CXC chemokines interleukin-8 (IL-8) and growth-related gene product α (GROα) modulate Purkinje neuron activity in mouse cerebellum

[1]  C. Armstrong,et al.  Induction of long-term depression and rebound potentiation by inositol trisphosphate in cerebellar Purkinje neurons. , 1997, Proceedings of the National Academy of Sciences of the United States of America.

[2]  S. Rhee,et al.  Regulation of Phosphoinositide-specific Phospholipase C Isozymes* , 1997, The Journal of Biological Chemistry.

[3]  Arthur Konnerth,et al.  Dendritic signal integration , 1997, Current Opinion in Neurobiology.

[4]  R. Tsien,et al.  Synergies and Coincidence Requirements between NO, cGMP, and Ca2+ in the Induction of Cerebellar Long-Term Depression , 1997, Neuron.

[5]  Richard E Thompson,et al.  Cerebellar circuits and synaptic mechanisms involved in classical eyeblink conditioning , 1997, Trends in Neurosciences.

[6]  L. Schweitzer,et al.  Expression of chemokine receptors by subsets of neurons in the central nervous system. , 1997, Journal of immunology.

[7]  J. Hoxie,et al.  CD4-independent association between HIV-1 gp120 and CXCR4: functional chemokine receptors are expressed in human neurons , 1997, Current Biology.

[8]  R. Ransohoff,et al.  Synchronous synthesis of alpha- and beta-chemokines by cells of diverse lineage in the central nervous system of mice with relapses of chronic experimental autoimmune encephalomyelitis. , 1997, The American journal of pathology.

[9]  Y. Xia,et al.  Identification of Two Rat Genes Orthologous to the Human Interleukin-8 Receptors* , 1996, The Journal of Biological Chemistry.

[10]  M. Ciotti,et al.  A Glutamate‐sensitizing Activity in Conditioned Media Derived from Rat Cerebellar Granule Cells , 1996, The European journal of neuroscience.

[11]  B. Trapp,et al.  Neutrophil infiltration, glial reaction, and neurological disease in transgenic mice expressing the chemokine N51/KC in oligodendrocytes. , 1996, The Journal of clinical investigation.

[12]  Mu-ming Poo,et al.  Fast actions of neurotrophic factors , 1996, Current Opinion in Neurobiology.

[13]  R. Ransohoff,et al.  Cytokines and the CNS , 1996 .

[14]  K. Khodakhah,et al.  Fast activation and inactivation of inositol trisphosphate‐evoked Ca2+ release in rat cerebellar Purkinje neurones. , 1995, The Journal of physiology.

[15]  W. Wood,et al.  Chemokine binding and activities mediated by the mouse IL-8 receptor. , 1995, Journal of immunology.

[16]  F. Eusebi,et al.  Acetylcholine-activated inward current induces cytosolic Ca2+ mobilization in mouse C2C12 myotubes. , 1995, Cell calcium.

[17]  P. Gray,et al.  Chemokine expression in murine experimental allergic encephalomyelitis , 1995, Journal of Neuroimmunology.

[18]  T. Olsson Critical Influences of the Cytokine Orchestration on the Outcome of Myelin Antigen‐Specific T‐Cell Autoimmunity in Experimental Autoimmune Encephalomyelitis and Multiple Sclerosis , 1995, Immunological reviews.

[19]  E. Schuman,et al.  Long-lasting neurotrophin-induced enhancement of synaptic transmission in the adult hippocampus , 1995, Science.

[20]  T. Hirano,et al.  Involvement of inositol trisphosphate in cerebellar long-term depression. , 1995, Neuroreport.

[21]  L. F. Kolakowski,et al.  The murine interleukin 8 type B receptor homologue and its ligands. Expression and biological characterization. , 1994, The Journal of biological chemistry.

[22]  M. Ciotti,et al.  Aluminium in rat cerebellar primary cultures: glial cells and GABAergic neurones. , 1994, Neuroreport.

[23]  K. Matsushima,et al.  Cloning of a cDNA encoding a mouse homolog of the interleukin-8 receptor. , 1994, Gene.

[24]  D. Linden,et al.  Long-term synaptic depression in the mammalian brain , 1994, Neuron.

[25]  M. Baggiolini,et al.  Expression of transcripts for two interleukin 8 receptors in human phagocytes, lymphocytes and melanoma cells. , 1993, The Biochemical journal.

[26]  Melvin I. Simon,et al.  G protein-coupled signal transduction pathways for interleukin-8. , 1993, Science.

[27]  D. Linden,et al.  Cellular mechanisms of long-term depression in the cerebellum , 1993, Current Opinion in Neurobiology.

[28]  H. Nawa,et al.  Neuronal differentiation factors/cytokines and synaptic plasticity , 1993, Cell.

[29]  J. Connor,et al.  An electrophysiological correlate of protein kinase C isozyme distribution in cultured cerebellar neurons , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[30]  Erwin G. Van Meir,et al.  Interleukin-8 is produced in neoplastic and infectious diseases of the human central nervous system. , 1992, Cancer research.

[31]  A. Konnerth,et al.  Brief dendritic calcium signals initiate long-lasting synaptic depression in cerebellar Purkinje cells. , 1992, Proceedings of the National Academy of Sciences of the United States of America.

[32]  L. Kemény,et al.  Interleukin‐8 receptor‐mediated chemotaxis of normal human epidermal cells , 1992, FEBS letters.

[33]  A. Konnerth,et al.  Synaptic excitation produces a long-lasting rebound potentiation of inhibitory synaptic signals in cerebellar Purkinje cells , 1992, Nature.

[34]  P. Murphy,et al.  Cloning of complementary DNA encoding a functional human interleukin-8 receptor. , 1991, Science.

[35]  W I Wood,et al.  Structure and functional expression of a human interleukin-8 receptor. , 1991, Science.

[36]  A. Marty,et al.  Calcium entry increases the sensitivity of cerebellar Purkinje cells to applied GABA and decreases inhibitory synaptic currents , 1991, Neuron.

[37]  A. Konnerth,et al.  Synaptic‐ and agonist‐induced excitatory currents of Purkinje cells in rat cerebellar slices. , 1991, The Journal of physiology.

[38]  J. Kuratsu,et al.  Production and characterization of human glioma cell-derived monocyte chemotactic factor. , 1989, Journal of the National Cancer Institute.

[39]  P. Majerus,et al.  Inositol phosphates: synthesis and degradation. , 1988, The Journal of biological chemistry.

[40]  P. Chomczyński,et al.  Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. , 1987, Analytical biochemistry.

[41]  R. Llinás,et al.  Electrophysiological properties of in vitro Purkinje cell dendrites in mammalian cerebellar slices. , 1980, The Journal of physiology.

[42]  C Chen,et al.  Molecular genetic analysis of synaptic plasticity, activity-dependent neural development, learning, and memory in the mammalian brain. , 1997, Annual review of neuroscience.

[43]  B Dewald,et al.  Human chemokines: an update. , 1997, Annual review of immunology.

[44]  C. Limatola,et al.  Muscarinic stimulation of SK-N-BE(2) human neuroblastoma cells elicits phosphoinositide and phosphatidylcholine hydrolysis: relationship to diacylglycerol and phosphatidic acid accumulation. , 1993, The Biochemical journal.

[45]  B. Katz The release of neural transmitter substances , 1969 .