receptor ligand binding domain, Hsp90 alpha dimer, and the co-chaperone p23 タイプ: COMPLEX / Entity ID: #1-#3 / 由来: RECOMBINANT |
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| 分子量 | 値: 0.263 MDa / 実験値: NO |
| 由来(天然) | 生物種: Homo sapiens (ヒト) |
| 由来(組換発現) | 生物種: ![]() |
| 緩衝液 | pH: 7.5 |
| 試料 | 包埋: NO / シャドウイング: NO / 染色: NO / 凍結: YES |
| 試料支持 | グリッドの材料: COPPER / グリッドのサイズ: 400 divisions/in. / グリッドのタイプ: Quantifoil R1.2/1.3 |
| 急速凍結 | 装置: FEI VITROBOT MARK IV / 凍結剤: ETHANE / 湿度: 100 % / 凍結前の試料温度: 283 K |
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電子顕微鏡撮影
| 実験機器 | ![]() モデル: Titan Krios / 画像提供: FEI Company |
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| 顕微鏡 | モデル: FEI TITAN KRIOS |
| 電子銃 | 電子線源: FIELD EMISSION GUN / 加速電圧: 300 kV / 照射モード: FLOOD BEAM |
| 電子レンズ | モード: BRIGHT FIELD / 倍率(公称値): 105000 X / 最大 デフォーカス(公称値): 2000 nm / 最小 デフォーカス(公称値): 800 nm / Cs: 2.7 mm / アライメント法: COMA FREE |
| 試料ホルダ | 凍結剤: NITROGEN 試料ホルダーモデル: FEI TITAN KRIOS AUTOGRID HOLDER |
| 撮影 | 平均露光時間: 5.9 sec. / 電子線照射量: 60 e/Å2 フィルム・検出器のモデル: GATAN K3 BIOQUANTUM (6k x 4k) 実像数: 5608 |
| 電子光学装置 | エネルギーフィルター名称: GIF Bioquantum / エネルギーフィルタースリット幅: 20 eV |
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解析
| EMソフトウェア |
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| CTF補正 | タイプ: PHASE FLIPPING AND AMPLITUDE CORRECTION | ||||||||||||||||||||||||||||||||
| 粒子像の選択 | 選択した粒子像数: 6062152 | ||||||||||||||||||||||||||||||||
| 対称性 | 点対称性: C1 (非対称) | ||||||||||||||||||||||||||||||||
| 3次元再構成 | 解像度: 2.56 Å / 解像度の算出法: FSC 0.143 CUT-OFF / 粒子像の数: 140217 / 対称性のタイプ: POINT | ||||||||||||||||||||||||||||||||
| 原子モデル構築 | 3D fitting-ID: 1 / Source name: PDB / タイプ: experimental model
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万見について




Homo sapiens (ヒト)
米国, 1件
引用
UCSF Chimera











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