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ZFIN ID:
ZDB-ATB-101216-1
CITATIONS
(19 total)
Antibody Name:
Ab4-serotonin
Bellipanni, G., Rink, E., and Bally-Cuif, L. (2002) Cloning of two tryptophan hydroxylase genes expressed in the diencephalon of the developing zebrafish brain. Mechanisms of Development. 119:S215-S220
Bosco, A., Bureau, C., Affaticati, P., Gaspar, P., Bally-Cuif, L., and Lillesaar, C. (2013) Development of hypothalamic serotoninergic neurons requires Fgf signalling via the ETS-domain transcription factor Etv5b. Development (Cambridge, England). 140(2):372-384
Cederlund, M.L., Morrissey, M.E., Baden, T., Scholz, D., Vendrell, V., Lagnado, L., Connaughton, V.P., and Kennedy, B.N. (2011) Zebrafish Tg(7.2mab21l2:EGFP)ucd2 Transgenics Reveal a Unique Population of Retinal Amacrine Cells. Investigative ophthalmology & visual science. 52(3):1613-21
Chen, Y.C., Semenova, S., Rozov, S., Sundvik, M., Bonkowsky, J.L., Panula, P. (2016) A novel developmental role for dopaminergic signaling to specify hypothalamic neurotransmitter identity. The Journal of biological chemistry. 291(42):21880-21892
Hu, Y., Hruscha, A., Pan, C., Schifferer, M., Schmidt, M.K., Nuscher, B., Giera, M., Kostidis, S., Burhan, Ö., van Bebber, F., Edbauer, D., Arzberger, T., Haass, C., Schmid, B. (2024) Mis-localization of endogenous TDP-43 leads to ALS-like early-stage metabolic dysfunction and progressive motor deficits. Molecular neurodegeneration. 19:50
Ivashkin, E., Melnikova, V., Kurtova, A., Brun, N.R., Obukhova, A., Khabarova, M.Y., Yakusheff, A., Adameyko, I., Gribble, K.E., Voronezhskaya, E.E. (2019) Transglutaminase Activity Determines Nuclear Localization of Serotonin Immunoreactivity in the Early Embryos of Invertebrates and Vertebrates. ACS Chemical Neuroscience. 10(8):3888-3899
Jacob, J., Ribes, V., Moore, S., Constable, S.C., Sasai, N., Gerety, S.S., Martin, D.J., Sergeant, C.P., Wilkinson, D.G., and Briscoe, J. (2014) Valproic Acid silencing of ascl1b/ascl1 results in the failure of serotonergic differentiation in a zebrafish model of Fetal Valproate Syndrome. Disease models & mechanisms. 7(1):107-17
König, D., Dagenais, P., Senk, A., Djonov, V., Aegerter, C.M., Jaźwińska, A. (2019) Distribution and Restoration of Serotonin-Immunoreactive Paraneuronal Cells During Caudal Fin Regeneration in Zebrafish. Frontiers in molecular neuroscience. 12:227
Lange, M., Norton, W., Coolen, M., Chaminade, M., Merker, S., Proft, F., Schmitt, A., Vernier, P., Lesch, K.P., and Bally-Cuif, L. (2012) The ADHD-susceptibility gene lphn3.1 modulates dopaminergic neuron formation and locomotor activity during zebrafish development. Molecular psychiatry. 17(9):946-954
Miyake, A., Nihno, S., Murakoshi, Y., Satsuka, A., Nakayama, Y., and Itoh, N. (2012) Neucrin, a novel secreted antagonist of canonical Wnt signaling, plays roles in developing neural tissues in zebrafish. Mechanisms of Development. 128(11-12):577-590
Montgomery, J.E., Wiggin, T.D., Rivera-Perez, L.M., Lillesaar, C., Masino, M.A. (2016) Intraspinal serotonergic neurons consist of two, temporally distinct populations in developing zebrafish. Developmental Neurobiology. 76(6):673-87
Pantoja, C., Hoagland, A., Carroll, E.C., Karalis, V., Conner, A., Isacoff, E.Y. (2016) Neuromodulatory Regulation of Behavioral Individuality in Zebrafish. Neuron. 91(3):587-601
Sundvik, M., and Panula, P. (2012) The organization of the histaminergic system in adult zebrafish (Danio rerio) brain: neuron number, location and co-transmitters. The Journal of comparative neurology. 520(17):3827-3845
Sundvik, M., Chen, Y.C., and Panula, P. (2013) Presenilin1 Regulates Histamine Neuron Development and Behavior in Zebrafish, Danio rerio. The Journal of neuroscience : the official journal of the Society for Neuroscience. 33(4):1589-1597
Xavier, A.L., Fontaine, R., Bloch, S., Affaticati, P., Jenett, A., Demarque, M., Vernier, P., Yamamoto, K. (2017) Comparative analysis of monoaminergic cerebrospinal fluid-contacting cells in Osteichthyes (bony vertebrates). The Journal of comparative neurology. 525(9):2265-2283
Yang, N., Dong, Z., and Guo, S. (2012) Fezf2 Regulates Multilineage Neuronal Differentiation through Activating Basic Helix-Loop-Helix and Homeodomain Genes in the Zebrafish Ventral Forebrain. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(32):10940-10948
Yazulla, S. and Studholme, K.M. (2001) Neurochemical anatomy of the zebrafish retina as determined by immunocytochemistry. Journal of neurocytology. 30(7):551-592
Yokogawa, T., Hannan, M.C., and Burgess, H.A. (2012) The Dorsal Raphe Modulates Sensory Responsiveness during Arousal in Zebrafish. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(43):15205-15215
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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