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Airaksinen, M. S., Koltzenburg, M., Lewin, G. R., Masu, Y., Helbig, C., Wolf, E., Brem, G., Toyka, K. U., Thoenen, H. and Meyer, M (1996). Specific subtypes of cutaneous mechanoreceptors require neurotrophin-3 following peripheral target innervation. Neuron 16, 287-295.[Medline]

Anderson, R. G (1993). Plasmalemmal caveolae and GPI-anchored membrane proteins. Curr. Opin. Neurobiol 5, 647-652.

Baloh, R. H., Gorodinsky, A., Golden, J. P., Tansey, M. G., Keck, C. L., Popescu, N. C., Johnson, E. M. and Milbrandt, J (1998). Gfr-alpha-3 is an orphan member of the gdnf/neurturin/persephin receptor family. Proc. Natl. Acad. Sci. USA 95, 5801-5806.[Abstract/Free Full Text]

Baloh, R. H., Tansey, M. G., Golden, J. P., Creedon, D. J., Heuckeroth, R. O., Keck, C. L., Zimonjic, D. B., Popescu, N. C., Johnson, E. M., Jr. and Milbrandt, J (1997). TrnR2, a novel receptor that mediates neurturin and GDNF signaling through Ret. Neuron 18, 793-802.[Medline]

Baloh, R. H., Transey, M. G., Lampe, P. A., Fahrner, T. J., Enomoto, H., Simburger, K. S., Leitner, M. L., Araki, T., Johnson, E. M. and Milbrandt, J (1998). Artemin, a novel member of the GDNF ligand family, supports peripheral and central neurons and signals through the GFR3-RET receptor complex. Neuron 21, 1291-1302.[Medline]

Bennett, D. L., Michael, G. J., Ramachandran, N., Munson, J. B., Averill, S., Yan, Q., McMahon, S. B. and Priestley, J. V (1998). A distinct subgroup of small DRG cells express GDNF receptor components and GDNF is protective for these neurons after nerve injury. J. Neurosci 18, 3059-3072.[Abstract/Free Full Text]

Brown, D. and Rose, K (1992). Sorting of GPI-anchored proteins to glucolipid enriched membrane subdomains during transport to the apical surface. Cell 68, 533-544.[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]

Buj-Bello, A., Buchman, V. L., Horton, A., Rosenthal, A. and Davies, A. M (1995). GDNF is an age-specific survival factor for sensory and autonomic neurons. Neuron 15, 821-828.[Medline]

Buttiglione, M., Revest, J. M., Rougon, G. and Faivre-Sarrailh, C (1996). F3 neuronal adhesion molecule controls outgrowth and fasciculation of cerebellar granule cell neurites: A cell-type specific effect mediated by Ig-like domains. Mol. Cell. Neurosci 8, 53-69.[Medline]

Creedon, D. J., Tansey, M. G., Baloh, R. H., Osborne, P. A., Lampe, P. A., Fahrner, T. J., Heuckeroth, R. O., Milbrandt, J. and Johnson, E. M., Jr (1997). Neurturin shares receptors and signal transduction pathways with glial cell line-derived neurotrophic factor in sympathetic neurons. Proc. Natl. Acad. Sci. USA 94, 7018-7023.[Abstract/Free Full Text]

Davies, A. M. and Lumsden, A (1984). Relation of target encounter and neuronal death to nerve growth factor responsiveness in the developing mouse trigeminal ganglion. J. Comp. Neurol 223, 124-137.[Medline]

Dotti, C., Parton, G. and Simmons, K (1991). Polarized sorting of glypiated proteins in hippocampal neurons. Nature 349, 158-161.[Medline]

Durbeck, P., Gennarini, G., Buttiglione, M., Gomez, S. and Rougon, G (1994). Different domains of the F3 neuronal adhesion molecule are involved in adhesion and neurite outgrowth promotion. Eur. J. Neurosci 6, 461-472.[Medline]

Durbeck, P., Gennarini, G., Goridis, C. and Rougon, G (1992). A soluble form of F3 neuronal cell adhesion molecule promotes neurite outgrowth. J. Cell Biol 117, 877-887.[Abstract/Free Full Text]

Enokido, Y., Desauvage, F., Hongo, J. A., Ninkina, N., Rosenthal, A., Buchman, V. L. and Davies, A. M (1998). Gfr-alpha-4 and the tyrosine kinase ret form a functional receptor complex for persephin. Curr. Biol 8, 1019-1022.[Medline]

Faivre-Sarrailh, C. and Rougon, G (1997). Axonal molecules of the immunoglobulin superfamily bearing a GPI anchor: their role in controling neurite outgrowth. Mol. Cell. Neurosci 9, 109-115.[Medline]

Fundin, B., Rice, F. L., Pfaller, K. and Arvidsson, J (1994). The innervation of the mystacial pad in the adult rat studied by anterograde transport of HRP-conjugates. J. Comp. Neurol 99, 223-246.

Fundin, B. T., Arvidsson, J., Aldskogius, H., Johansson, O., Rice, S. N. and Rice, F. L (1997). Comprehensive immunofluorescence and lectin binding analysis of intervibrissal fur innervation in the mystacial pad of the rat. J. Comp. Neurol 385, 185-206.[Medline]

Fundin, B. T., Silos-Santiago, I., Ernfors, P., Fagan, A. M., Aldskogius, H., DeChiara, T. M., Phillips, H. S., Barbacid, M., Yancopoulos, G. D. and Rice, F. L (1997). Differential dependency of cutaneous mechanoreceptors on neurotrophins, trk receptors, and P75 LNGFR. Dev. Biol 190, 94-116.[Medline]

Granholm, A. C., Srivastava, N., Mott, J. L., Henry, S., Henry, M., Westphal, H., Pichel, J. G., Shen, L. and Hoffer, B. J (1997). Morphological alterations in the peripheral and central nervous systems of mice lacking glial cell line-derived neurotrophic factor (GDNF): immunohistochemical studies. J. Neurosci 17, 1168-1178.[Abstract/Free Full Text]

Hellmich, H. L., Kos, L., Cho, E. S., Mahon, K. A. and Zimmer, A (1996). Embryonic expression of glial cell-line derived neurotrophic factor (GDNF) suggests multiple developmental roles in neural differentiation and epithelial-mesenchymal interactions. Mech. Dev 54, 95-105.[Medline]

Iwamoto, T., Taniguchi, M., Asai, N., Ohkusu, K., Nakashima, I., Takahashi, M (1993). cDNA cloning of mouse ret proto-oncogene and its sequence similarity to the cadherin superfamily. Oncogene 8, 1087-1091.[Medline]

Jing, S., Wen, D., Yu, Y., Holst, P. L., Luo, Y., Fang, M., Tamir, R., Antonio, L., Hu, Z., Cupples, R. et al (1996). GDNF-induced activation of the ret protein tyrosine kinase is mediated by GDNFR-alpha, a novel receptor for GDNF. Cell 85, 1113-24.[Medline]

Jing, S., Yu, Y., Fang, M., Hu, Z., Holst, P. L., Boone, T., Delaney, J., Schultz, H., Zhou, R. and Fox, G. M (1997). GFRalpha-2 and GFRalpha-3 are two new receptors for ligands of the GDNF family. J. Biol. Chem 272, 33111-33117.[Abstract/Free Full Text]

Klein, R. D., Sherman, D., Ho, W. H., Stone, D., Bennett, G. L., Moffat, B., Vandlen, R., Simmons, L., Gu, Q., Hongo, J. A. et al (1997). A GPI-linked protein that interacts with Ret to form a candidate neurturin receptor. Nature 387, 717-21.[Medline]

Kotzbauer, P. T., Lampe, P. A., Heuckeroth, R. O., Golden, J. P., Creedon, D. J., Johnson, E. M., Jr. and Milbrandt, J (1996). Neurturin, a relative of glial-cell-line-derived neurotrophic factor. Nature 384, 467-70.[Medline]

Leclere, P., Ekstrom, P., Edstrom, A., Priestley, J., Averill, S. and Tonge, D. A (1998). Effects of glial cell line-derived neurotrophic factor on axonal growth and apoptosis in adult mammalian sensory neurons in vitro. Neuroscience 82, 545-558.[Medline]

Lin, L. F., Doherty, D. H., Lile, J. D., Bektesh, S. and Collins, F (1993). GDNF: a glial cell line-derived neurotrophic factor for midbrain dopaminergic neurons. Science 260, 1130-1132.[Abstract/Free Full Text]

Lisanti, M. and Rodriguez-Boulan, E (1990). Glucophospholipid membrane anchoring provides clues to the mechanism of protein sorting in polarized epithelial cells. Trends Biochem. Sci 15, 113-118.[Medline]

Masure, S., Cik, M., Pangalos, M. N., Bonaventure, P., Verhasselt, P., Lesage, A. S., Leysen, J. E. and Gordon, R. D (1998). Molecular cloning, expression and tissue distribution of glial-cell-line-derived neurotrophic factor family receptor alpha-3 (GFRalpha-3). Eur. J. Biochem 251, 622-630.[Medline]

Milbrandt, J., de Sauvage, F. J., Fahrner, T. J., Baloh, R. H., Leitner, M. L., Tansey, M. G., Lampe, P. A., Heuckeroth, R. O., Kotzbauer, P. T., Simburger, K. S. et al (1998). Persephin, a novel neurotrophic factor related to GDNF and neurturin. Neuron 20, 245-253.[Medline]

Molliver, D. C., Wright, D. E., Leitner, M. L., Parsadanian, A. S., Doster, K., Wen, D., Yan, Q. and Snider, W. D (1997). IB4-binding DRG neurons switch from NGF to GDNF dependence in early postnatal life. Neuron 19, 849-861.[Medline]

Moore, M. W., Klein, R. D., Farinas, I., Sauer, H., Armanini, M., Phillips, H., Reichardt, L. F., Ryan, A. M., Carver-Moore, K. and Rosenthal, A (1996). Renal and neuronal abnormalities in mice lacking GDNF. Nature 382, 76-79.[Medline]

Naveilhan, P., Baudet, C., Mikaels, A., Shen, L., Westphal, H. and Ernfors, P (1998). Expression and regulation of GFRalpha3, a glial cell line-derived neurotrophic factor family receptor. Proc. Natl. Acad. Sci. USA 95, 1295-300.[Abstract/Free Full Text]

Naveilhan, P., ElShamy, W. M. and Ernfors, P (1997). Differential regulation of mRNAs for GDNF and its receptors Ret and GDNFR alpha after sciatic nerve lesion in the mouse. Eur. J. Neurosci 9, 1450-1460.[Medline]

Nosrat, C. A., Tomac, A., Hoffer, B. J. and Olson, L (1997). Cellular and developmental patterns of expression of Ret and glial cell line-derived neurotrophic factor receptor alpha mRNAs. Exp. Brain Res 115, 410-422.[Medline]

Nosrat, C. A., Tomac, A., Lindqvist, E., Lindskog, S., Humpel, C., Stromberg, I., Ebendal, T., Hoffer, B. J. and Olson, L (1996). Cellular expression of GDNF mRNA suggests multiple functions inside and outside the nervous system. Cell Tissue Res 286, 191-207.[Medline]

Pichel, J. G., Shen, L., Sheng, H. Z., Granholm, A. C., Drago, J., Grinberg, A., Lee, E. J., Huang, S. P., Saarma, M., Hoffer, B. J. et al (1996). Defects in enteric innervation and kidney development in mice lacking GDNF. Nature 382, 73-76.[Medline]

Rice, F. L., Fundin, B. T., Arvidsson, J., Aldskogius, H. and Johansson, O (1997). Comprehensive immunofluorescence and lectin binding analysis of vibrissal follicle sinus complex innervation in the mystacial pad of the rat. J. Comp. Neurol 385, 149-184.[Medline]

Rice, F. L., Kinnman, E., Aldskogius, H., Johansson, O. and Arvidson, J (1993). The innervation of the mystacial pad of the rat as revealed by PGP 9.5 immunofluorescence. J. Comp. Neurol 337, 366-385.[Medline]

Sanchez, M. P., Silos-Santiago, I., Frisen, J., He, B., Lira, S. A. and Barbacid, M (1996). Renal agenesis and the absence of enteric neurons in mice lacking GDNF. Nature 382, 70-73.[Medline]

Sanicola, M., Hession, C., Worley, D., Carmillo, P., Ehrenfels, C., Walus, L., Robinson, S., Jaworski, G., Wei, H., Tizard, R. et al (1997). Glial cell line-derived neurotrophic factor-dependent RET activation can be mediated by two different cell-surface accessory proteins. Proc. Natl. Acad. Sci. USA 94, 6238-6243.[Abstract/Free Full Text]

Sariola, H. and Sainio, K (1997). The tip-top branching ureter. Curr. Opin. Cell Biol 9, 877-884.[Medline]

Son, Y. J. and Thompson, W. J (1995). Nerve sprouting in muscle is induced and guided by processes extended by Schwann cells. Neuron 14, 133-141.[Medline]

Son, Y. J. and Thompson, W. J (1995). Schwann cell processes guide regeneration of peripheral axons. Neuron 14, 125-132.[Medline]

Suvanto, P., Hiltunen, J. O., Arumae, U., Moshnyakov, M., Sariola, H., Sainio, K. and Saarma, M (1996). Localization of glial cell line-derived neurotrophic factor (GDNF) mRNA in embryonic rat by in situ hybridization. Eur. J. Neurosci 8, 816-822.[Medline]

Thompson, J., Doxakis, E., Pinon, L. G. P., Strachan, P., Bujbello, A., Wyatt, S., Buchman, V. L. and Davies, A. M (1998). Gfr-Alpha-4, a new Gdnf family receptor. Mol. Cell. Neurosci 11, 117-126.[Medline]

Treanor, J. J., Goodman, L., de Sauvage, F., Stone, D. M., Poulsen, K. T., Beck, C. D., Gray, C., Armanini, M. P., Pollock, R. A., Hefti, F. et al (1996). Characterization of a multicomponent receptor for GDNF. Nature 382, 80-83.[Medline]

Trupp, M., Arenas, E., Fainzilber, M., Nilsson, A. S., Sieber, B. A., Grigoriou, M., Kilkenny, C., Salazar-Grueso, E., Pachnis, V. and Arumae, U (1996). Functional receptor for GDNF encoded by the c-ret proto-oncogene. Nature 381, 785-788.[Medline]

Trupp, M., Raynoschek, C., Belluardo, N. and Ibanez, C. F (1998). Multiple Gpi-anchored receptors control Gdnf-dependent and independent activation of the c-Ret receptor tyrosine kinase. Mol. Cell. Neurosci 11, 47-63.[Medline]

Trupp, M., Ryden, M., Jornvall, H., Funakoshi, H., Timmusk, T., Arenas, E. and Ibanez, C. F (1995). Peripheral expression and biological activities of GDNF, a new neurotrophic factor for avian and mammalian peripheral neurons. J. Cell Biol 130, 137-48.[Abstract/Free Full Text]

Widenfalk, J., Tomac, A., Lindqvist, E., Hoffer, B. and Olson, L (1998). Gfr-Alpha-3, a protein related to Gfr-Alpha-1, is expressed in developing peripheral neurons and ensheathing cells. Eur. J. Neurosci 10, 1508-1517.[Medline]

Worby, C. A., Vega, Q. C., Chao, H. H., Seasholtz, A. F., Thompson, R. C. and Dixon, J. E (1998). Identification and characterization of GFRalpha-3, a novel Co-receptor belonging to the glial cell line-derived neurotrophic receptor family. J. Biol. Chem 273, 3502-3508.[Abstract/Free Full Text]

Yu, T., Scully, S., Yu, Y., Fox, G. M., Jing, S. and Zhou, R (1998). Expression of GDNF family receptor components during development: Implications in the mechanisms of interaction. J. Neurosci 18, 4684-4696.[Abstract/Free Full Text]


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