Cyclic AMP and synaptic activity-dependent phosphorylation of AMPA- preferring glutamate receptors
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R. Huganir | T. Murphy | C. Blackstone | J. Baraban | S. Moss | S. Moss | R L Huganir | S J Moss | T H Murphy | J M Baraban | C Blackstone | T. Murphy | R. Huganir | J. Baraban | Craig Blackstone | Timothy H. Murphy | Stephen J. Moss | S. J. Moss
[1] S. Lipton,et al. Excitatory amino acids as a final common pathway for neurologic disorders. , 1994, The New England journal of medicine.
[2] R. Huganir,et al. The distribution of glutamate receptors in cultured rat hippocampal neurons: Postsynaptic clustering of AMPA selective subunits , 1993, Neuron.
[3] Y. Jan,et al. Changing subunit composition of heteromeric NMDA receptors during development of rat cortex , 1994, Nature.
[4] T. Bliss,et al. A synaptic model of memory: long-term potentiation in the hippocampus , 1993, Nature.
[5] M. Salter,et al. Regulation of kainate receptors by cAMP-dependent protein kinase and phosphatases , 1991, Science.
[6] W Wisden,et al. The rat delta‐1 and delta‐2 subunits extend the excitatory amino acid receptor family , 1993, FEBS letters.
[7] S. Nakanishi. Molecular diversity of glutamate receptors and implications for brain function. , 1992, Science.
[8] S. Heinemann,et al. Cloning by functional expression of a member of the glutamate receptor family , 1989, Nature.
[9] P. Seeburg,et al. Glutamate receptor channels: novel properties and new clones. , 1992, Trends in pharmacological sciences.
[10] L. Raymond,et al. Transmembrane topology of the glutamate receptor subunit GluR6. , 1994, The Journal of biological chemistry.
[11] S. Heinemann,et al. Cloned glutamate receptors. , 1994, Annual review of neuroscience.
[12] P. Shaw. Excitatory amino acid receptors, excitotoxicity, and the human nervous system. , 1993, Current opinion in neurology and neurosurgery.
[13] R. Huganir,et al. Immunological detection of glutamate receptor subtypes in human central nervous system , 1992, Annals of neurology.
[14] E. Kandel,et al. Learning-related synaptic plasticity: LTP and LTD , 1991, Current Opinion in Neurobiology.
[15] A. Konnerth,et al. Calcium influx through subunits GluR1/GluR3 of kainate/AMPA receptor channels is regulated by cAMP dependent protein kinase. , 1992, The EMBO journal.
[16] T. Murphy,et al. Phosphoinositide Turnover Associated with Synaptic Transmission , 1992, Journal of neurochemistry.
[17] L. Vyklický,et al. Molecular cloning and development analysis of a new glutamate receptor subunit isoform in cerebellum , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[18] E. Krebs,et al. Isolation of cDNA clones coding for the catalytic subunit of mouse cAMP-dependent protein kinase. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[19] T. Murphy,et al. Glutamate toxicity in immature cortical neurons precedes development of glutamate receptor currents. , 1990, Brain research. Developmental brain research.
[20] John E. Dowling,et al. Enhancement of kainate-gated currents in retinal horizontal cells by cyclic AMP-dependent protein kinase , 1989, Brain Research.
[21] C. Cotman,et al. The excitatory amino acid receptors: their classes, pharmacology, and distinct properties in the function of the central nervous system. , 1989, Annual review of pharmacology and toxicology.
[22] R. Huganir,et al. Regulation of NMDA receptor phosphorylation by alternative splicing of the C-terminal domain , 1993, Nature.
[23] R. Huganir,et al. Biochemical Characterization and Localization of a Non‐N‐Methyl‐D‐Aspartate Glutamate Receptor in Rat Brain , 1992, Journal of neurochemistry.
[24] P. Greengard,et al. Enhancement of the glutamate response by cAMP-dependent protein kinase in hippocampal neurons , 1991, Science.
[25] D. Linden,et al. Long-term synaptic depression in the mammalian brain , 1994, Neuron.
[26] B. Sakmann,et al. Flip and flop: a cell-specific functional switch in glutamate-operated channels of the CNS. , 1990, Science.
[27] Dimitri M. Kullmann,et al. Ca2+ Entry via postsynaptic voltage-sensitive Ca2+ channels can transiently potentiate excitatory synaptic transmission in the hippocampus , 1992, Neuron.
[28] P. Somogyi,et al. Biochemical and immunocytochemical characterization of antipeptide antibodies to a cloned GluR1 glutamate receptor subunit: Cellular and subcellular distribution in the rat forebrain , 1993, Neuroscience.
[29] R. Huganir,et al. AMPA glutamate receptor subunits are differentially distributed in rat brain , 1993, Neuroscience.
[30] T. Soderling,et al. Phosphorylation and regulation of glutamate receptors by calcium/calmodulin-dependent protein kinase II , 1993, Nature.
[31] T. Murphy,et al. Spontaneous synchronous synaptic calcium transients in cultured cortical neurons , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[32] L. Raymond,et al. Phosphorylation and modulation of recombinant GluR6 glutamate receptors by cAMP-dependent protein kinase , 1993, Nature.
[33] M. Hollmann,et al. Molecular neurobiology of glutamate receptors. , 1992, Annual review of physiology.
[34] P. Seeburg,et al. RNA editing in brain controls a determinant of ion flow in glutamate-gated channels , 1991, Cell.
[35] P. Seeburg. The TINS/TiPS Lecture the molecular biology of mammalian glutamate receptor channels , 1993, Trends in Neurosciences.
[36] S. Nakanishi,et al. Structures and properties of seven isoforms of the NMDA receptor generated by alternative splicing. , 1992, Biochemical and biophysical research communications.
[37] R. Petralia,et al. Light and electron immunocytochemical localization of AMPA‐selective glutamate receptors in the rat brain , 1992, The Journal of comparative neurology.
[38] T. Murphy,et al. Differential regulation of calcium/calmodulin-dependent protein kinase II and p42 MAP kinase activity by synaptic transmission , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.