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基本情報
登録情報 | データベース: PDB / ID: 9v0u | ||||||
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タイトル | GPR133-Gain-miniG13 complex | ||||||
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![]() | MEMBRANE PROTEIN / GPCR / G12/G13 / Complex / Stachel | ||||||
機能・相同性 | ![]() D5 dopamine receptor binding / regulation of skeletal muscle contraction / regulation of fibroblast migration / Rho-activating G protein-coupled receptor signaling pathway / regulation of small GTPase mediated signal transduction / NRAGE signals death through JNK / branching involved in blood vessel morphogenesis / CDC42 GTPase cycle / regulation of postsynapse assembly / Rho protein signal transduction ...D5 dopamine receptor binding / regulation of skeletal muscle contraction / regulation of fibroblast migration / Rho-activating G protein-coupled receptor signaling pathway / regulation of small GTPase mediated signal transduction / NRAGE signals death through JNK / branching involved in blood vessel morphogenesis / CDC42 GTPase cycle / regulation of postsynapse assembly / Rho protein signal transduction / RAC1 GTPase cycle / guanyl-nucleotide exchange factor activity / brush border membrane / G protein-coupled receptor activity / platelet activation / regulation of blood pressure / adenylate cyclase-modulating G protein-coupled receptor signaling pathway / G-protein beta/gamma-subunit complex binding / Olfactory Signaling Pathway / Activation of the phototransduction cascade / G beta:gamma signalling through PLC beta / Presynaptic function of Kainate receptors / Thromboxane signalling through TP receptor / G protein-coupled acetylcholine receptor signaling pathway / G-protein activation / Activation of G protein gated Potassium channels / Inhibition of voltage gated Ca2+ channels via Gbeta/gamma subunits / adenylate cyclase-activating G protein-coupled receptor signaling pathway / Prostacyclin signalling through prostacyclin receptor / G beta:gamma signalling through CDC42 / Glucagon signaling in metabolic regulation / G beta:gamma signalling through BTK / Synthesis, secretion, and inactivation of Glucagon-like Peptide-1 (GLP-1) / ADP signalling through P2Y purinoceptor 12 / Sensory perception of sweet, bitter, and umami (glutamate) taste / photoreceptor disc membrane / Glucagon-type ligand receptors / Adrenaline,noradrenaline inhibits insulin secretion / Vasopressin regulates renal water homeostasis via Aquaporins / G alpha (z) signalling events / Glucagon-like Peptide-1 (GLP1) regulates insulin secretion / ADP signalling through P2Y purinoceptor 1 / cellular response to catecholamine stimulus / ADORA2B mediated anti-inflammatory cytokines production / G beta:gamma signalling through PI3Kgamma / Cooperation of PDCL (PhLP1) and TRiC/CCT in G-protein beta folding / adenylate cyclase-activating dopamine receptor signaling pathway / melanosome / GPER1 signaling / Inactivation, recovery and regulation of the phototransduction cascade / cellular response to prostaglandin E stimulus / G-protein beta-subunit binding / heterotrimeric G-protein complex / G alpha (12/13) signalling events / sensory perception of taste / extracellular vesicle / regulation of cell shape / signaling receptor complex adaptor activity / Thrombin signalling through proteinase activated receptors (PARs) / retina development in camera-type eye / G protein activity / GTPase binding / Ca2+ pathway / fibroblast proliferation / High laminar flow shear stress activates signaling by PIEZO1 and PECAM1:CDH5:KDR in endothelial cells / G alpha (i) signalling events / G alpha (s) signalling events / phospholipase C-activating G protein-coupled receptor signaling pathway / G alpha (q) signalling events / in utero embryonic development / Ras protein signal transduction / cell differentiation / Extra-nuclear estrogen signaling / cell surface receptor signaling pathway / cell population proliferation / postsynapse / nuclear speck / G protein-coupled receptor signaling pathway / lysosomal membrane / focal adhesion / GTPase activity / synapse / GTP binding / protein-containing complex binding / signal transduction / extracellular exosome / nucleoplasm / metal ion binding / nucleus / membrane / plasma membrane / cytosol / cytoplasm 類似検索 - 分子機能 | ||||||
生物種 | ![]() | ||||||
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: 3.51 Å | ||||||
![]() | Xi, Y. / Pu, X. / Ping, Y. | ||||||
資金援助 | ![]()
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![]() | ![]() タイトル: Cryo-EM structural elucidation and molecular mechanism of the GPR133-G13 signaling complex. 著者: Xuanyu Pu / Yue-Tong Xi / Meng-Xin Wang / Daolai Zhang / Yu-Qi Ping / Peng Xiao / Jin-Peng Sun / ![]() 要旨: GPR133 is an adhesion-class G protein-coupled receptor (GPCR) that has recently been de-orphanized. Its functions are complex and multifaceted. While GPR133 is primarily recognized for coupling with ...GPR133 is an adhesion-class G protein-coupled receptor (GPCR) that has recently been de-orphanized. Its functions are complex and multifaceted. While GPR133 is primarily recognized for coupling with the Gs subunit to mediate elevated intracellular cAMP levels, its potential engagement with alternative signaling pathways remains poorly characterized. In our experiments, we demonstrated that GPR133 exhibits constitutive self-activation via its Stachel sequence as an adhesion GPCR, enabling activation of downstream G13 signaling. We reconstituted the GPR133-GAIN-miniGα13 complex in vitro and resolved its cryo-electron microscopy structure at a resolution of 3.51 Å. Detailed structural comparisons between the GPR133-GAIN-miniGα13 complex and the previously resolved GPR133-CTF-Gs structure highlighted both conserved and different features. These findings provide critical insights into the signal transduction mechanisms of GPR133 and lay a foundation for targeted therapeutic strategies. | ||||||
履歴 |
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構造の表示
構造ビューア | 分子: ![]() ![]() |
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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 | ![]() | 166.1 KB | 表示 | ![]() |
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PDB形式 | ![]() | 118.1 KB | 表示 | ![]() |
PDBx/mmJSON形式 | ![]() | ツリー表示 | ![]() | |
その他 | ![]() |
-検証レポート
文書・要旨 | ![]() | 1.2 MB | 表示 | ![]() |
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文書・詳細版 | ![]() | 1.2 MB | 表示 | |
XML形式データ | ![]() | 34.6 KB | 表示 | |
CIF形式データ | ![]() | 51.4 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 | ![]() 64672MC 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 | 類似検索 - 機能・相同性 ![]() |
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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
#1: タンパク質 | 分子量: 65688.828 Da / 分子数: 1 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: Q6QNK2 |
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#2: タンパク質 | 分子量: 26705.596 Da / 分子数: 1 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: Q14344 |
#3: タンパク質 | 分子量: 7861.143 Da / 分子数: 1 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: P59768 |
#4: タンパク質 | 分子量: 37784.301 Da / 分子数: 1 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: P62873 |
Has protein modification | Y |
-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: GPR133-Gain-miniG13-Gbeta1-Ggamma2 complex / タイプ: COMPLEX / Entity ID: all / 由来: RECOMBINANT |
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由来(天然) | 生物種: ![]() |
由来(組換発現) | 生物種: ![]() ![]() |
緩衝液 | pH: 7.4 |
試料 | 包埋: NO / シャドウイング: NO / 染色: NO / 凍結: YES |
急速凍結 | 凍結剤: ETHANE |
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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: TFS KRIOS |
電子銃 | 電子線源: ![]() |
電子レンズ | モード: BRIGHT FIELD / 最大 デフォーカス(公称値): 2000 nm / 最小 デフォーカス(公称値): 1000 nm |
撮影 | 電子線照射量: 60 e/Å2 フィルム・検出器のモデル: FEI FALCON IV (4k x 4k) |
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解析
CTF補正 | タイプ: PHASE FLIPPING ONLY | ||||||||||||||||||||||||
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3次元再構成 | 解像度: 3.51 Å / 解像度の算出法: FSC 0.143 CUT-OFF / 粒子像の数: 45759 / 対称性のタイプ: POINT | ||||||||||||||||||||||||
精密化 | 交差検証法: NONE 立体化学のターゲット値: GeoStd + Monomer Library + CDL v1.2 | ||||||||||||||||||||||||
原子変位パラメータ | Biso mean: 74.64 Å2 | ||||||||||||||||||||||||
拘束条件 |
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