scholarly article | Q13442814 |
P356 | DOI | 10.1016/S1097-2765(01)00165-4 |
P2093 | author name string | Virgil Muresan | |
Jon S Morrow | |||
Walter Steffen | |||
Michael C Stankewich | |||
Bruce J Schnapp | |||
Erika L.F Holzbaur | |||
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A dynactin subunit with a highly conserved cysteine-rich motif interacts directly with Arp1 | Q22253169 | ||
A vertebrate actin-related protein is a component of a multisubunit complex involved in microtubule-based vesicle motility | Q24300305 | ||
Cytoplasmic dynein binds dynactin through a direct interaction between the intermediate chains and p150Glued | Q24310526 | ||
Molecular characterization of the 50-kD subunit of dynactin reveals function for the complex in chromosome alignment and spindle organization during mitosis | Q24315967 | ||
Cytoplasmic dynein plays a role in mammalian mitotic spindle formation | Q24318918 | ||
Identification of a small cytoplasmic ankyrin (AnkG119) in the kidney and muscle that binds beta I sigma spectrin and associates with the Golgi apparatus | Q24322822 | ||
Two activators of microtubule-based vesicle transport | Q24644079 | ||
Dynactin, a conserved, ubiquitously expressed component of an activator of vesicle motility mediated by cytoplasmic dynein | Q24644129 | ||
The interaction between cytoplasmic dynein and dynactin is required for fast axonal transport | Q24644297 | ||
Ultrastructural analysis of the dynactin complex: an actin-related protein is a component of a filament that resembles F-actin | Q24651342 | ||
KIF3C and KIF3A form a novel neuronal heteromeric kinesin that associates with membrane vesicles | Q24654635 | ||
Centractin (ARP1) associates with spectrin revealing a potential mechanism to link dynactin to intracellular organelles | Q24681711 | ||
Coatomer, Arf1p, and nucleotide are required to bud coat protein complex I-coated vesicles from large synthetic liposomes | Q27940161 | ||
Cytoplasmic dynein and dynactin in cell division and intracellular transport | Q28137823 | ||
A phospho-switch controls the dynamic association of synapsins with synaptic vesicles | Q28138455 | ||
Signal transduction and membrane traffic: the PITP/phosphoinositide connection | Q28302672 | ||
Rhodopsin's carboxy-terminal cytoplasmic tail acts as a membrane receptor for cytoplasmic dynein by binding to the dynein light chain Tctex-1 | Q28508578 | ||
Na,K-ATPase transport from endoplasmic reticulum to Golgi requires the Golgi spectrin-ankyrin G119 skeleton in Madin Darby canine kidney cells | Q28609159 | ||
ADP ribosylation factor regulates spectrin binding to the Golgi complex | Q28609162 | ||
The interaction between N-WASP and the Arp2/3 complex links Cdc42-dependent signals to actin assembly | Q28609843 | ||
COPII-coated vesicle formation reconstituted with purified coat proteins and chemically defined liposomes | Q29616856 | ||
Functional coordination of three mitotic motors in Drosophila embryos | Q30477413 | ||
Dynein is the motor for retrograde axonal transport of organelles | Q33840224 | ||
Bead movement by single kinesin molecules studied with optical tweezers | Q33957127 | ||
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Electrostatic and hydrophobic interactions of synapsin I and synapsin I fragments with phospholipid bilayers | Q34426758 | ||
A comparative analysis of the phosphoinositide binding specificity of pleckstrin homology domains | Q34436541 | ||
Movement of organelles along filaments dissociated from the axoplasm of the squid giant axon | Q34467608 | ||
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Plus-end motors override minus-end motors during transport of squid axon vesicles on microtubules | Q36237552 | ||
Kinesin is bound with high affinity to squid axon organelles that move to the plus-end of microtubules | Q36532000 | ||
The involvement of the intermediate chain of cytoplasmic dynein in binding the motor complex to membranous organelles of Xenopus oocytes | Q36936595 | ||
Protein transport to the yeast vacuole | Q40380603 | ||
Binding of neomycin to phosphatidylinositol 4,5-bisphosphate (PIP2). | Q41268508 | ||
Targeting of cytoplasmic dynein to membranous organelles and kinetochores via dynactin | Q41384488 | ||
Different axoplasmic proteins generate movement in opposite directions along microtubules in vitro | Q44192316 | ||
Single microtubules from squid axoplasm support bidirectional movement of organelles | Q44551777 | ||
Cytoplasmic dynein binds to phospholipid vesicles | Q46142291 | ||
Generation of coated intermediates of clathrin-mediated endocytosis on protein-free liposomes | Q47802787 | ||
Purification of fodrin from mammalian brain | Q48392706 | ||
A protein accumulator | Q59003955 | ||
The cortical actin-membrane cytoskeleton of unfertilized sea urchin eggs: analysis of the spatial organization and relationship of filamentous actin, nonfilamentous actin, and egg spectrin | Q69516893 | ||
Affinity chromatography demonstrates a direct binding between cytoplasmic dynein and the dynactin complex | Q71585895 | ||
Inhibition of Microtubule-Dependent, Minus-End Directed Transport of Axoplasmic Organelles by an Antibody Specific for the Intermediate Chain of Dynein | Q88224496 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | membrane protein | Q423042 |
P304 | page(s) | 173-183 | |
P577 | publication date | 2001-01-01 | |
P1433 | published in | Molecular Cell | Q3319468 |
P1476 | title | Dynactin-Dependent, Dynein-Driven Vesicle Transport in the Absence of Membrane Proteins | |
P478 | volume | 7 |
Q40880104 | A 10-minute prototype assay for tissue degradation monitoring in clinical specimens |
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Q24312307 | A direct interaction between cytoplasmic dynein and kinesin I may coordinate motor activity |
Q36587721 | A human β-III-spectrin spinocerebellar ataxia type 5 mutation causes high-affinity F-actin binding. |
Q24291103 | A new spectrin, beta IV, has a major truncated isoform that associates with promyelocytic leukemia protein nuclear bodies and the nuclear matrix |
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Q24683555 | Activation of endosomal dynein motors by stepwise assembly of Rab7-RILP-p150Glued, ORP1L, and the receptor betalll spectrin |
Q24310823 | An ankyrin-based mechanism for functional organization of dystrophin and dystroglycan |
Q24310226 | Ankyrin facilitates intracellular trafficking of alpha1-Na+-K+-ATPase in polarized cells |
Q34577826 | Ankyrin-G and beta2-spectrin collaborate in biogenesis of lateral membrane of human bronchial epithelial cells. |
Q24318309 | Ankyrin-G is a molecular partner of E-cadherin in epithelial cells and early embryos |
Q47072846 | Annexin B9 binds to β(H)-spectrin and is required for multivesicular body function in Drosophila |
Q89605708 | Cargo hold and delivery: Ankyrins, spectrins, and their functional patterning of neurons |
Q34326970 | Complementary roles for dynein and kinesins in the Xenopus egg cortical rotation |
Q36325807 | Coordination of opposite-polarity microtubule motors |
Q43599362 | Cytoplasmic dynein intermediate chain phosphorylation regulates binding to dynactin |
Q73086391 | Determinants of S. cerevisiae dynein localization and activation: implications for the mechanism of spindle positioning |
Q52546347 | Disruption of dynein/dynactin inhibits axonal transport in motor neurons causing late-onset progressive degeneration. |
Q24674686 | Distinct cell cycle-dependent roles for dynactin and dynein at centrosomes |
Q46111698 | Diverse mitotic functions of the cytoskeletal cross-linking protein Shortstop suggest a role in Dynein/Dynactin activity |
Q41545103 | Dynactin has two antagonistic regulatory domains and exerts opposing effects on dynein motility |
Q24300248 | Dynactin is required for coordinated bidirectional motility, but not for dynein membrane attachment |
Q33757802 | Dynactin-membrane interaction is regulated by the C-terminal domains of p150(Glued). |
Q34495155 | Dynein at the cortex |
Q28211465 | Evidence for a functional interaction between the ClC-2 chloride channel and the retrograde motor dynein complex |
Q83396536 | Facilitated intracellular transport of TrkA by an interaction with nerve growth factor |
Q28566818 | Fragmentation of the Golgi apparatus. A role for beta III spectrin and synthesis of phosphatidylinositol 4,5-bisphosphate |
Q40949512 | Hook Adaptors Induce Unidirectional Processive Motility by Enhancing the Dynein-Dynactin Interaction |
Q39232322 | Intrinsic indicators for specimen degradation |
Q35884219 | Isoforms of Spectrin and Ankyrin Reflect the Functional Topography of the Mouse Kidney. |
Q34398063 | Linkers, packages and pathways: new concepts in axonal transport |
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Q30833108 | Local synthesis of dynein cofactors matches retrograde transport to acutely changing demands |
Q42378716 | Localised dynactin protects growing microtubules to deliver oskar mRNA to the posterior cortex of the Drosophila oocyte |
Q35109708 | Molecular motors |
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Q36323484 | Neural cell adhesion molecule (NCAM) association with PKCbeta2 via betaI spectrin is implicated in NCAM-mediated neurite outgrowth. |
Q35125111 | Peroxisomal motility and interaction with microtubules |
Q36670504 | Powering membrane traffic in endocytosis and recycling |
Q33956857 | Principles of cargo attachment to cytoplasmic motor proteins |
Q39156183 | Regulation of dynein-dynactin-driven vesicular transport. |
Q28265664 | Regulators of the cytoplasmic dynein motor |
Q28771479 | Retrolinkin, a membrane protein, plays an important role in retrograde axonal transport |
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Q24683858 | Role of the kinetochore/cell cycle checkpoint protein ZW10 in interphase cytoplasmic dynein function |
Q35575279 | Roles of the cytoskeleton and motor proteins in endocytic sorting |
Q42320996 | Schwannomin-interacting Protein 1 Isoform IQCJ-SCHIP1 Is a Multipartner Ankyrin- and Spectrin-binding Protein Involved in the Organization of Nodes of Ranvier. |
Q38191168 | Spectrin and phospholipids - the current picture of their fascinating interplay. |
Q33788461 | Spectrin mutations that cause spinocerebellar ataxia type 5 impair axonal transport and induce neurodegeneration in Drosophila. |
Q34394320 | Structural properties of lipid-binding sites in cytoskeletal proteins |
Q36669894 | Synaptic cytoskeleton at the neuromuscular junction |
Q24306055 | Syntabulin is a microtubule-associated protein implicated in syntaxin transport in neurons |
Q36772612 | Systematic dissection of dynein regulators in mitosis |
Q28505969 | Targeted deletion of betaIII spectrin impairs synaptogenesis and generates ataxic and seizure phenotypes |
Q28210963 | The Rab6 GTPase regulates recruitment of the dynactin complex to Golgi membranes |
Q34100590 | The Rab7 effector protein RILP controls lysosomal transport by inducing the recruitment of dynein-dynactin motors |
Q40760815 | The intracellular trafficking mechanism of Lipofectamine-based transfection reagents and its implication for gene delivery. |
Q28241892 | The p25 subunit of the dynactin complex is required for dynein-early endosome interaction |
Q78298244 | The spectrin-ankyrin skeleton controls CD45 surface display and interleukin-2 production |
Q33928613 | Three-dimensional reconstruction of the dynactin complex by single-particle image analysis |
Q37652310 | Ubiquitination and dynactin regulate TMEPAI lysosomal trafficking |
Q28207523 | beta III spectrin binds to the Arp1 subunit of dynactin |
Q36561930 | βIII spectrin regulates the structural integrity and the secretory protein transport of the Golgi complex |
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