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 Cornish, T.
Right arrow Articles by Campanelli, J. T.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Cornish, T.
Right arrow Articles by Campanelli, J. T.
Apel, E. D., Glass, D. J., Moscoso, L. M., Yancopoulos, G. D. and Sanes, J. R (1997). Rapsyn is required for MuSK signaling and recruits synaptic components to a MuSK-containing scaffold. Neuron 18, 623-635.[Medline]

Bowe, M. A., Deyst, K. A., Leszyk, J. D. and Fallon, J. R (1994). Identification and purification of an agrin receptor from Torpedo postsynaptic membranes: a heteromeric complex related to the dystroglycans. Neuron 12, 1173-1180.[Medline]

Bowe, M. A. and Fallon, J. R (1995). The role of agrin in synapse formation. Annu. Rev. Neurosci 18, 443-462.[Medline]

Campagna, J. A., Ruegg, M. A. and Bixby, J. L (1995). Agrin is a differentiation-inducing \324stop signal' for motoneurons in vitro. Neuron 15, 1365-1374.[Medline]

Campagna, J. A., Ruegg, M. A. and Bixby, J. L (1997). Evidence that agrin directly influences presynaptic differentiation at neuromuscular junctions in vitro. Eur. J. Neurosci 9, 2269-2283.[Medline]

Campanelli, J. T., Gayer, G. G. and Scheller, R. H (1996). Alternative RNA splicing that determines agrin activity regulates binding to heparin and alpha-dystroglycan. Development 122, 1663-1672.[Abstract]

Campanelli, J. T., Hoch, W., Rupp, F., Kreiner, T. and Scheller, R. H (1991). Agrin mediates cell contact-induced acetylcholine receptor clustering. Cell 67, 909-916.[Medline]

Campanelli, J. T., Roberds, S. L., Campbell, K. P. and Scheller, R. H (1994). A role for dystrophin-associated glycoproteins and utrophin in agrin-induced AChR clustering. Cell 77, 663-674.[Medline]

Caplan, S. and Baniyash, M (1995). Multisubunit receptors in the immune system and their association with the cytoskeleton: in search of functional significance. Immunol. Res 14, 98-118.[Medline]

Chang, D., Woo, J. S., Campanelli, J., Scheller, R. H. and Ignatius, M. J (1997). Agrin inhibits neurite outgrowth but promotes attachment of embryonic motor and sensory neurons. Dev. Biol 181, 21-35.[Medline]

Cho, B. K., Schodin, B. A. and Kranz, D. M (1995). Characterization of a single-chain antibody to the beta-chain of the T cell receptor. J. Biol. Chem 270, 25819-25826.[Abstract/Free Full Text]

Coutts, J. C. and Gallagher, J. T (1995). Receptors for fibroblast growth factors. Immunol. Cell Biol 73, 584-589.[Medline]

Croft, M. and Dubey, C (1997). Accessory molecule and costimulation requirements for CD4 T cell response. Crit. Rev. Immunol 17, 89-118.[Medline]

DeChiara, T. M., Bowen, D. C., Valenzuela, D. M., Simmons, M. V., Poueymirou, W. T., Thomas, S., Kinetz, E., Compton, D. L., Rojas, E., Park, J. S. et al (1996). The receptor tyrosine kinase MuSK is required for neuromuscular junction formation in vivo. Cell 85, 501-512.[Medline]

Denzer, A. J., Brandenberger, R., Gesemann, M., Chiquet, M. and Ruegg, M. A (1997). Agrin binds to the nerve-muscle basal lamina via laminin. J. Cell Biol 137, 671-683.[Abstract/Free Full Text]

Ervasti, J. M. and Campbell, K. P (1993). A role for the dystrophin-glycoprotein complex as a transmembrane linker between laminin and actin. J. Cell Biol 122, 809-823.[Abstract/Free Full Text]

Ferns, M., Deiner, M. and Hall, Z (1996). Agrin-induced acetylcholine receptor clustering in mammalian muscle requires tyrosine phosphorylation. J. Cell Biol 132, 937-944.[Abstract/Free Full Text]

Ferns, M., Hoch, W., Campanelli, J. T., Rupp, F., Hall, Z. W. and Scheller, R. H (1992). RNA splicing regulates agrin-mediated acetylcholine receptor clustering activity on cultured myotubes. Neuron 8, 1079-1086.[Medline]

Ferns, M. J., Campanelli, J. T., Hoch, W., Scheller, R. H. and Hall, Z (1993). The ability of agrin to cluster AChRs depends on alternative splicing and on cell surface proteoglycans. Neuron 11, 491-502.[Medline]

Fertuck, H. C. and Salpeter, M. M (1976). Quantitation of junctional and extrajunctional acetylcholine receptors by electron microscope autoradiography after 125I-alpha-bungarotoxin binding at mouse neuromuscular junctions. J. Cell Biol 69, 144-158.[Abstract/Free Full Text]

Gautam, M., Noakes, P. G., Moscoso, L., Rupp, F., Scheller, R. H., Merlie, J. P. and Sanes, J. R (1996). Defective neuromuscular synaptogenesis in agrin-deficient mutant mice. Cell 85, 525-535.[Medline]

Gautam, M., Noakes, P. G., Mudd, J., Nichol, M., Chu, G. C., Sanes, J. R. and Merlie, J. P (1995). Failure of postsynaptic specialization to develop at neuromuscular junctions of rapsyn-deficient mice. Nature 377, 232-236.[Medline]

Gee, S. H., Montanaro, F., Lindenbaum, M. H. and Carbonetto, S (1994). Dystroglycan-alpha, a dystrophin-associated glycoprotein, is a functional agrin receptor. Cell 77, 675-686.[Medline]

Gesemann, M., Cavalli, V., Denzer, A. J., Brancaccio, A., Schumacher, B. and Ruegg, M. A (1996). Alternative splicing of agrin alters its binding to heparin, dystroglycan, and the putative agrin receptor. Neuron 16, 755-767.[Medline]

Gesemann, M., Denzer, A. J. and Ruegg, M. A (1995). Acetylcholine receptor-aggregating activity of agrin isoforms and mapping of the active site. J. Cell Biol 128, 625-636.[Abstract/Free Full Text]

Glass, D. J., Apel, E. D., Shah, S., Bowen, D. C., DeChiara, T. M., Stitt, T. N., Sanes, J. R. and Yancopoulos, G. D (1997). Kinase domain of the muscle-specific receptor tyrosine kinase (MuSK) is sufficient for phosphorylation but not clustering of acetylcholine receptors: required role for the MuSK ectodomain?. Proc. Natl. Acad. Sci. USA 94, 8848-8853.[Abstract/Free Full Text]

Glass, D. J., Bowen, D. C., Stitt, T. N., Radziejewski, C., Bruno, J., Ryan,T. E., Gies, D. R., Shah, S., Mattsson, K., Burden, S. J. et al (1996). Agrin acts via a MuSK receptor complex. Cell 85, 513-523.[Medline]

Hoch, W., Campanelli, J. T., Harrison, S. and Scheller, R. H (1994). Structural domains of agrin required for clustering of nicotinic acetylcholine receptors. EMBO J 13, 2814-2821.[Medline]

Hopf, C. and Hoch, W (1996). Agrin binding to alpha-dystroglycan. Domains of agrin necessary to induce acetylcholine receptor clustering are overlapping but not identical to the alpha-dystroglycan-binding region. J. Biol. Chem 271, 5231-5236.[Abstract/Free Full Text]

Hopf, C. and Hoch, W (1998). Dimerization of the muscle-specific kinase induces tyrosine phosphorylation of acetylcholine receptors and their aggregation on the surface of myotubes. J. Biol. Chem 273, 6467-6473.[Abstract/Free Full Text]

Joseph, D. R (1997). Sequence and functional relationships between androgen-binding protein/sex hormone-binding globulin and its homologs protein S, Gas6, laminin, and agrin. Steroids 62, 578-588.[Medline]

Martin, P. T. and Sanes, J. R (1997). Integrins mediate adhesion to agrin and modulate agrin signaling. Development 124, 3909-3917.[Abstract]

Megeath, L. J. and Fallon, J. R (1998). Intracellular calcium regulates agrin-induced acetylcholine receptor clustering. J. Neurosci 18, 672-678.[Abstract/Free Full Text]

Miner, J. H., Patton, B. L., Lentz, S. I., Gilbert, D. J., Snider, W. D., Jenkins, N. A., Copeland, N. G. and Sanes, J. R (1997). The laminin alpha chains: expression, developmental transitions, and chromosomal locations of alpha1-5, identification of heterotrimeric laminins 8-11, and cloning of a novel alpha3 isoform. J. Cell Biol 137, 685-701.[Abstract/Free Full Text]

Montanaro, F., Gee, S. H., Jacobson, C., Lindenbaum, M. H., Froehner, S. C. and Carbonetto, S (1998). Laminin and alpha-dystroglycan mediate acetylcholine receptor aggregation via a MuSK-independent pathway. J. Neurosci 18, 1250-1260.[Abstract/Free Full Text]

O'Toole, J. J., Deyst, K. A., Bowe, M. A., Nastuk, M. A., McKechnie, B. A. and Fallon, J. R (1996). Alternative splicing of agrin regulates its binding to heparin alpha-dystroglycan, and the cell surface. Proc. Natl. Acad. Sci. USA 93, 7369-7374.[Abstract/Free Full Text]

Ozawa, E., Yoshida, M., Suzuki, A., Mizuno, Y., Hagiwara, Y. and Noguchi, S (1995). Dystrophin-associated proteins in muscular dystrophy. Hum. Mol. Genet 4, 1711-1716.[Abstract]

Rapraeger, A. C (1995). In the clutches of proteoglycans: how does heparan sulfate regulate FGF binding?. Chem. Biol 2, 645-649.[Medline]

Ruegg, M. A., Tsim, K. W., Horton, S. E., Kroger, S., Escher, G., Gensch, E. M. and McMahan, U. J (1992). The agrin gene codes for a family of basal lamina proteins that differ in function and distribution. Neuron 8, 691-699.[Medline]

Rupp, F., Ozcelik, T., Linial, M., Peterson, K., Francke, U. and Scheller, R (1992). Structure and chromosomal localization of the mammalian agrin gene. J. Neurosci 12, 3535-3544.[Abstract]

Rupp, F., Payan, D. G., Magill-Solc, C., Cowan, D. M. and Scheller, R. H (1991). Structure and expression of a rat agrin. Neuron 6, 811-823.[Medline]

Sugiyama, J., Bowen, D. C. and Hall, Z. W (1994). Dystroglycan binds nerve and muscle agrin. Neuron 13, 103-115.[Medline]

Sugiyama, J. E., Glass, D. J., Yancopoulos, G. D. and Hall, Z. W (1997). Laminin-induced acetylcholine receptor clustering: an alternative pathway. J. Cell Biol 139, 181-191.[Abstract/Free Full Text]

Tsim, K. W., Ruegg, M. A., Escher, G., Kroger, S. and McMahan, U. J (1992). cDNA that encodes active agrin. Neuron 8, 677-689.[Medline]

Vlodavsky, I., Miao, H. Q., Medalion, B., Danagher, P. and Ron, D (1996). Involvement of heparan sulfate and related molecules in sequestration and growth promoting activity of fibroblast growth factor. Cancer Metastasis Rev 15, 177-186.[Medline]

Wallace, B. G (1988). Regulation of agrin-induced acetylcholine receptor aggregation by Ca++and phorbol ester. J. Cell Biol 107, 267-278.[Abstract/Free Full Text]

Wallace, B. G (1994). Staurosporine inhibits agrin-induced acetylcholine receptor phosphorylation and aggregation. J. Cell Biol 125, 661-668.[Abstract/Free Full Text]

Wallace, B. G., Qu, Z. and Huganir, R. L (1991). Agrin induces phosphorylation of the nicotinic acetylcholine receptor. Neuron 6, 869-878.[Medline]

Wange, R. L. and Samelson, L. E (1996). Complex complexes: signaling at the TCR. Immunity 5, 197-205.[Medline]




This article has been cited by other articles:


Home page
J. Biol. Chem.Home page
P. Scotton, D. Bleckmann, M. Stebler, F. Sciandra, A. Brancaccio, T. Meier, J. Stetefeld, and M. A. Ruegg
Activation of Muscle-specific Receptor Tyrosine Kinase and Binding to Dystroglycan Are Regulated by Alternative mRNA Splicing of Agrin
J. Biol. Chem., December 1, 2006; 281(48): 36835 - 36845.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
C.-N. Tseng, L. Zhang, M. Cascio, and Z.-Z. Wang
Calcium Plays a Critical Role in Determining the Acetylcholine Receptor-clustering Activities of Alternatively Spliced Isoforms of Agrin
J. Biol. Chem., May 2, 2003; 278(19): 17236 - 17245.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
J. Kahl and J. T. Campanelli
A Role for the Juxtamembrane Domain of beta -Dystroglycan in Agrin-Induced Acetylcholine Receptor Clustering
J. Neurosci., January 15, 2003; 23(2): 392 - 402.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
Y. M. Ughrin, Z. J. Chen, and J. M. Levine
Multiple Regions of the NG2 Proteoglycan Inhibit Neurite Growth and Induce Growth Cone Collapse
J. Neurosci., January 1, 2003; 23(1): 175 - 186.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
R. Battye, A. Stevens, R. L. Perry, and J. R. Jacobs
Repellent Signaling by Slit Requires the Leucine-Rich Repeats
J. Neurosci., June 15, 2001; 21(12): 4290 - 4298.
[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 Cornish, T.
Right arrow Articles by Campanelli, J. T.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Cornish, T.
Right arrow Articles by Campanelli, J. T.