Extension of Long Leading Processes and Neuronal Migration in the Mammalian Brain Directed by the Chemoattractant Netrin-1
暂无分享,去创建一个
Marc Tessier-Lavigne | D. O'Leary | M. Tessier-Lavigne | H. Simon | Dennis D.M O'Leary | Horst H Simon | Kathleen T Yee | K. T. Yee
[1] M. Lehman,et al. Neurons that migrate from the olfactory epithelium in the chick express luteinizing hormone-releasing hormone. , 1991, Endocrinology.
[2] D. Morest,et al. Direct observation in vitro of how neuroblasts migrate: Medulla and cochleovestibular ganglion of the chick embryo , 1991, Experimental Neurology.
[3] P. Rashbass,et al. Role of Pax6 in development of the cerebellar system. , 1999, Development.
[4] J. Culotti,et al. UNC-5, a transmembrane protein with immunoglobulin and thrombospondin type 1 domains, guides cell and pioneer axon migrations in C. elegans , 1992, Cell.
[5] F. Murakami,et al. Guidance of Circumferentially Growing Axons by Netrin-Dependent and -Independent Floor Plate Chemotropism in the Vertebrate Brain , 1996, Neuron.
[6] M. Goulding,et al. Signals from the notochord and floor plate regulate the region-specific expression of two Pax genes in the developing spinal cord. , 1993, Development.
[7] M. Masu,et al. Vertebrate homologues of C. elegans UNC-5 are candidate netrin receptors , 1997, Nature.
[8] A. Davies,et al. Earliest sensory nerve fibres are guided to peripheral targets by attractants other than nerve growth factor , 1983, Nature.
[9] C. Métin,et al. A role for netrin-1 in the guidance of cortical efferents. , 1997, Development.
[10] John G. Flanagan,et al. The Middle and the End Slit Brings Guidance and Branching Together in Axon Pathway Selection , 1999, Neuron.
[11] David G Wilkinson,et al. Eph receptors and ephrins in neural development , 1999, Current Opinion in Neurobiology.
[12] Y. Rao,et al. Cellular and Molecular Guidance of GABAergic Neuronal Migration from an Extracortical Origin to the Neocortex , 1999, Neuron.
[13] Jennifer L. Doyle,et al. Genetic Analysis of Netrin Genes in Drosophila: Netrins Guide CNS Commissural Axons and Peripheral Motor Axons , 1996, Neuron.
[14] Hao Wang,et al. Netrin-1 Is Required for Commissural Axon Guidance in the Developing Vertebrate Nervous System , 1996, Cell.
[15] P. Rakic,et al. Recognition, adhesion, transmembrane signaling and cell motility in guided neuronal migration , 1994, Current Opinion in Neurobiology.
[16] D. Hall,et al. The unc-5, unc-6, and unc-40 genes guide circumferential migrations of pioneer axons and mesodermal cells on the epidermis in C. elegans , 1990, Neuron.
[17] Timothy E. Kennedy,et al. Netrins are diffusible chemotropic factors for commissural axons in the embryonic spinal cord , 1994, Cell.
[18] T. Kornberg,et al. Cytonemes Cellular Processes that Project to the Principal Signaling Center in Drosophila Imaginal Discs , 1999, Cell.
[19] C. Goodman,et al. Slit Is the Midline Repellent for the Robo Receptor in Drosophila , 1999, Cell.
[20] C. Lois,et al. Embryonic (PSA) N‐CAM reveals chains of migrationg neuroblasts between the lateral ventricle and the olfactory bulb of adult mice , 1995, The Journal of comparative neurology.
[21] D. McClay,et al. Dynamics of thin filopodia during sea urchin gastrulation. , 1995, Development.
[22] H. Asou,et al. Gradient expression of neural cell adhesion molecule (NCAM) in the pontine migratory stream of fetal rats , 1992, Neuroscience Research.
[23] E. T. Pierce. Histogenesis of the nuclei griseum pontis, corporis pontobulbaris and reticularis tegmenti pontis (Bechterew) in the mouse an autoradiographic study , 1966 .
[24] H. Lipp,et al. Distribution of TAG‐1/Axonin‐1 in fibre tracts and migratory streams of the developing mouse nervous system , 1994, The Journal of comparative neurology.
[25] K. Rajewsky,et al. Inactivation of the N-CAM gene in mice results in size reduction of the olfactory bulb and deficits in spatial learning , 1994, Nature.
[26] E. Hedgecock,et al. Neuroglia and Pioneer Neurons Express UNC-6 to Provide Global and Local Netrin Cues for Guiding Migrations in C. elegans , 1996, Neuron.
[27] M. Bastmeyer,et al. Collateral branch formation related to cellular structures in the axon tract during corticopontine target recognition , 1998, The Journal of comparative neurology.
[28] J. Culotti,et al. DCC and netrins. , 1998, Current opinion in cell biology.
[29] C. Sotelo,et al. Floor Plate and Netrin-1 Are Involved in the Migration and Survival of Inferior Olivary Neurons , 1999, The Journal of Neuroscience.
[30] Mu-ming Poo,et al. A Ligand-Gated Association between Cytoplasmic Domains of UNC5 and DCC Family Receptors Converts Netrin-Induced Growth Cone Attraction to Repulsion , 1999, Cell.
[31] J. Altman,et al. Development of the precerebellar nuclei in the rat: IV. The anterior precerebellar extramural migratory stream and the nucleus reticularis tegmenti pontis and the basal pontine gray , 1987, The Journal of comparative neurology.
[32] G. Edelman,et al. Antibody to neural cell adhesion molecule can disrupt the migration of luteinizing hormone‐releasing hormone neurons into the mouse brain , 1994, The Journal of comparative neurology.
[33] C. Essick. The development of the nuclei pontis and the nucleus arcuatus in man , 1912 .
[34] Shahrooz Rabizadeh,et al. The DCC gene product induces apoptosis by a mechanism requiring receptor proteolysis , 1998, Nature.
[35] Leyuan Shi,et al. Interneuron migration from basal forebrain to neocortex: dependence on Dlx genes. , 1997, Science.
[36] P. Gruss,et al. Pax-6, a murine paired box gene, is expressed in the developing CNS. , 1991, Development.
[37] Maria B. Luskin,et al. Restricted proliferation and migration of postnatally generated neurons derived from the forebrain subventricular zone , 1993, Neuron.
[38] D. Morest,et al. Migration of neuroblasts by perikaryal translocation: Role of cellular elongation and axonal outgrowth in the acoustic nuclei of the chick embryo medulla , 1990, The Journal of comparative neurology.
[39] M. Baggiolini. Chemokines and leukocyte traffic , 1998, Nature.
[40] S. Thanos,et al. A study in developing visual systems with a new method of staining neurones and their processes in fixed tissue. , 1987, Development.
[41] C. Sotelo,et al. Migratory pathways and neuritic differentiation of inferior olivary neurons in the rat embryo. Axonal tracing study using the in vitro slab technique. , 1988, Brain research.
[42] Arturo Alvarez-Buylla,et al. Chain Migration of Neuronal Precursors , 1996, Science.
[43] Huaiyu Hu,et al. Chemorepulsion of Neuronal Migration by Slit2 in the Developing Mammalian Forebrain , 1999, Neuron.
[44] C. Goodman,et al. The Molecular Biology of Axon Guidance , 1996, Science.
[45] P. Rakić,et al. Neuron‐glia relationship during granule cell migration in developing cerebellar cortex. A Golgi and electonmicroscopic study in Macacus rhesus , 1971, The Journal of comparative neurology.
[46] G. Edelman,et al. Immunocytochemical demonstration of neural cell adhesion molecule (NCAM) along the migration route of luteinizing hormone‐releasing hormone (LHRH) neurons in mice , 1992, The Journal of comparative neurology.
[47] M. Hanson,et al. Hepatocyte Growth Factor/Scatter Factor Is an Axonal Chemoattractant and a Neurotrophic Factor for Spinal Motor Neurons , 1996, Neuron.
[48] R. Weinberg,et al. Phenotype of mice lacking functional Deleted in colorectal cancer (Dec) gene , 1997, Nature.
[49] L. Benowitz,et al. Mapping the development of the rat brain by GAP-43 immunocytochemistry , 1991, Neuroscience.
[50] J. Culotti,et al. UNC-6, a laminin-related protein, guides cell and pioneer axon migrations in C. elegans , 1992, Neuron.
[51] Howard C. Berg,et al. Genetic analysis , 1957, Nature Biotechnology.
[52] S. Ackerman,et al. Embryonic phenotype of Unc5h3 mutant mice suggests chemorepulsion during the formation of the rostral cerebellar boundary. , 1998, Development.
[53] F. Valverde,et al. Dynamics of Cell Migration from the Lateral Ganglionic Eminence in the Rat , 1996, The Journal of Neuroscience.
[54] S J Singer,et al. The directed migration of eukaryotic cells. , 1986, Annual review of cell biology.
[55] M. Seeger,et al. Guidance Cues at the Drosophila CNS Midline: Identification and Characterization of Two Drosophila Netrin/UNC-6 Homologs , 1996, Neuron.
[56] J. Norden,et al. Light-microscopic immunolocalization of the growth- and plasticity-associated protein GAP-43 in the developing rat brain. , 1988, Brain research.
[57] M. Luskin,et al. Rate and pattern of migration of lineally-related olfactory bulb interneurons generated postnatally in the subventricular zone of the rat. , 1994, Chemical senses.
[58] N. Tamamaki,et al. Origin and Route of Tangentially Migrating Neurons in the Developing Neocortical Intermediate Zone , 1997, The Journal of Neuroscience.
[59] M. Masu,et al. Deleted in Colorectal Cancer (DCC) Encodes a Netrin Receptor , 1996, Cell.
[60] T. Jessell,et al. Spatial regulation of axonal glycoprotein expression on subsets of embryonic spinal neurons , 1988, Neuron.
[61] M. Hatten. Central nervous system neuronal migration. , 1999, Annual review of neuroscience.
[62] Sophie Dupuis,et al. Directional guidance of neuronal migration in the olfactory system by the protein Slit , 1999, Nature.
[63] S. Mcconnell,et al. Postmitotic neurons migrate tangentially in the cortical ventricular zone. , 1997, Development.