spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Knoll, B.
Right arrow Articles by Drescher, U.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Knoll, B.
Right arrow Articles by Drescher, U.
Bargmann, C. I (1999). A complex sensory map for pheromones. Neuron 22, 640-642.[Medline]

Belluscio, L., Koentges, G., Axel, R. and Dulac, C (1999). A map of pheromone receptor activation in the mammalian brain. Cell 97, 209-220.[Medline]

Berghard, A. and Buck, L. B (1996). Sensory transduction in vomeronasal neurons: evidence for G alpha o, G alpha i2, and adenylyl cyclase II as major components of a pheromone signaling cascade. J. Neurosci 16, 909-918.[Abstract/Free Full Text]

Berghard, A., Buck, L. B. and Liman, E. R (1996). Evidence for distinct signaling mechanisms in two mammalian olfactory sense organs. Proc. Natl. Acad. Sci. USA 93, 2365-2369.[Abstract/Free Full Text]

Brown, D. A. and London, E (2000). Structure and function of sphingolipid-and cholesterol-rich membrane rafts. J. Biol. Chem 275, 17221-17224.[Free Full Text]

Bruckner, K., Pasquale, E. B. and Klein, R (1997). Tyrosine phosphorylation of transmembrane ligands for Eph receptors. Science 275, 1640-1643.[Abstract/Free Full Text]

Bruckner, K. and Klein, R (1998). Signaling by Eph receptors and their ephrin ligands. Curr. Opin. Neurobiol 8, 375-382.[Medline]

Buck, L. B (2000). The molecular architecture of odor and pheromone sensing in mammals. Cell 100, 611-618.[Medline]

Buj-Bello, A., Adu, J., Pinon, L. G., Horton, A., Thompson, J., Rosenthal, A., Chinchetru, M., Buchman, V. L. and Davies, A. M (1997). Neurturin responsiveness requires a GPI-linked receptor and the Ret receptor tyrosine kinase. Nature 387, 721-724.[Medline]

Callahan, C. A. and Thomas, J. B (1994). Tau-beta-galactosidase, an axon-targeted fusion protein. Proc. Natl. Acad. Sci. USA 91, 5972-5976.[Abstract/Free Full Text]

Cheng, H. J. and Flanagan, J. G (1994). Identification and cloning of ELF-1, a developmentally expressed ligand for the Mek4 and Sek receptor tyrosine kinases. Cell 79, 157-168.[Medline]

Ciossek, T., Monschau, B., Kremoser, C., L\232schinger, J., Lang, S., Muller, B. K., Bonhoeffer, F. and Drescher, U (1998). Eph receptor-ligand interactions are necessary for guidance of retinal ganglion cell axons in vitro. Eur. J. Neurosci 10, 1574-1580.[Medline]

Daniel, T. O., Stein, E., Cerretti, D. P., St. John, P. L., Robert, B. L. and Abrahamson, D. R (1996). ELF and LERK-2 in developing kidney and microvascular endothelial assembly. Kidney Int 50, 73-.

Davy, A., Gale, N. W., Murray, E. W., Klinghofer, R. A., Soriano, P., Feuerstein, C. and Robbins, S. M (1999). Compartmentalized signaling by GPI-anchored ephrinA5 requires the fyn tyrosine kinase to regulate cellular adhesion. Gen. Dev 13, 3125-3135.[Abstract/Free Full Text]

Davy, A., Feuerstein, C. and Robbins, S. M (2000). Signaling within acaveolae-like membrane microdomain in human neuroblastoma cells in response to fibroblast growth factor. J. Neurochem 74, 676-683.[Medline]

Davy, A. and Robbins, S. M (2000). EphrinA5 modulates cell adhesion andmorphology in an integrin-dependent manner. EMBO J 19, 5396-5405.[Medline]

Doherty, P., Singh, A., Rimon, G., Bolsover, S. R. and Walsh, F. S (1993). Thy-1 antibody triggered neurite outgrowth requires an influx of calcium into neurons via N-and L-type calcium channels. J. Biol. Chem 122, 181-189.

Drescher, U., Bonhoeffer, F. and Muller, B. K (1997). The Eph family in retinal axon guidance. Curr. Opin. Neurobiol 7, 75-80.[Medline]

Dulac, C (2000). Sensory coding of pheromone signals in mammals. Curr. Opin. Neurobiol 10, 511-518.[Medline]

Dulac, C. and Axel, R (1995). A novel family of genes encoding putative pheromone receptors in mammals. Cell 83, 195-206.[Medline]

Economides, A. N., Ravetch, J. V., Yancopoulos, G. D. and Stahl, N (1995). Designer cytokines: targeting actions to cells of choise. Science 270, 1351-1353.[Abstract/Free Full Text]

Flanagan, J. G. and Leder, P (1990). The kit ligand: a cell surface molecule altered in steel mutant fibroblasts. Cell 63, 185-194.[Medline]

Flanagan, J. G. and Vanderhaeghen, P (1998). The ephrins and Eph receptors in neural development. Annu. Rev. Neurosci 21, 309-345.[Medline]

Frisen, J., Holmberg, J. and Barbacid, M (1999). Ephrins and their Eph receptors: multitalented directors of embryonic development. EMBO J 18, 5159-65.[Medline]

Gale, N. W., Holland, S. J., Valenzuela, D. M., Flenniken, A., Pan, L., Ryan, T. E., Henkemeyer, M., Strebhardt, K., Hirai, H., Wilkinson, D. G., Pawson, T. and Yancopoulos, G. D (1996). Eph receptors and ligands comprise two major specificity subclasses and are reciprocally compartmentalized during embryogenesis. Neuron 17, 9-19.[Medline]

Gierer, A (1998). Possible involvement of gradients in guidance of receptor cell axons towards their target position on the olfactory bulb. Eur. J. Neurosci 10, 388-391.[Medline]

Grant, P., Tseng, D., Gould, R. M., Gainer, H. and Pant, H. C (1995). Expression of neurofilament proteins during development of the nervous system in the squid Loligo pealei. J. Comp. Neurol 356, 311-326.[Medline]

Halpern, M (1987). The organization and function of the vomeronasal system. Annu. Rev. Neurosci 10, 325-362.[Medline]

Henkemeyer, M., Orioli, D., Henderson, J. T., Saxton, T. M., Roder, J., Pawson, T. and Klein, R (1996). Nuk controls pathfinding of commissural axons in the mammalian central nervous system. Cell 86, 35-46.[Medline]

Herrada, G. and Dulac, C (1997). A novel family of putative pheromone receptors in mammals with a topographically organized and sexually dimorphic distribution. Cell 90, 763-773.[Medline]

Hinds, J. W (1968). Autoradiographic study of histogenesis in the mouse olfactory bulb. I. Time of origin of neurons and neuroglia. J. Comp. Neurol 134, 287-304.[Medline]

Holash, J. A., Soans, C., Chong, L. D., Shao, H., Dixit, V. M. and Pasquale, E. B (1997). Reciprocal expression of the Eph receptor Cek5 and its ligand(s) in the early retina. Dev. Biol 182, 256-269.[Medline]

Holder, N. and Klein, R (1999). Eph receptors and ephrins: effectors of morphogenesis. Development 126, 2033-2044.[Abstract]

Holland, S. J., Gale, N. W., Mbamalu, G., Yancopoulos, G. D., Henkemeyer, M. and Pawson, T (1996). Bidirectional signalling through the eph-family receptor Nuk and its transmembrane ligands. Nature 383, 722-725.[Medline]

Holland, S. J., Peles, E., Pawson, T. and Schlessinger, J (1998). Cell-contact-dependent signalling in axon growth and guidance: Eph receptor tyrosine kinases and receptor protein tyrosine phosphatase beta. Curr. Opin. Neurobiol 8, 117-127.[Medline]

Holmberg, J., Clarke, D. L. and Frisen, J (2000). Regulation of repulsion versus adhesion by different splice forms of an Eph receptor. Nature 408, 203-206.[Medline]

Hornberger, M. R., Dutting, D., Ciossek, T., Yamada, T., Handwerker, C., Lang, S., Weth, F., Huf, J., Wessel, R., Logan, C., Tanaka, H. and Drescher, U (1999). Modulation of EphA receptor function by coexpressed ephrinA ligands on retinal ganglion cell axons. Neuron 22, 731-742.[Medline]

Horowitz, L. F., Montmayeur, J. P., Echelard, Y. and Buck, L. B (1999). A genetic approach to trace neural circuits. Proc. Natl. Acad. Sci. USA 96, 3194-3199.[Abstract/Free Full Text]

Huynh-Do, U., Stein, E., Lane, A. A., Liu, H., Ceretti, D. P. and Daniel, T. O (1999). Surface densities of ephrin-B1 determine EphB1-coupled activation of cell attachment through av\2473 and a5b1 integrins. EMBO J 18, 2165-2173.[Medline]

Ichikawa, M., Takami, S., Osada, T. and Graziadei, P (1994). Differential development of binding sites of two lectins in the vomeronasal axons of the rat accessory olfactoy bulb. Dev. Brain Res 78, 1-9.[Medline]

Imamura, M., Mori, K., Fujita, S. and Obata, K (1985). Immunocytochemical identification of subgroups of vomeronasal nerve fibers and their segregated terminations in the accessory olfactory bulb. Brain Res 326, 362-366.[Medline]

Jia, C. and Halpern, M (1996). Subclasses of vomeronasal receptor neurons: differential expression of G proteins (Gi alpha 2 and G(o alpha)) and segregated projections to the accessory olfactory bulb. Brain Res 719, 117-128.[Medline]

Keverne, E. B (1999). The vomeronasal organ. Science 286, 716-720.[Abstract/Free Full Text]

Krieger, J., Schmitt, A., Lobel, D., Gudermann, T., Schultz, G., Breer, H. and Boekhoff, I (1999). Selective activation of G protein subtypes in the vomeronasal organ upon stimulation with urine-derived compounds. J. Biol. Chem 274, 4655-4662.[Abstract/Free Full Text]

Massague, J (1996). Crossing receptor boundaries. Nature 382, 29-30.[Medline]

Matsunami, H. and Buck, L. B (1997). A multigene family encoding a diverse array of putative pheromone receptors in mammals. Cell 90, 775-784.[Medline]

Mellitzer, G., Xu, Q. and Wilkinson, D. G (1999). Eph receptors and ephrins restrict cell intermingling and communication. Nature 400, 77-81.[Medline]

Mellitzer, G., Xu, Q. and Wilkinson, D. G (2000). Control of cell behaviour by signalling through Eph receptors and ephrins. Curr. Opin. Neurobiol 10, 400-408.[Medline]

Mombaerts, P., Wang, F., Dulac, C., Chao, S. K., Nemes, A., Mendelsohn, M., Edmondson, J. and Axel, R (1996). Visualizing an olfactory sensory map. Cell 87, 675-686.[Medline]

Muller, B. K (1999). Growth cone guidance: first steps towards a deeper understanding. Annu. Rev. Neurosci 22, 351-388.[Medline]

O'Leary, D. D. M. and Wilkinson, D. G (1999). Eph receptors and ephrins in neural development. Curr. Opin. Neurobiol 9, 65-73.[Medline]

O'Leary, D. D. M., Yates, P. A. and McLaughlin, T (1999). Molecular development of sensory maps: representing sights and smells in the brain. Cell 98, 255-269.

Pandey, A., Shao, H. N., Marks, R. M., Polverini, P. J. and Dixit, V. M (1995). Role of B61, the ligand for the eck receptor tyrosine kinase, in TNF-alpha-induced angiogenesis. Science 268, 567-569.[Abstract/Free Full Text]

Park, S., Frisen, J. and Barbacid, M (1997). Aberrant axonal projections in mice lacking EphA8 (Eek) tyrosine kinase receptors. EMBO J 16, 3106-3114.[Medline]

Peles, E., Nativ, M., Lustig, M., Grumet, M., Schilling, J., Martinez, R., Plowman, G. D. and Schlessinger, J (1997). Identification of a novelcontactin-associated transmembrane receptor with multiple domains implicated in protein-protein interactions. EMBO J 16, 978-988.[Medline]

Rodriguez, I., Feinstein, P. and Mombaerts, P (1999). Variable patterns of axonal projections of sensory neurons in the mouse vomeronasal system. Cell 97, 199-208.[Medline]

Ryba, N. J. and Tirindelli, R (1997). A new multigene family of putative pheromone receptors. Neuron 19, 371-379.[Medline]

Schaeren-Wiemers, N. and Gerfin-Moser, A (1993). A single protocol to detect transcripts of various types and expression levels in neural tissue and cultured cells: in situ hybridization using digoxigenin-labelled cRNA probes. Histochemistry 100, 431-440.[Medline]

Sobieszczuk, D. F. and Wilkinson, D. G (1999). Masking of Eph receptors and ephrins. Curr. Biol 9, 469-.

St John, J. A., Tisay, K. T., Caras, I. W. and Key, B (2000). Expression of EphA5 during development of the olfactory nerve pathway in rat. J. Comp. Neurol 416, 540-550.[Medline]

Stein, E., Lane, A. A., Cerretti, D. P., Schoecklmann, H. O., Schroff, A. D., Van Etten, R. L. and Daniel, T. O (1998). Eph receptors discriminate specific ligand oligomers to determine alternative signaling complexes, attachment, and assembly responses. Genes Dev 12, 667-678.[Abstract/Free Full Text]

Tessier-Lavigne, M. and Goodman, C. S (1996). The molecular biology of axon guidance. Science 274, 1123-1133.[Abstract/Free Full Text]

Vielmetter, J., Stolze, B., Bonhoeffer, F. and Stuermer, C. A (1990). In vitro assay to test differential substrate affinities of growing axons and migratory cells. Exp. Brain Res 81, 283-287.[Medline]

von Campenhausen, H. and Mori, K (2000). Convergence of segregated pheromonal pathways from the accessory olfactory bulb to the cortex in the mouse. Eur. J. Neurosci 12, 33-46.[Medline]

von Campenhausen, H., Yoshihara, Y. and Mori, K (1997). O-CAM reveals segregated mitral/tufted cell pathways in developing accessory olfactory bulb. NeuroReport 8, 2607-2612.[Medline]

Walter, J., Kern-Veits, B., Huf, J., Stolze, B. and Bonhoeffer, F (1987). Recognition of position-specific properties of tectal cell membranes by retinal axons in vitro. Development 101, 685-696.[Abstract/Free Full Text]

Wang, F., Nemes, A., Mendelsohn, M. and Axel, R (1998). Odorant receptors govern the formation of a precise topographic map. Cell 93, 47-60.[Medline]

Wilkinson, D. G (2000). Eph receptors and ephrins: regulators of guidance and assembly. Int. Rev. Cytol 196, 177-244.[Medline]

Xu, Q., Mellitzer, G., Robinson, V. and Wilkinson, D. G (1999). In vivo cell sorting in complementary segmental domains mediated by Eph receptors and ephrins. Nature 399, 267-271.[Medline]

Zhang, J.-H., Cerretti, D. P., Yu, T., Flanagan, J. G. and Zhou, R (1996). Detection of ligands in regions anatomically connected to neurons expressing the Eph receptor Bsk: potential roles in neuron-target interaction. J. Neurosci 16, 7182-7192.[Abstract/Free Full Text]

Zhou, R. P (1998). The Eph family receptors and ligands. Pharm. Ther 77, 151-181.




This article has been cited by other articles:


Home page
Mol. Cell. Biol.Home page
J. Shin, C. Gu, E. Park, and S. Park
Identification of Phosphotyrosine Binding Domain-Containing Proteins as Novel Downstream Targets of the EphA8 Signaling Function
Mol. Cell. Biol., December 1, 2007; 27(23): 8113 - 8126.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
A. Dufour, J. Egea, K. Kullander, R. Klein, and P. Vanderhaeghen
Genetic analysis of EphA-dependent signaling mechanisms controlling topographic mapping in vivo
Development, November 15, 2006; 133(22): 4415 - 4420.
[Abstract] [Full Text] [PDF]


Home page
Chem SensesHome page
F. Merigo, C. Mucignat-Caretta, and C. Zancanaro
Timing of Neuronal Intermediate Filament Proteins Expression in the Mouse Vomeronasal Organ During Pre- and Postnatal Development. An Immunohistochemical Study
Chem Senses, October 1, 2005; 30(8): 707 - 717.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. A. Gamble, D. K. Karunadasa, J.-R. Pape, M. J. Skynner, M. G. Todman, R. J. Bicknell, J. P. Allen, and A. E. Herbison
Disruption of Ephrin Signaling Associates with Disordered Axophilic Migration of the Gonadotropin-Releasing Hormone Neurons
J. Neurosci., March 23, 2005; 25(12): 3142 - 3150.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
J. Holmberg, A. Armulik, K.-A. Senti, K. Edoff, K. Spalding, S. Momma, R. Cassidy, J. G. Flanagan, and J. Frisen
Ephrin-A2 reverse signaling negatively regulates neural progenitor proliferation and neurogenesis
Genes & Dev., February 15, 2005; 19(4): 462 - 471.
[Abstract] [Full Text] [PDF]


Home page
PhysiologyHome page
G. Serini and F. Bussolino
Common Cues in Vascular and Axon Guidance
Physiology, December 1, 2004; 19(6): 348 - 354.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J.-F. Cloutier, A. Sahay, E. C. Chang, M. Tessier-Lavigne, C. Dulac, A. L. Kolodkin, and D. D. Ginty
Differential Requirements for Semaphorin 3F and Slit-1 in Axonal Targeting, Fasciculation, and Segregation of Olfactory Sensory Neuron Projections
J. Neurosci., October 13, 2004; 24(41): 9087 - 9096.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
B. Knoll and U. Drescher
Src Family Kinases Are Involved in EphA Receptor-Mediated Retinal Axon Guidance
J. Neurosci., July 14, 2004; 24(28): 6248 - 6257.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
Z.-Y. Chen, C. Sun, K. Reuhl, A. Bergemann, M. Henkemeyer, and R. Zhou
Abnormal Hippocampal Axon Bundling in EphB Receptor Mutant Mice
J. Neurosci., March 10, 2004; 24(10): 2366 - 2374.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
D. A. Feldheim, M. Nakamoto, M. Osterfield, N. W. Gale, T. M. DeChiara, R. Rohatgi, G. D. Yancopoulos, and J. G. Flanagan
Loss-of-Function Analysis of EphA Receptors in Retinotectal Mapping
J. Neurosci., March 10, 2004; 24(10): 2542 - 2550.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. Eberhart, J. Barr, S. O'Connell, A. Flagg, M. E. Swartz, K. S. Cramer, K. W. Tosney, E. B. Pasquale, and C. E. Krull
Ephrin-A5 Exerts Positive or Inhibitory Effects on Distinct Subsets of EphA4-Positive Motor Neurons
J. Neurosci., February 4, 2004; 24(5): 1070 - 1078.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
M. Kaneko and A. Nighorn
Interaxonal Eph-Ephrin Signaling May Mediate Sorting of Olfactory Sensory Axons in Manduca sexta
J. Neurosci., December 17, 2003; 23(37): 11523 - 11538.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
A. Vaidya, A. Pniak, G. Lemke, and A. Brown
EphA3 Null Mutants Do Not Demonstrate Motor Axon Guidance Defects
Mol. Cell. Biol., November 15, 2003; 23(22): 8092 - 8098.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
B. Knoll, H. Schmidt, W. Andrews, S. Guthrie, A. Pini, V. Sundaresan, and U. Drescher
On the topographic targeting of basal vomeronasal axons through Slit-mediated chemorepulsion
Development, November 1, 2003; 130(21): 5073 - 5082.
[Abstract] [Full Text] [PDF]


Home page
Genes Dev.Home page
A. Palmer and R. Klein
Multiple roles of ephrins in morphogenesis, neuronal networking, and brain function
Genes & Dev., June 15, 2003; 17(12): 1429 - 1450.
[Full Text] [PDF]


Home page
DevelopmentHome page
C. Weinl, U. Drescher, S. Lang, F. Bonhoeffer, and J. Loschinger
On the turning of Xenopus retinal axons induced by ephrin-A5
Development, April 15, 2003; 130(8): 1635 - 1643.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
L.-H. Ang, J. Kim, V. Stepensky, and H. Hing
Dock and Pak regulate olfactory axon pathfinding in Drosophila
Development, April 1, 2003; 130(7): 1307 - 1316.
[Abstract] [Full Text] [PDF]


Home page
ScienceHome page
B. J. Dickson
Molecular Mechanisms of Axon Guidance
Science, December 6, 2002; 298(5600): 1959 - 1964.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
D. Uziel, S. Muhlfriedel, K. Zarbalis, W. Wurst, P. Levitt, and J. Bolz
Miswiring of Limbic Thalamocortical Projections in the Absence of Ephrin-A5
J. Neurosci., November 1, 2002; 22(21): 9352 - 9357.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
A. Walz, I. Rodriguez, and P. Mombaerts
Aberrant Sensory Innervation of the Olfactory Bulb in Neuropilin-2 Mutant Mice
J. Neurosci., May 15, 2002; 22(10): 4025 - 4035.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
S. Elowe, S. J. Holland, S. Kulkarni, and T. Pawson
Downregulation of the Ras-Mitogen-Activated Protein Kinase Pathway by the EphB2 Receptor Tyrosine Kinase Is Required for Ephrin-Induced Neurite Retraction
Mol. Cell. Biol., November 1, 2001; 21(21): 7429 - 7441.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
E. Birgbauer, S. F. Oster, C. G. Severin, and D. W. Sretavan
Retinal axon growth cones respond to EphB extracellular domains as inhibitory axon guidance cues
Development, August 1, 2001; 128(15): 3041 - 3048.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Knoll, B.
Right arrow Articles by Drescher, U.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Knoll, B.
Right arrow Articles by Drescher, U.