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基本情報
登録情報 | データベース: PDB / ID: 8pqw | ||||||||||||
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タイトル | Cytoplasmic dynein-1 motor domain bound to dynactin-p150glued and LIS1 | ||||||||||||
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![]() | MOTOR PROTEIN / Dynein / AAA-Atpase / p150 / LIS1 | ||||||||||||
機能・相同性 | ![]() corpus callosum morphogenesis / microtubule cytoskeleton organization involved in establishment of planar polarity / ameboidal-type cell migration / establishment of planar polarity of embryonic epithelium / 1-alkyl-2-acetylglycerophosphocholine esterase complex / interneuron migration / centriolar subdistal appendage / maintenance of centrosome location / positive regulation of neuromuscular junction development / Regulation of PLK1 Activity at G2/M Transition ...corpus callosum morphogenesis / microtubule cytoskeleton organization involved in establishment of planar polarity / ameboidal-type cell migration / establishment of planar polarity of embryonic epithelium / 1-alkyl-2-acetylglycerophosphocholine esterase complex / interneuron migration / centriolar subdistal appendage / maintenance of centrosome location / positive regulation of neuromuscular junction development / Regulation of PLK1 Activity at G2/M Transition / Loss of Nlp from mitotic centrosomes / Loss of proteins required for interphase microtubule organization from the centrosome / Anchoring of the basal body to the plasma membrane / AURKA Activation by TPX2 / centriole-centriole cohesion / Recruitment of mitotic centrosome proteins and complexes / platelet activating factor metabolic process / transport along microtubule / radial glia-guided pyramidal neuron migration / acrosome assembly / microtubule anchoring at centrosome / cerebral cortex neuron differentiation / central region of growth cone / establishment of centrosome localization / microtubule sliding / positive regulation of embryonic development / dynein light chain binding / dynein heavy chain binding / ventral spinal cord development / positive regulation of cytokine-mediated signaling pathway / microtubule organizing center organization / layer formation in cerebral cortex / melanosome transport / retromer complex / auditory receptor cell development / nuclear membrane disassembly / astral microtubule / microtubule plus-end / positive regulation of intracellular transport / cortical microtubule organization / positive regulation of dendritic spine morphogenesis / regulation of metaphase plate congression / positive regulation of microtubule nucleation / vesicle transport along microtubule / establishment of spindle localization / myeloid leukocyte migration / reelin-mediated signaling pathway / positive regulation of spindle assembly / stereocilium / osteoclast development / microtubule plus-end binding / non-motile cilium assembly / stem cell division / brain morphogenesis / negative regulation of JNK cascade / dynein complex / retrograde transport, endosome to Golgi / COPI-independent Golgi-to-ER retrograde traffic / retrograde axonal transport / kinesin complex / P-body assembly / minus-end-directed microtubule motor activity / HSP90 chaperone cycle for steroid hormone receptors (SHR) in the presence of ligand / MHC class II antigen presentation / Recruitment of NuMA to mitotic centrosomes / dynein light intermediate chain binding / microtubule motor activity / cytoplasmic dynein complex / microtubule associated complex / COPI-mediated anterograde transport / motile cilium / dynein intermediate chain binding / motor behavior / nuclear migration / microtubule-based movement / neuromuscular process / neuromuscular junction development / cochlea development / dynein complex binding / transmission of nerve impulse / cell leading edge / phospholipase binding / germ cell development / establishment of mitotic spindle orientation / dynactin binding / neuromuscular process controlling balance / protein secretion / neuroblast proliferation / positive regulation of axon extension / microtubule-based process / intercellular bridge / cytoplasmic microtubule / lipid catabolic process / COPI-mediated anterograde transport / Amplification of signal from unattached kinetochores via a MAD2 inhibitory signal / JNK cascade / cytoplasmic microtubule organization / axon cytoplasm / Mitotic Prometaphase / EML4 and NUDC in mitotic spindle formation 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: 4.2 Å | ||||||||||||
![]() | Singh, K. / Lau, C.K. / Manigrasso, G. / Gassmann, R. / Carter, A.P. | ||||||||||||
資金援助 | ![]()
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![]() | ![]() タイトル: Molecular mechanism of dynein-dynactin complex assembly by LIS1. 著者: Kashish Singh / Clinton K Lau / Giulia Manigrasso / José B Gama / Reto Gassmann / Andrew P Carter / ![]() ![]() 要旨: Cytoplasmic dynein is a microtubule motor vital for cellular organization and division. It functions as a ~4-megadalton complex containing its cofactor dynactin and a cargo-specific coiled-coil ...Cytoplasmic dynein is a microtubule motor vital for cellular organization and division. It functions as a ~4-megadalton complex containing its cofactor dynactin and a cargo-specific coiled-coil adaptor. However, how dynein and dynactin recognize diverse adaptors, how they interact with each other during complex formation, and the role of critical regulators such as lissencephaly-1 (LIS1) protein (LIS1) remain unclear. In this study, we determined the cryo-electron microscopy structure of dynein-dynactin on microtubules with LIS1 and the lysosomal adaptor JIP3. This structure reveals the molecular basis of interactions occurring during dynein activation. We show how JIP3 activates dynein despite its atypical architecture. Unexpectedly, LIS1 binds dynactin's p150 subunit, tethering it along the length of dynein. Our data suggest that LIS1 and p150 constrain dynein-dynactin to ensure efficient complex formation. | ||||||||||||
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構造の表示
構造ビューア | 分子: ![]() ![]() |
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PDBx/mmCIF形式 | ![]() | 801.6 KB | 表示 | ![]() |
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PDB形式 | ![]() | 578.8 KB | 表示 | ![]() |
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その他 | ![]() |
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アーカイブディレクトリ | ![]() ![]() | HTTPS FTP |
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-関連構造データ
関連構造データ | ![]() 17826MC ![]() 8pqvC ![]() 8pqyC ![]() 8pqzC ![]() 8pr0C ![]() 8pr1C ![]() 8pr2C ![]() 8pr3C ![]() 8pr4C ![]() 8pr5C ![]() 8ptkC 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
-Cytoplasmic dynein 1 ... , 2種, 3分子 AHI
#1: タンパク質 | 分子量: 533055.125 Da / 分子数: 1 / 変異: R1567E, K1610E / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 遺伝子: DYNC1H1, DHC1, DNCH1, DNCL, DNECL, DYHC, KIAA0325 発現宿主: ![]() ![]() 参照: UniProt: Q14204 |
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#4: タンパク質 | 分子量: 68442.141 Da / 分子数: 2 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: Q13409 |
-タンパク質 , 2種, 6分子 BCDEFG
#2: タンパク質 | 分子量: 46709.984 Da / 分子数: 4 / 由来タイプ: 組換発現 / 由来: (組換発現) ![]() 発現宿主: ![]() ![]() 参照: UniProt: P43034 #3: タンパク質 | 分子量: 142015.484 Da / 分子数: 2 / 由来タイプ: 天然 / 由来: (天然) ![]() ![]() |
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-非ポリマー , 3種, 6分子 




#5: 化合物 | #6: 化合物 | #7: 化合物 | ChemComp-ATP / | |
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-詳細
研究の焦点であるリガンドがあるか | Y |
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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: Cytoplasmic dynein-1 bound to dynactin p150 and LIS1 タイプ: COMPLEX / Entity ID: #1-#4 / 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: 7.2 |
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: FEI TITAN 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): 4000 nm / 最小 デフォーカス(公称値): 500 nm |
撮影 | 電子線照射量: 53 e/Å2 フィルム・検出器のモデル: GATAN K3 BIOQUANTUM (6k x 4k) |
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解析
EMソフトウェア | 名称: PHENIX / バージョン: 1.20_4459: / カテゴリ: モデル精密化 | ||||||||||||||||||||||||
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CTF補正 | タイプ: PHASE FLIPPING AND AMPLITUDE CORRECTION | ||||||||||||||||||||||||
3次元再構成 | 解像度: 4.2 Å / 解像度の算出法: FSC 0.143 CUT-OFF / 粒子像の数: 90594 / 対称性のタイプ: POINT | ||||||||||||||||||||||||
原子モデル構築 | PDB-ID: 7Z8G Accession code: 7Z8G / Source name: PDB / タイプ: experimental model | ||||||||||||||||||||||||
拘束条件 |
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