Raible Lab
Department of Biological Structure
University of Washington


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Neural Crest

Lister, J.A., Nguyen, K., Modrell, M., Grant, K., Cooper, C. and Raible, D.W. (2006). Zebrafish Foxd3 is required for development of a subset of neural crest derivatives but not for neural crest determination.  Dev. Biol., 290: 92-104.

Lewis, J.L., Bonner, J., Modrell, M., Ragland, J.W., Moon, R.T., Dorsky, R.I., and Raible, D.W. (2004). Reiterated Wnt signaling during zebrafish neural crest development.  Development 131:1299-308.

Shepherd, I.T. Pietsch, J., Elworthy, S., Kelsh, R.N. and Raible, D.W. (2004).  Roles for GFR_1 receptors in zebrafish enteric nervous system development. Development 131: 241-249.

Ragland, J.W. and Raible, D.W. (2004). Signals derived from the underlying mesoderm are dispensable for zebrafish neural crest induction. Dev. Biol., 276:16-30.

Ungos, J.M., Karlstrom, R.O. and Raible, D.W. (2003). Hedgehog signaling is directly required for the development of zebrafish dorsal root ganglia neurons. Development 130:5351-5362.

Dorsky RI, Moon RT, Raible DW (2000). Environmental signals and cell fate specification in premigratory neural crest. Bioessays 22:708-716

Dorsky RI, Raible DW, Moon RT (2000). Direct regulation of nacre, a zebrafish MITF homolog required for pigment cell formation, by the Wnt pathway. Genes Dev14:158-62

Lister, J.A., Robertson, C.P., Lepage, T., Johnson, S.L. and Raible, D.W. (1999). nacre encodes a zebrafish microphthalmia-related protein that regulates neural-crest-derived pigment cell fate. Development 126:3757-3767

Dorsky, R.I. , Moon, R.T. and Raible, D.W. (1998). Control of neural crest cell fate by the Wnt signalling pathway. Nature 396: 370-373

Lateral Line and Placodes

Nechiporuk, A. and Raible, D.W. (2008). Fgf-dependent mechanosensory organ patterning in zebrafish.  Science 320: 1774-1777.

Nechiporuk, A., Linbo, T., Poss, K.D. and Raible, D.W. (2007). Specification of epibranchial placodes in zebrafish. Development, 134: 611-623.

Nechiporuk, A., Linbo, T. and Raible, D.W. (2005). Endoderm-derived Fgf3 is necessary and sufficient to induce neurogenesis in the epibranchial placodes in zebrafish. Development 132: 3717-3730.

Grant, K., Raible, D.W.* and Piotrowski, T.* (2005). Regulation of latent sensory hair cell precursors by glia in the zebrafish lateral line.  Neuron 45:69-80.

Andermann, P., Ungos, J. and Raible, D.W. (2002). Neurogenin1 defines zebrafish cranial sensory ganglia precursors. Dev. Biol. 251: 45-58.

Raible DW, Kruse GJ (2000). Organization of the lateral line system in embryonic zebrafish. J Comp Neurol 421:189-98

Sensory Hair Cell Death and Regeneration

Owens, K.N., Santos, F., Roberts, B., Linbo, T., Knisely, A.J., Simon, J.A., Rubel, E.W and  Raible, D.W. (2008). Identification of genetic and chemical modulators of zebrafish mechanosensory hair cell death.  PLoS Genetics, 4: e1000020.

Ma, E.Y., Rubel, E.W and  Raible, D.W. (2008). Notch signaling regulates the extent of hair cell regeneration in the zebrafish lateral line. J. Neurosci., 28: 2261-2273.

Ou, H.C, Raible, D.W. and Rubel, E.W. (2007). Cisplatin-induced hair cell loss in zebrafish lateral line. Hearing Res., 233:46-53.

Owens, K.N., Cunningham, D.E., Rubel, E.W., Raible, D.W. and Pujol, R. (2007). Ultrastructural analysis of aminoglycoside-induced hair cell death in the lateral line of the zebrafish reveals an early mitochondrial response. J. Comp. Neurol., 502:522-543.

Santos, F., McDonald, G., Rubel, E.W. and Raible, D.W. (2006). Lateral line hair cell maturation is a determinant of aminoglycoside susceptibility in zebrafish (Danio rerio).
Hearing Res., 213: 25-33.

Murakami, S.L., Cunningham, L.L., Werner, L.A., Bauer, E., Pujol, R., Raible, D.W. and Rubel, E.W. (2003). Developmental differences in susceptibility to neomycin-induced hair cell death in the lateral line neuromasts of zebrafish. Hearing Res. 186:47-56.

Harris, J.A., Cheng, A.G., Cunningham, L.L., MacDonald, G., Raible, D.W. and Rubel, E.W. (2003). Neomycin-induced hair cell death in the lateral line of zebrafish (Danio rerio): a model system to study hair cell survival.  JARO 4: 219-234.