Fasciclin 2


REFERENCES

Adam, G., Perrimon, N. and Noselli, S. (2003). The retinoic-like juvenile hormone controls the looping of left-right asymmetric organs in Drosophila. Development 130: 2397-2406. 12702654

Alenius, M. and Bohm, S. (1997). Identification of a novel neural cell adhesion molecule-related gene with a potential role in selective axonal projection. J. Biol. Chem. 272(42): 26083-26086.

Alenius, M. and Bohm, S. (2003). Differential function of RNCAM isoforms in precise target selection of olfactory sensory neurons. Development 130: 917-927. 12538518

Anderson, R. B. and Key, B. (1999). Novel guidance cues during neuronal pathfinding in the early scaffold of axon tracts in the rostral brain. Development 126(9): 1859-1868.

Ashok, M., Turner, C. and Wilson, T. G. (1998). Insect juvenile hormone resistance gene homology with the bHLH-PAS family of transcriptional regulators. Proc. Natl. Acad. Sci. 95: 2761-2766. 9501163

Bailey, C. H., et al. (1997). Mutation in the phosphorylation sites of MAP kinase blocks learning-related internalization of apCAM in Aplysia sensory neurons. Neuron 18 (6): 913-924.

Baines, R. A., et al. (2002). Regulation of synaptic connectivity: Levels of Fasciclin II influence synaptic growth in the Drosophila CNS. J. Neurosci. 22(15): 6587-6595. 12151538

Beggs, H. E., et al (1997). NCAM140 interacts with the focal adhesion kinase p125(fak) and the SRC-related tyrosine kinase p59(fyn). J. Biol. Chem. 272 (13): 8310-8319.

Beltran, S., et al. (2003). Transcriptional network controlled by the trithorax-group gene ash2 in Drosophila melanogaster. Proc. Natl. Acad. Sci. 100(6): 3293-8. 12626737

Beumer, K., Matthies, H. J. G., Bradshaw, A. and Broadie, K. (2002). Integrins regulate DLG/FAS2 via a CaM kinase II-dependent pathway to mediate synapse elaboration and stabilization during postembryonic development. Development 129: 3381-3391. 12091308

Bieber, A.J., et al. (1989). Drosophila neuroglian: a member of the immunoglobulin superfamily with extensive homology to the vertebrate neural adhesion molecule L1. Cell 59: 447-460

Bliss, T., et al. (2000). Long-term potentiation in mice lacking the neural cell adhesion molecule L1. Curr. Biol 10: 1607-1610. 11137015

Cantera, R., et al. (2002). Mutations in spalt cause a severe but reversible neurodegenerative phenotype in the embryonic central nervous system of Drosophila melanogaster. Development 129: 5577-5586. 12421699

Castellani, V., et al. (2000). Analysis of the L1-deficient mouse phenotype reveals cross-talk between Sema3A and L1 signaling pathways in axonal guidance. Neuron 27: 237-249. 10985345

Castellani, V., De Angelis. E., Kenwrick, S. and Rougon, G. (2002). Cis and trans interactions of L1 with neuropilin-1 control axonal responses to semaphorin 3A. EMBO J. 21: 6348-6357. 12456642

Charlton, C. A., Mohler, W. A. and Blau, H. M. (2000). Neural cell adhesion molecule (NCAM) and myoblast fusion. Dev. Biol. 221: 112-119.

Cheng, Y., et al. (2001). Drosophila fasciclinII is required for the formation of odor memories and for normal sensitivity to alcohol. Cell 105: 757-768. 11440718

Chiang, C., et al. (1994). The novel homeodomain gene buttonless specifies differentiation and axonal guidance functions in Drosophila dorsal medial cells. Development 120: 3581-93.

Cremer, H., et al. (1998). Long-term but not short-term plasticity at mossy fiber synapses is impaired in neural cell adhesion molecule-deficient mice. Proc. Natl. Acad. Sci. 95(22): 13242-7.

Davis, G. W., Schuster, C. M. and Goodman, C. S. (1996). Genetic dissection of structural and functional components of synaptic plasticity. III. CREB is necessary for presynaptic functional plasticity. Neuron 17: 669-679

De Angelis, E., et al. (1999). Pathological missense mutations of neural cell adhesion molecule L1 affect homophilic and heterophilic binding activities. EMBO J. 18: 4744-4753.

Debiec, H., Christensen, E. I. and Ronco, P. M. (1998). The cell adhesion molecule L1 is developmentally regulated in the renal epithelium and is involved in kidney branching morphogenesis. J. Cell Biol. 143(7): 2067-79.

Demyanenko, G. P., et al. (2004). Close homolog of L1 modulates area-specific neuronal positioning and dendrite orientation in the cerebral cortex. Neuron 44: 423-437. 15504324

Desai, C. J., Popova, E. and Zinn, K. (1994). A Drosophila receptor tyrosine phosphatase expressed in the embryonic CNS and larval optic lobes is a member of the set of proteins bearing the "HRP" carbohydrate epitope. J Neurosci 14: 7272-7283

Dityatev, A., Dityateva, G. and Schachner, M. (2000). Synaptic strength as a function of post- versus presynaptic expression of the neural cell adhesion molecule NCAM. Neuron 26: 207-217.

Edelman, D. B., Meech, R. and Jones, F. S. (2000). The homeodomain protein Barx2 contains activator and repressor domains and interacts with members of the CREB family. J. Biol. Chem. 275: 21737-21745. 10781615

Esni, F., et al. (1999). Neural cell adhesion molecule (N-CAM) is required for cell type segregation and normal ultrastructure in pancreatic islets. J. Cell Biol. 144(2): 325-37.

Felding-Habermann, B., et al. (1997). A single immunoglobulin-like domain of the human neural cell adhesion molecule L1 supports adhesion by multiple vascular and platelet integrins. J. Cell Biol. 139(6): 1567-1581.

Fambrough, D. and Goodman, C. S. (1996). The Drosophila beaten path gene encodes a novel secreted protein that regulates defasciculation at motor axon choice points. Cell 87(6): 1049-58.

Garcia-Alonso, L. VanBerkum, M., Grenningloh, G., Schuster, C. and Goodman, C.S. (1995). Fasciclin II controls proneural gene expression in Drosophila. Proc Natl Acad Sci 92: 10501-10505

Garver, T. D., et al. (1997). Tyrosine phosphorylation at a site highly conserved in the L1 family of cell adhesion molecules abolishes ankyrin binding and increases lateral mobility of neurofascin. J. Cell Biol. 137(3): 703-14.

Gascon, E., Vutskits, L., Jenny, B., Durbec, P. and Kiss, J. Z. (2007). PSA-NCAM in postnatally generated immature neurons of the olfactory bulb: a crucial role in regulating p75 expression and cell survival. Development 134(6): 1181-90. Medline abstract: 17301083

Green, C. B., Durston, A. J. and Morgan, R. (2001). The circadian gene Clock is restricted to the anterior neural plate early in development and is regulated by the neural inducer noggin and the transcription factor Otx2. Mech. Dev. 101: 105-110. 11231063

Grenningloh, G., Rehm, E.J. and Goodman, C.S. (1991). Genetic analysis of growth cone guidance in Drosophila: Fasciclin II functions as a neuronal recognition molecule. Cell 67(1): 45-57

Hidalgo, A. and Brand, A. H. (1997). Targeted neuronal ablation: the role of pioneer neurons in guidance and fasciculation in the CNS of Drosophila. Development 124(17): 3253-3262.

Hiesinger, P. R., et al. (1999). Neuropil pattern formation and regulation of cell adhesion molecules in Drosophila optic lobe development depend on Synaptobrevin. J. Neurosci. 19(17): 7548-7556.

Higgins, M. R., et al. (2002). Different isoforms of Fasciclin II are expressed by a subset of developing olfactory receptor neurons and by olfactory-nerve glial cells during formation of glomeruli in the moth Manduca sexta, Dev. Biol. 244: 134-154. 11900464

Holmes, A. L., Raper, R. N. and Heilig, J. S. (1998). Genetic analysis of Drosophila larval optic nerve development. Genetics 148: 1189-1201.

Holmes, A. L. and Heilig, J. S. (1999). Fasciclin II and Beaten path modulate intercellular adhesion in Drosophila larval visual organ development. Development 126(2): 261-272.

Holst, B. D., et al. (1997). A binding site for Pax proteins regulates expression of the gene for the neural cell adhesion molecule in the embryonic spinal cord. Proc. Natl. Acad. Sci. 94 (4): 1465-1470.

Holst, B. D., et al. (1998). Allosteric modulation of AMPA-type glutamate receptors increases activity of the promoter for the neural cell adhesion molecule, N-CAM. Proc. Natl. Acad. Sci. 95: 2597-2602.

Honig, M. G., et al. (1998). In vitro studies of growth cone behavior support a role for fasciculation mediated by cell adhesion molecules in sensory axon guidance during development. Dev. Biol. 204(2): 317-26.

Honig, M. G., Camilli, S. J. and Xue, Q.-S. (2002). Effects of L1 blockade on sensory axon outgrowth and pathfinding in the chick hindlimb. Dev. Biol. 243: 137-154. 11846483

Huang, Y., et al. (1997). Differential glycosylation of tractin and LeechCAM, two novel Ig superfamily members, regulates neurite extension and fascicle formation. J. Cell Biol. 138(1): 143-157.

Itoh, K., et al. (2004). Brain development in mice lacking L1-L1 homophilic adhesion. J. Cell Biol. 165(1): 145-54. 15067019

Jones, F. S., et al (1997). Barx2, a new homeobox gene of the Bar class, is expressed in neural and craniofacial structures during development. Proc. Natl. Acad. Sci. 94 (6): 2632-2637.

Jones, G. and Sharp, P. A. (1997). Ultraspiracle: an invertebrate nuclear receptor for juvenile hormones. Proc. Natl. Acad. Sci. 94: 13499-13503. 11719067

Jones, G., Wozniak, M., Chu, Y., Dhar, S. and Jones, D. (2001). Juvenile hormone III-dependent conformational changes of the nuclear receptor ultraspiracle. Insect Biochem. Mol. Biol. 32: 33-49. 12473098

Kallunki, P., Edelman, G. M. and Jones, F. S. (1997). Tissue-specific expression of the L1 cell adhesion molecule is modulated by the neural restrictive silencer element. J. Cell Biol. 138(6): 1343-1354.

Kallunki, P., Edelman, G. and Jones, F. S. (1998). The neural restrictive silencer element can act as both a repressor and enhancer of L1 cell adhesion molecule gene expression during postnatal development. Proc. Natl. Acad. Sci. 95(6): 3233-3238.

Kamiguchi, H. and Lemmon, V. (1998a). A neuronal form of the cell adhesion molecule L1 contains a tyrosine-based signal required for sorting to the axonal growth cone. J. Neurosci. 18(10): 3749-3756.

Kamiguchi, H., et al. (1998b). The neural cell adhesion molecule L1 interacts with the AP-2 adaptor and is endocytosed via the clathrin-mediated pathway. J. Neurosci. 18(14): 5311-5321.

Kamiguchi, H. and Yoshihara, F. (2002). The role of endocytic L1 trafficking in polarized adhesion and migration of nerve growth cones. J. Neurosci. 21(23): 9194-9203. 11717353

Koh, Y.-H., Ruiz-Canada, C., Gorczyca, M. and Budnik, V. (2002). The Ras1-Mitogen-activated protein kinase signal transduction pathway regulates synaptic plasticity through Fasciclin II-mediated cell adhesion. J. Neurosci. 22(7): 2496-2504. 11923414

Kojima, T., Sato, M. and Saigo, K. (2000). Formation and specification of distal leg segments in Drosophila by dual Bar homeobox genes, BarH1 and BarH2. Development 127: 769-778.

Kraut, R., Menon, K. and Zinn, K. (2001). A gain-of-function screen for genes controlling motor axon guidance and synaptogenesis in Drosophila. Curr. Biol. 11: 417-430. 11301252

Kristiansen, L. V., et al. (2005). Genetic analysis of an overlapping functional requirement for L1- and NCAM-type proteins during sensory axon guidance in Drosophila. Mol. Cell. Neurosci. 28(1): 141-52. 15607949

Krushel, L. A., et al. (1998). Neural cell adhesion molecule (N-CAM) domains and intracellular signaling pathways involved in the inhibition of astrocyte proliferation. Proc. Natl. Acad. Sci. 95: 2592-2596.

Kurusu, M., et al. (2002). Embryonic and larval development of the Drosophila mushroom bodies: concentric layer subdivisions and the role of fasciclin II. Development 129: 409-419. 11807033

Landgraf, M., et al. (2003). Charting the Drosophila neuropile: a strategy for the standardised characterisation of genetically amenable neurites. Dev. Bio. 260: 207-225. 12885565

Lin, D.M. and Goodman, C.S. (1994a). Ectopic and increased expression of Fasciclin II alters motorneuronal growth cone guidance. Neuron 13(3): 507-23

Lin, D.M., Fetter, R.D., Kopczynski, C., Grenningloh, G. and Goodman, C.S. (1994b). Genetic analysis of Fasciclin II in Drosophila: defasciculation, refasciculation, and altered fasciculation. Neuron 13(5): 1055-69

Malhotra, J. D., et al. (1998). Cis-activation of L1-mediated ankyrin recruitment by TAG-1 homophilic cell adhesion. J. Biol. Chem. 273(50): 33354-9.

Martin, M. D., et al. (1998). Repeated pulses of serotonin required for long-term facilitation activate mitogen-activated protein kinase in sensory neurons of aplysia. Proc. Natl. Acad. Sci. 95(4): 1864-1869.

Mehta, S. Q., et al. (2005). Mutations in Drosophila sec15 reveal a function in neuronal targeting for a subset of exocyst components. Neuron 46(2): 219-32. 15848801

Nishimura, T., et al. (2003). CRMP-2 regulates polarized Numb-mediated endocytosis for axon growth. Nat Cell Biol. 5(9): 819-26. 12942088

Paratcha, G., Ledda, F. and Ibáñez, C. F. (2003). The neural cell adhesion molecule NCAM is an alternative signaling receptor for gdnf family ligands. Cell 113: 867-879. 12837245

Parnas, D., et al. (2001). Regulation of postsynaptic structure and protein localization by the rho-type guanine nucleotide exchange factor dPix. Neuron 32: 415-424. 11709153

Peter, N., et al. (1994). Decrease in growth cone-neurite fasciculation by sensory or motor cells in vitro accompanies downregulation of Aplysia cell adhesion molecules by neurotransmitters. J. Neurosci. 14: 1413-21.

Pignoni, F., Hu, B. and Zipursky, S. L. (1997). Identification of genes required for Drosophila eye development using a phenotypic enhancer-trap. Proc. Natl. Acad. Sci. 94(17): 9220-9225.

Saffell, J. L., et al. (1997). Expression of a dominant negative FGF receptor inhibits axonal growth and FGF receptor phosphorylation stimulated by CAMs. Neuron 18 (2): 231-242.

Sampo, B., Kaech, S., Kunz, S. and Banker, G. (2003). Two distinct mechanisms target membrane proteins to the axonal surface. Neuron 37: 611-624. 12597859

Sanchez-Soriano, N. and Prokop, A. (2005). The influence of pioneer neurons on a growing motor nerve in Drosophila requires the neural cell adhesion molecule homolog FasciclinII. J. Neurosci. 25(1): 78-87. 15634769

Sasakura, H., et al. (2005). Maintenance of neuronal positions in organized ganglia by SAX-7, a Caenorhabditis elegans homologue of L1. EMBO J. 24: 1477-1488. 15775964

Schuster, C. M., et al. (1996a). Genetic dissection of structural and functional components of synaptic plasticity. I. Fasciclin II controls synaptic stabilization and growth. Neuron 17: 841-854

Schuster, C. M., et al. (1996b). Genetic dissection of structural and functional components of synaptic plasticity. II. Fasciclin II controls presynaptic structural plasticity. Neuron 17: 655-667

Schuster, T., et al. (1998). Increase in proportion of hippocampal spine synapses expressing neural cell adhesion molecule NCAM180 following long-term potentiation. J. Neurobiol. 37(3): 359-72.

Scotland, P., et al. (1998). Nervous system defects of AnkyrinB (-/-) mice suggest functional overlap between the cell adhesion molecule L1 and 440-kD AnkyrinB in premyelinated axons. J. Cell Biol. 143(5): 1305-15.

Seki, T. and Rutishauser, U (1998). Removal of polysialic acid-neural cell adhesion molecule induces aberrant mossy fiber innervation and ectopic synaptogenesis in the hippocampus. J. Neurosci. 18(10): 3757-66.

Sone, M., et al. (2000). Synaptic development is controlled in the periactive zones of Drosophila synapses. Development 127: 4157-4168

Stewart, B. A., et al.(1996). Homeostasis of synaptic transmission in Drosophila with genetically altered nerve terminal morphology. J. Neurosci. 16: 3877-3886

Su, X.-D., Gastinel, L., Vaughn, D., Faye, I., Poon, P. and Bjorkman, P. (1998). Crystal structure of hemolin: a horseshoe shape with implications for homophilic adhesion. Science 281(5379): 991-5.

Suter, D. M., et al. (1998). The Ig superfamily cell adhesion molecule, apCAM, mediates growth cone steering by substrate-cytoskeletal coupling. J. Cell Biol. 141(1): 227-240.

Suter, D. M., Schaefer, A. W. and Forscher, P. (2004). Microtubule dynamics are necessary for Src family kinase-dependent growth cone steering. Curr. Biol. 14: 1194-1199. 15242617

Sytnyk, V., et al. (2007). NCAM promotes assembly and activity-dependent remodeling of the postsynaptic signaling complex. J. Cell Biol. 174: 1071-1085. Medline abstract: 17000882

Szafranski, P. and Goode, S. (2004). A Fasciclin 2 morphogenetic switch organizes epithelial cell cluster polarity and motility. Development 131: 2023-2036. 15056617

Tai, M. H. and Zipser, B. (1999). Sequential steps in synaptic targeting of sensory afferents are mediated by constitutive and developmentally regulated glycosylations of CAMs. Dev. Biol. 214(2): 258-76.

Takayama, Y., et al. (1997). Role of Csk in neural differentiation of the embryonic carcinoma cell line P19. FEBS Lett. 406 (1-2): 11-16.

Thelen, K., et al. (2002). The neural cell adhesion molecule L1 potentiates integrin-dependent cell migration to extracellular matrix proteins. J. Neurosci. 22(12): 4918-4931. 12077189

Thomas, U., et al. (1997). Synaptic clustering of the cell adhesion molecule fasciclin II by discs-large and its role in the regulation of presynaptic structure. Neuron 19(4): 787-799.

Tsuji, T., et al. (2000). Requirements of Lim1, a Drosophila LIM-homeobox gene, for normal leg and antennal development. Development 127: 4315-4323.

Urbach, R. and Technau, G. M. (2003). Molecular markers for identified neuroblasts in the developing brain of Drosophila. Development 130: 3621-3637. 12835380

Winberg, M. L., Mitchell, K. J. and Goodman, C. S. (1998). Genetic analysis of the mechanisms controlling target selection: complementary and combinatorial functions of netrins, semaphorins, and IgCAMs. Cell 93(4): 581-591.

Wong, E. V., et al. (1996a). Involvement of p90rsk in neurite outgrowth mediated by the cell adhesion molecule L1. J. Biol. Chem. 271 (30): 18217-18223.

Wong, E. V., et al. (1996b). Casein kinase II phosphorylates the neural cell adhesion molecule L1. J. Neurochem. 66 (2): 779-786.

Wong, J. T., Wong, S. T. and O'Connor, T. P. (1999). Ectopic semaphorin-1a functions as an attractive guidance cue for developing peripheral neurons. Nat. Neurosci. 2: 798-803.

Wright, J. W., et al. (1999). A role for fasciclin II in the guidance of neuronal migration. Development 126: 3217-3228.

Wright, J. W. and Copenhaver, P. F. (2000). Different isoforms of Fasciclin II play distinct roles in the guidance of neuronal migration during insect embryogenesis. Dev. Bio. 225: 59-78. 10964464

Wright, J. W. and Copenhaver, P. F. (2001). Cell type-specific expression of Fasciclin II isoforms reveals neuronal-glial interactions during peripheral nerve growth. Dev. Bio. 234: 24-41. 11356017

Wu, F. and Schacher, S. (1994). Pre- and postsynaptic changes mediated by two second messengers contribute to expression of Aplysia long-term heterosynaptic inhibition. Neuron 12: 407-21.

Younossi-Hartenstein, A., et al. (1997). Control of early neurogenesis in the Drosophila brain by the head gap genes tll, otd, ems, and btd. Dev. Biol 182: 270-283

Yu, H.-H., Huang, A. S. and Kolodkin, A. L. (2000). Semaphorin-1a acts in concert with the cell adhesion molecules Fasciclin II and Connectin to regulate axon fasciculation in Drosophila. Genetics 156: 723-731.

Zelina, P., et al. (2005). The cell adhesion molecule NrCAM is crucial for growth cone behaviour and pathfinding of retinal ganglion cell axons. Development 132: 3609-3618. 16033798

Zhu, H., Wu, f. and Schacher, S. (1994). Aplysia cell adhesion molecules and serotonin regulate sensory cell-motor cell interactions during early stages of synapse formation in vitro. J Neurosci 14: 6886-6900.

Zhu, H., Wu, F. and Schacher, S. (1995). Changes in expression and distribution of Aplysia cell adhesion molecules can influence synapse formation and elimination in vitro. J Neurosci 15: 4173-4183.

Zito, K., et al. (1997). Synaptic clustering of Fascilin II and Shaker: essential targeting sequences and role of Dlg. Neuron 19(5): 1007-1016.


Fasciclin 2: Biological Overview | Evolutionary Homologs | Regulation | Developmental Biology | Effects of Mutation

date revised: 15 October 2007


 

Home page: The Interactive Fly © 1997 Thomas B. Brody, Ph.D.

The Interactive Fly resides on the
Society for Developmental Biology's Web server.