- EMDB-33934: Cryo-EM structure of in vitro PHF fibril -
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基本情報
登録情報
データベース: EMDB / ID: EMD-33934
タイトル
Cryo-EM structure of in vitro PHF fibril
マップデータ
試料
細胞器官・細胞要素: Cryo-EM structure of in vitro PHF fibril
タンパク質・ペプチド: Isoform Tau-D of Microtubule-associated protein tau
キーワード
PROTEIN FIBRIL / amyloid
機能・相同性
機能・相同性情報
plus-end-directed organelle transport along microtubule / histone-dependent DNA binding / negative regulation of protein localization to mitochondrion / neurofibrillary tangle / microtubule lateral binding / axonal transport / tubulin complex / positive regulation of protein localization to synapse / phosphatidylinositol bisphosphate binding / generation of neurons ...plus-end-directed organelle transport along microtubule / histone-dependent DNA binding / negative regulation of protein localization to mitochondrion / neurofibrillary tangle / microtubule lateral binding / axonal transport / tubulin complex / positive regulation of protein localization to synapse / phosphatidylinositol bisphosphate binding / generation of neurons / rRNA metabolic process / axonal transport of mitochondrion / regulation of mitochondrial fission / axon development / regulation of microtubule-based movement / regulation of chromosome organization / intracellular distribution of mitochondria / central nervous system neuron development / minor groove of adenine-thymine-rich DNA binding / lipoprotein particle binding / microtubule polymerization / negative regulation of mitochondrial membrane potential / regulation of microtubule polymerization / dynactin binding / apolipoprotein binding / protein polymerization / main axon / axolemma / Caspase-mediated cleavage of cytoskeletal proteins / regulation of microtubule polymerization or depolymerization / negative regulation of mitochondrial fission / glial cell projection / neurofibrillary tangle assembly / positive regulation of axon extension / positive regulation of microtubule polymerization / regulation of cellular response to heat / Activation of AMPK downstream of NMDARs / positive regulation of protein localization / positive regulation of superoxide anion generation / cellular response to brain-derived neurotrophic factor stimulus / regulation of long-term synaptic depression / supramolecular fiber organization / cytoplasmic microtubule organization / regulation of calcium-mediated signaling / somatodendritic compartment / axon cytoplasm / synapse assembly / astrocyte activation / phosphatidylinositol binding / nuclear periphery / enzyme inhibitor activity / protein phosphatase 2A binding / stress granule assembly / regulation of microtubule cytoskeleton organization / regulation of autophagy / cellular response to reactive oxygen species / microglial cell activation / cellular response to nerve growth factor stimulus / Hsp90 protein binding / protein homooligomerization / SH3 domain binding / PKR-mediated signaling / regulation of synaptic plasticity / synapse organization / response to lead ion / microtubule cytoskeleton organization / memory / cytoplasmic ribonucleoprotein granule / neuron projection development / cell-cell signaling / single-stranded DNA binding / cellular response to heat / growth cone / protein-folding chaperone binding / microtubule cytoskeleton / actin binding / cell body / double-stranded DNA binding / microtubule binding / sequence-specific DNA binding / amyloid fibril formation / dendritic spine / microtubule / protein-macromolecule adaptor activity / learning or memory / neuron projection / membrane raft / negative regulation of gene expression / axon / neuronal cell body / DNA damage response / dendrite / protein kinase binding / enzyme binding / mitochondrion / DNA binding / RNA binding / extracellular region / identical protein binding / nucleus 類似検索 - 分子機能
Microtubule-associated protein Tau / Microtubule associated protein, tubulin-binding repeat / Tau and MAP protein, tubulin-binding repeat / Tau and MAP proteins tubulin-binding repeat signature. / Tau and MAP proteins tubulin-binding repeat profile. / : 類似検索 - ドメイン・相同性
ジャーナル: iScience / 年: 2022 タイトル: Subtle change of fibrillation condition leads to substantial alteration of recombinant Tau fibril structure. 著者: Xiang Li / Shenqing Zhang / Zhengtao Liu / Youqi Tao / Wencheng Xia / Yunpeng Sun / Cong Liu / Weidong Le / Bo Sun / Dan Li / 要旨: assembly of amyloid fibrils that recapitulate those in human brains is very useful for fundamental and applied research on the amyloid formation, pathology, and clinical detection. Recent success in ... assembly of amyloid fibrils that recapitulate those in human brains is very useful for fundamental and applied research on the amyloid formation, pathology, and clinical detection. Recent success in the assembly of Tau fibrils enables the recapitulation of the paired helical filament (PHF) of Tau extracted from brains of patients with Alzheimer's disease (AD). However, following the protocol, we observed that Tau constructs including 297-391 and a mixture of 266-391 (3R)/297-391, which are expected to predominantly form PHF-like fibrils, form highly heterogeneous fibrils instead. Moreover, the seemingly PHF-like fibril formed by Tau 297-391 exhibits a distinctive atomic structure with a spindle-like fold, that is neither PHF-like or similar to any known Tau fibril structures revealed by cryo-electron microscopy (cryo-EM). Our work highlights the high sensitivity of amyloid fibril formation to subtle conditional changes and suggests high-resolution structural characterization to assembled fibrils prior to further laboratory use.