Dynactin Is Necessary for Synapse Stabilization
暂无分享,去创建一个
[1] A. D. Spier,et al. Actin dynamics in dendritic spines , 2002, Trends in Neurosciences.
[2] R. Vallee,et al. Dynein at the cortex. , 2002, Current opinion in cell biology.
[3] D. Featherstone,et al. Developmental regulation of glutamate receptor field size by nonvesicular glutamate release , 2002, Nature Neuroscience.
[4] E. Morrison,et al. EB1 identifies sites of microtubule polymerisation during neurite development. , 2002, Brain research. Molecular brain research.
[5] Michael J. Sailor,et al. Remodeling of Synaptic Actin Induced by Photoconductive Stimulation , 2001, Cell.
[6] Gerald M. Rubin,et al. Drosophila Fragile X-Related Gene Regulates the MAP1B Homolog Futsch to Control Synaptic Structure and Function , 2001, Cell.
[7] S. Karki,et al. Dynein binds to β-catenin and may tether microtubules at adherens junctions , 2001, Nature Cell Biology.
[8] E. Holzbaur,et al. βIII Spectrin Binds to the Arp1 Subunit of Dynactin* , 2001, The Journal of Biological Chemistry.
[9] Leonard K. Kaczmarek,et al. Targeted Attenuation of Electrical Activity in Drosophila Using a Genetically Modified K+ Channel , 2001, Neuron.
[10] M. Sheng,et al. Regulation of Dendritic Spine Morphology by SPAR, a PSD-95-Associated RapGAP , 2001, Neuron.
[11] T. Schwarz,et al. Absence of Junctional Glutamate Receptor Clusters in Drosophila Mutants Lacking Spontaneous Transmitter Release , 2001, Science.
[12] David Pellman,et al. Microtubule “Plus-End-Tracking Proteins” The End Is Just the Beginning , 2001, Cell.
[13] G. Davis,et al. Homeostatic Control of Presynaptic Release Is Triggered by Postsynaptic Membrane Depolarization , 2001, Neuron.
[14] Gongshe Han,et al. The Aspergillus cytoplasmic dynein heavy chain and NUDF localize to microtubule ends and affect microtubule dynamics , 2001, Current Biology.
[15] P. Sharp,et al. RNA interference--2001. , 2001, Genes & development.
[16] D. Pellman,et al. Search, capture and signal: games microtubules and centrosomes play. , 2001, Journal of cell science.
[17] S. Karki,et al. Dynein binds to beta-catenin and may tether microtubules at adherens junctions. , 2001, Nature cell biology.
[18] E. Huang,et al. Neurotrophins: roles in neuronal development and function. , 2001, Annual review of neuroscience.
[19] P. Zipperlen,et al. Effectiveness of specific RNA-mediated interference through ingested double-stranded RNA in Caenorhabditis elegans , 2000, Genome Biology.
[20] A. Wynshaw-Boris,et al. A LIS1/NUDEL/Cytoplasmic Dynein Heavy Chain Complex in the Developing and Adult Nervous System , 2000, Neuron.
[21] L. Luo,et al. Drosophila Lis1 is required for neuroblast proliferation, dendritic elaboration and axonal transport , 2000, Nature Cell Biology.
[22] E. Gundelfinger,et al. Synaptic targeting and localization of Discs-large is a stepwise process controlled by different domains of the protein , 2000, Current Biology.
[23] Y. Goda,et al. Actin-Dependent Regulation of Neurotransmitter Release at Central Synapses , 2000, Neuron.
[24] J. Cooper,et al. Microtubule Interactions with the Cell Cortex Causing Nuclear Movements in Saccharomyces cerevisiae , 2000, The Journal of cell biology.
[25] G. Davis,et al. Drosophila Futsch Regulates Synaptic Microtubule Organization and Is Necessary for Synaptic Growth , 2000, Neuron.
[26] G. Lnenicka,et al. Identified motor terminals in Drosophila larvae show distinct differences in morphology and physiology. , 2000, Journal of neurobiology.
[27] G. Davis,et al. Drosophila Futsch/22C10 Is a MAP1B-like Protein Required for Dendritic and Axonal Development , 2000, Neuron.
[28] R. Vallee,et al. The role of cytoplasmic dynein in the human brain developmental disease lissencephaly. , 2000, Biochimica et biophysica acta.
[29] A. Hall,et al. Axonal Remodeling and Synaptic Differentiation in the Cerebellum Is Regulated by WNT-7a Signaling , 2000, Cell.
[30] David R. Colman,et al. Molecular Modification of N-Cadherin in Response to Synaptic Activity , 2000, Neuron.
[31] U. Wagner,et al. Actin dynamics in dendritic spines: A form of regulated plasticity at excitatory synapses , 2000, Hippocampus.
[32] R. Vallee,et al. Interaction of the p62 subunit of dynactin with Arp1 and the cortical actin cytoskeleton , 1999, Current Biology.
[33] S. Cohen-Cory,et al. BDNF Modulates, But Does Not Mediate, Activity-Dependent Branching and Remodeling of Optic Axon Arbors In Vivo , 1999, The Journal of Neuroscience.
[34] W. Saxton,et al. Cytoplasmic dynein, the dynactin complex, and kinesin are interdependent and essential for fast axonal transport. , 1999, Molecular biology of the cell.
[35] Stephan J. Froggett,et al. Targeted Expression of Truncated Glued Disrupts Giant Fiber Synapse Formation in Drosophila , 1999, The Journal of Neuroscience.
[36] T. Schroer,et al. Dynactin Is Required for Microtubule Anchoring at Centrosomes , 1999, The Journal of cell biology.
[37] R. Murphey,et al. Dynein-dynactin function and sensory axon growth during Drosophila metamorphosis: A role for retrograde motors. , 1999, Developmental biology.
[38] Barbara E. Bierer,et al. The APC-associated protein EB1 associates with components of the dynactin complex and cytoplasmic dynein intermediate chain , 1999, Current Biology.
[39] Richard D. Fetter,et al. Watching a Synapse Grow Noninvasive Confocal Imaging of Synaptic Growth in Drosophila , 1999, Neuron.
[40] S. Karki,et al. Cytoplasmic dynein and dynactin in cell division and intracellular transport. , 1999, Current opinion in cell biology.
[41] J. Sanes,et al. Development of the vertebrate neuromuscular junction. , 1999, Annual review of neuroscience.
[42] T. Schroer,et al. Actin-related proteins. , 1999, Annual review of cell and developmental biology.
[43] L C Katz,et al. Neurotrophins and synaptic plasticity. , 1999, Annual review of neuroscience.
[44] A. Fire,et al. Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegans , 1998, Nature.
[45] S. Hersch,et al. Interaction of Huntingtin-Associated Protein with Dynactin P150Glued , 1998, The Journal of Neuroscience.
[46] C. Echeverri,et al. Cytoplasmic Dynein and Dynactin Are Required for the Transport of Microtubules into the Axon , 1998, The Journal of cell biology.
[47] M. Snyder,et al. Cell polarity and morphogenesis in budding yeast. , 1998, Annual review of microbiology.
[48] P. Worley,et al. Huntingtin-associated protein 1 (HAP1) interacts with the p150Glued subunit of dynactin. , 1997, Human molecular genetics.
[49] R. Murphey,et al. Mutant molecular motors disrupt neural circuits in Drosophila. , 1997, Journal of neurobiology.
[50] C. Echeverri,et al. Overexpression of the Dynamitin (p50) Subunit of the Dynactin Complex Disrupts Dynein-dependent Maintenance of Membrane Organelle Distribution , 1997, The Journal of cell biology.
[51] Tim Stearns,et al. Microtubules Orient the Mitotic Spindle in Yeast through Dynein-dependent Interactions with the Cell Cortex , 1997, The Journal of cell biology.
[52] John R. Pringle,et al. Bni1p, a Yeast Formin Linking Cdc42p and the Actin Cytoskeleton During Polarized Morphogenesis , 1997, Science.
[53] D. Botstein,et al. Aip3p/Bud6p, a yeast actin-interacting protein that is involved in morphogenesis and the selection of bipolar budding sites. , 1997, Molecular biology of the cell.
[54] J. Lichtman,et al. Alterations in Synaptic Strength Preceding Axon Withdrawal , 1997, Science.
[55] C. Shatz,et al. Synaptic Activity and the Construction of Cortical Circuits , 1996, Science.
[56] I. Herskowitz,et al. Pea2 protein of yeast is localized to sites of polarized growth and is required for efficient mating and bipolar budding , 1996, The Journal of cell biology.
[57] R. Murphey,et al. Mutations in the 8 kDa dynein light chain gene disrupt sensory axon projections in the Drosophila imaginal CNS. , 1996, Development.
[58] Richard D Fetter,et al. Genetic Dissection of Structural and Functional Components of Synaptic Plasticity. II. Fasciclin II Controls Presynaptic Structural Plasticity , 1996, Neuron.
[59] Richard D Fetter,et al. Genetic Dissection of Structural and Functional Components of Synaptic Plasticity. I. Fasciclin II Controls Synaptic Stabilization and Growth , 1996, Neuron.
[60] Bo Guan,et al. Regulation of Synapse Structure and Function by the Drosophila Tumor Suppressor Gene dlg , 1996, Neuron.
[61] Bo Guan,et al. The Drosophila tumor suppressor gene, dlg, is involved in structural plasticity at a glutamatergic synapse , 1996, Current Biology.
[62] J. Pringle,et al. Genetic analysis of the bipolar pattern of bud site selection in the yeast Saccharomyces cerevisiae , 1996, Molecular and cellular biology.
[63] C. Waterman-Storer,et al. The Product of the Drosophila Gene, Glued, Is the Functional Homologue of the p150Glued Component of the Vertebrate Dynactin Complex (*) , 1996, The Journal of Biological Chemistry.
[64] K. Pfister,et al. Cytoplasmic dynein is associated with slow axonal transport. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[65] A. Silvanovich,et al. Regulation of cytoplasmic dynein function in vivo by the Drosophila Glued complex , 1995, The Journal of cell biology.
[66] H. Atwood,et al. Differential physiology and morphology of motor axons to ventral longitudinal muscles in larval Drosophila , 1994, The Journal of comparative neurology.
[67] K. Zinn,et al. A Drosophila receptor tyrosine phosphatase expressed in the embryonic CNS and larval optic lobes is a member of the set of proteins bearing the "HRP" carbohydrate epitope , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[68] V. Budnik,et al. The drosophila tumor suppressor gene dlg is required for normal synaptic bouton structure , 1994, Neuron.
[69] D. Meyer,et al. ACT3: a putative centractin homologue in S. cerevisiae is required for proper orientation of the mitotic spindle , 1994, The Journal of cell biology.
[70] A. Swaroop,et al. Molecular genetics of a transposon-induced dominant mutation in the Drosophila locus Glued. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[71] A. Wernig,et al. Sprouting and regression of the nerve at the frog neuromuscular junction in normal conditions and after prolonged paralysis with curare , 1980, Journal of neurocytology.
[72] E. Meyerowitz,et al. A genetic analysis of visual system development in Drosophilia melanogaster. , 1978, Developmental biology.
[73] K. Fischbeck,et al. Precision of reinnervation of original postsynaptic sites in frog muscle after a nerve crush , 1976, Journal of neurocytology.
[74] T. Sato,et al. A modified method for lead staining of thin sections. , 1968, Journal of electron microscopy.