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J. Cartaud, J. Changeux (1993)
Post‐transcriptional Compartmentalization of Acetylcholine Receptor Biosynthesis in the Subneural Domain of Muscle and Electrocyte JunctionsEuropean Journal of Neuroscience, 5
T. Jessell, R. Siegel, G. Fischbach (1979)
Induction of acetylcholine receptors on cultured skeletal muscle by a factor extracted from brain and spinal cord.Proceedings of the National Academy of Sciences of the United States of America, 76 10
M. Letinsky, K. Fischbeck, Uel McMahan (1976)
Precision of reinnervation of original postsynaptic sites in frog muscle after a nerve crushJournal of Neurocytology, 5
R. Balice-Gordon, J. Lichtman (1994)
Long-term synapse loss induced by focal blockade of postsynaptlc receptorsNature, 372
M. Helgren, S. Squinto, H. Davis, D. Parry, T. Boulton, Carol Heck, Yuan Zhu, G. Yancopoulos, R. Lindsay, P. Distefano (1994)
Trophic effect of ciliary neurotrophic factor on denervated skeletal muscleCell, 76
J. Conover, Jeffery Erickson, D. Katz, L. Bianchi, W. Poueymirou, J. McClain, Li Pan, M. Helgren, N. Ip, P. Boland, B. Friedman, S. Wiegand, R. Vejsada, A. Kato, T. Dechiara, G. Yancopoulos (1995)
Neuronal deficits, not involving motor neurons, in mice lacking BDNF and/or NT4Nature, 375
Earl Godfrey, R. Nitkin, Bruce Wallace, Lee Rubin, U. McMahan (1984)
Components of Torpedo electric organ and muscle that cause aggregation of acetylcholine receptors on cultured muscle cellsThe Journal of Cell Biology, 99
Uel McMahan (1990)
The agrin hypothesis.Cold Spring Harbor symposia on quantitative biology, 55
Bruce Wallace (1994)
Staurosporine inhibits agrin-induced acetylcholine receptor phosphorylation and aggregationThe Journal of Cell Biology, 125
C. Jennings, S. Dyer, S. Burden (1993)
Muscle-specific trk-related receptor with a kringle domain defines a distinct class of receptor tyrosine kinases.Proceedings of the National Academy of Sciences of the United States of America, 90 7
Pamposh Ganju, E. Walls, J. Brennan, Alastair Reith (1995)
Cloning and developmental expression of Nsk2, a novel receptor tyrosine kinase implicated in skeletal myogenesis.Oncogene, 11 2
Thomas Sato, Y. Tozawa, U. Deutsch, K. Wolburg-Buchholz, Y. Fujiwara, M. Gendron-Maguire, T. Gridley, H. Wolburg, W. Risau, Ying Qin (1995)
Distinct roles of the receptor tyrosine kinases Tie-1 and Tie-2 in blood vessel formationNature, 376
Y. Son, W. Thompson (1995)
Nerve sprouting in muscle is induced and guided by processes extended by schwann cellsNeuron, 14
Friedman , spliced forms of agrin
W. Snider (1994)
Functions of the neurotrophins during nervous system development: What the knockouts are teaching usCell, 77
Mariano Barbacid (1993)
Nerve growth factor: a tale of two receptors.Oncogene, 8 8
BG Wallace (1989)
Agrin-induced specializations contain cytoplasmic, membrane, and extracellular matrix-associated components of the postsynaptic apparatus, 9
(1995)
Neuregulins and their recep - ment : the neuromuscular junction . Cell 72 / Neuron 10 ( Suppl . ) , tors
(1984)
The influence of basal lamina vascular endothelium
M. Karnovsky (1964)
THE LOCALIZATION OF CHOLINESTERASE ACTIVITY IN RAT CARDIAC MUSCLE BY ELECTRON MICROSCOPYThe Journal of Cell Biology, 23
M. Rüegg, K. Tsim, S. Horton, S. Kröger, G. Escher, E. Gensch, U. McMahan (1992)
The agrin gene codes for a family of basal lamina proteins that differ in function and distributionNeuron, 8
D. Harris, D. Falls, G. Fischbach (1989)
Differential activation of myotube nuclei following exposure to an acetylcholine receptor-inducing factorNature, 337
G. Chu, L. Moscoso, M. Sliwkowski, J. Merlie (1995)
Regulation of the acetylcholine receptor ϵ subunit gene by recombinant ARIA: An in vitro model for transynaptic gene regulationNeuron, 14
F. Rupp, D. Payan, C. Magill-Solc, D. Cowan, R. Scheller (1991)
Structure and expression of a rat agrinNeuron, 6
D. Falls, D. Harris, F. Johnson, M. Morgan, G. Corfas, G. Fischbach (1990)
Mr 42,000 ARIA: a protein that may regulate the accumulation of acetylcholine receptors at developing chick neuromuscular junctions.Cold Spring Harbor symposia on quantitative biology, 55
M. Brown, R. Holland, W. Hopkins (1981)
Motor nerve sprouting.Annual review of neuroscience, 4
M. Gautam, P. Noakes, J. Mudd, Mia Nichol, G. Chu, J. Sanes, J. Merlie (1995)
Failure of postsynaptic specialization to develop at neuromuscular junctions of rapsyn-deficient miceNature, 377
M. Bowe, K. Deyst, J. Leszyk, J. Fallon (1994)
Identification and purification of an agrin receptor from torpedo postsynaptic membranes: A heteromeric complex related to the dystroglycansNeuron, 12
A. Duclert, J. Changeux (1995)
Acetylcholine receptor gene expression at the developing neuromuscular junction.Physiological reviews, 75 2
Z. Qu, R. Huganir (1994)
Comparison of innervation and agrin-induced tyrosine phosphorylation of the nicotinic acetylcholine receptor, 14
M. Bowe, Justin Fallon (1995)
The role of agrin in synapse formation.Annual review of neuroscience, 18
S. Burden, S. Jo, Jicheng Tang, Xuejun Zhu, J. Yeadon, A. Simon (1995)
Polarity in skeletal muscle cells is induced by innervationSeminars in Developmental Biology, 6
K. Carraway, S. Burden (1995)
Neuregulins and their receptorsCurrent Opinion in Neurobiology, 5
U. McMahan, C. Slater (1984)
The influence of basal lamina on the accumulation of acetylcholine receptors at synaptic sites in regenerating muscleThe Journal of Cell Biology, 98
E. Apel, S. Roberds, K. Campbell, J. Merlie (1995)
Rapsyn may function as a link between the acetylcholine receptor and the agrin-binding dystrophin-associated glycoprotein complexNeuron, 15
D. Kuffler (1986)
Accurate reinnervation of motor end plates after disruption of sheath cells and muscle fibersJournal of Comparative Neurology, 250
(1995)
Cloning and regenerating muscles
R. Nitkin, Martin Smith, C. Magill, J. Fallon, Yung-Mae Yao, B. Wallace, U. McMahan (1987)
Identification of agrin, a synaptic organizing protein from Torpedo electric organThe Journal of Cell Biology, 105
Z. Hall, J. Sanes (1993)
Synaptic structure and development: The neuromuscular junctionCell, 72
G. Fong, J. Rossant, M. Gertsenstein, M. Breitman (1995)
Role of the Flt-1 receptor tyrosine kinase in regulating the assembly of vascular endotheliumNature, 376
R. Sealock, S. Froehner (1994)
Dystrophin-associated proteins and synapse formation: Is α-dystroglycan the agrin receptor?Cell, 77
D. Falls, K. Rosen, G. Corfas, William Lane, G. Fischbach (1993)
ARIA, a protein that stimulates acetylcholine receptor synthesis, is a member of the neu ligand familyCell, 72
M. Gautam, P. Noakes, L. Moscoso, F. Rupp, R. Scheller, J. Merlie, J. Sanes (1996)
Defective Neuromuscular Synaptogenesis in Agrin-Deficient Mutant MiceCell, 85
D. Glass, D. Bowen, T. Stitt, C. Radziejewski, J. Bruno, T. Ryan, D. Gies, Sonal Shah, Karen Mattsson, S. Burden, P. Distefano, D. Valenzuela, T. Dechiara, G. Yancopoulos (1996)
Agrin Acts via a MuSK Receptor ComplexCell, 85
Bruce Wallace (1995)
Regulation of the interaction of nicotinic acetylcholine receptors with the cytoskeleton by agrin-activated protein tyrosine kinaseThe Journal of Cell Biology, 128
W. Hoch, M. Ferns, J. Campanelli, Z. Hall, R. Scheller (1993)
Developmental regulation of highly active alternatively spliced forms of agrinNeuron, 11
J. Martinou, D. Falls, G. Fischbach, J. Merlie (1991)
Acetylcholine receptor-inducing activity stimulates expression of the epsilon-subunit gene of the muscle acetylcholine receptor.Proceedings of the National Academy of Sciences of the United States of America, 88 17
D. Valenzuela, T. Stitt, P. Distefano, E. Rojas, Karen Mattsson, D. Compton, L. Nuñez, John Park, J. Stark, D. Gies, Susan Thomas, M. Beau, A. Fernald, N. Copeland, N. Jenkins, S. Burden, D. Glass, G. Yancopoulos (1995)
Receptor tyrosine kinase specific for the skeletal muscle lineage: Expression in embryonic muscle, at the neuromuscular junction, and after injuryNeuron, 15
K. Tsim, M. Rüegg, G. Escher, S. Kröger, U. McMahan (1992)
cDNA that encodes active agrinNeuron, 8
Nedret Altiok, J. Bessereau, J. Changeux (1995)
ErbB3 and ErbB2/neu mediate the effect of heregulin on acetylcholine receptor gene expression in muscle: differential expression at the endplate.The EMBO Journal, 14
(1995)
Mice lacking the CNTF extracted from brain and spinal cord
David Glass, G. Yancopoulos (1993)
The neurotrophins and their receptors.Trends in cell biology, 3 8
K. Buckley, R. Kelly (1985)
Identification of a transmembrane glycoprotein specific for secretory vesicles of neural and endocrine cellsThe Journal of Cell Biology, 100
James Campanelll, S. Roberds, K. Campbell, R. Scheller (1994)
A role for dystrophin-associated glycoproteins and utrophin in agrin-induced AChR clusteringCell, 77
B. Wallace, Z. Qu, Huganir Richard (1991)
Agrin induces phosphorylation of the nicotinic acetylcholine receptorNeuron, 6
Nature
S. Burden, P. Sargent, U. McMahan (1979)
Acetylcholine receptors in regenerating muscle accumulate at original synaptic sites in the absence of the nerveThe Journal of Cell Biology, 82
R. Levi-Montalcini (1975)
Nerve growth factor.Science, 187 4172
J. Sugiyama, D. Bowen, Z. Hall (1994)
Dystroglycan binds nerve and muscle agrinNeuron, 13
Piotr MasiakowskiS, R. Carroll (1992)
A novel family of cell surface receptors with tyrosine kinase-like domain.The Journal of biological chemistry, 267 36
(1991)
synthesis, is a member of the neu ligand family Acetylcholine receptor-inducing activity stimulates expression of Ferns
F. Shalaby, J. Rossant, T. Yamaguchi, M. Gertsenstein, Xiang-fu Wu, M. Breitman, A. Schuh (1995)
Failure of blood-island formation and vasculogenesis in Flk-1-deficient miceNature, 376
M. Ferns, Michael Deiner, Z. Hall (1996)
Agrin-induced acetylcholine receptor clustering in mammalian muscle requires tyrosine phosphorylationThe Journal of Cell Biology, 132
(1964)
J. Cell Biol
(1981)
Motor nerve containing 1 % BSA : rabbit antibodies to acetylcholinesterase were sprouting
S. Gee, F. Montanaro, M. Lindenbaum, S. Carbonetto (1994)
Dystroglycan-α, a dystrophin-associated glycoprotein, is a functional agrin receptorCell, 77
J. Sanes, L. Marshall, U. McMahan (1978)
Reinnervation of muscle fiber basal lamina after removal of myofibers. Differentiation of regenerating axons at original synaptic sitesThe Journal of Cell Biology, 78
S. Jo, Xuejun Zhu, M. Marchionni, S. Burden (1995)
Neuregulins are concentrated at nerve-muscle synapses and activate ACh–receptor gene expressionNature, 373
Xuejun Zhu, C. Lai, Steve Thomas, S Burden (1995)
Neuregulin receptors, erbB3 and erbB4, are localized at neuromuscular synapses.The EMBO Journal, 14
N. Reist, M. Werle, U. McMahan (1992)
Agrin released by motor neurons induces the aggregation of acetylcholine receptors at neuromuscular junctionsNeuron, 8
L. Moscoso, G. Chu, M. Gautam, P. Noakes, J. Merlie, J. Sanes (1995)
Synapse-associated expression of an acetylcholine receptor-inducing protein, ARIA/heregulin, and its putative receptors, ErbB2 and ErbB3, in developing mammalian muscle.Developmental biology, 172 1
J. Schlessinger, A. Ullrich (1992)
Growth factor signaling by receptor tyrosine kinasesNeuron, 9
M. Ferns, J. Campanelli, W. Hoch, R. Scheller, Z. Hall (1993)
The ability of agrin to cluster AChRs depends on alternative splicing and on cell surface proteoglycansNeuron, 11
J. Sanes (1995)
The synaptic cleft of the neuromuscular junctionSeminars in Developmental Biology, 6
A. Simon, P. Hoppe, S. Burden (1992)
Spatial restriction of AChR gene expression to subsynaptic nuclei.Development, 114 3
(1995)
The role of agrin in synapsemg / ml p - phenylenediamine . The whole - mounts were viewed with formation
(1993)
Muscle - specific rones , but exhibit sensory neuron deficits distinct from mice lacking trk - related receptor with a kringle domain defines a distinct class of BDNF
T. Dechiara, R. Vejsada, W. Poueymirou, A. Acheson, C. Suri, J. Conover, B. Friedman, J. McClain, Li Pan, N. Stahl, N. Ip, A. Kato, G. Yancopoulos (1995)
Mice lacking the CNTF receptor, unlike mice lacking CNTF, exhibit profound motor neuron deficits at birthCell, 83
Andrew Goodearl, Ann Yee, Alfred Sandrock, Gabriel Corfas, Gerald Fischbach (1995)
ARIA is concentrated in the synaptic basal lamina of the developing chick neuromuscular junctionThe Journal of Cell Biology, 130
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Published: May 1, 1996
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