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ZFIN ID:
ZDB-ATB-090205-2
CITATIONS
(25 total)
Antibody Name:
Ab1-prkca
Yang, S., Huang, L., Liang, H., Guo, J., Liu, L., Chen, S., Cao, M. (2023) Loss of flrt2 gene leads to microphthalmia in zebrafish. Biology Open. 12(6):
Indrischek, H., Hammer, J., Machate, A., Hecker, N., Kirilenko, B., Roscito, J., Hans, S., Norden, C., Brand, M., Hiller, M. (2022) Vision-related convergent gene losses reveal
SERPINE3
's unknown role in the eye. eLIFE. 11:
Nicolas, H.A., Hua, K., Quigley, H., Ivare, J., Tesson, F., Akimenko, M.A. (2022) A CRISPR/Cas9 zebrafish lamin A/C mutant model of muscular laminopathy. Developmental Dynamics : an official publication of the American Association of Anatomists. 251(4):645-661
Ouyang, J., Sun, W., Xiao, X., Li, S., Jia, X., Zhou, L., Wang, P., Zhang, Q. (2019) CPSF1 mutations are associated with early-onset high myopia and involved in retinal ganglion cell axon projection. Human molecular genetics. 28(12):1959-1970
Xiao, X., Sun, W., Ouyang, J., Li, S., Jia, X., Tan, Z., Hejtmancik, J.F., Zhang, Q. (2019) Novel truncation mutations in MYRF cause autosomal dominant high hyperopia mapped to 11p12-q13.3. Human genetics. 138(10):1077-1090
Miller, A.H., Howe, H.B., Krause, B.M., Friedle, S.A., Banks, M.I., Perkins, B.D., Wolman, M.A. (2018) Pregnancy associated plasma protein-aa (Pappaa) regulates photoreceptor synaptic development to mediate visually guided behavior. The Journal of neuroscience : the official journal of the Society for Neuroscience. 38(22):5220-5236
Prieto, D., Zolessi, F.R. (2017) Functional Diversification of the Four MARCKS Family Members in Zebrafish Neural Development. Journal of experimental zoology. Part B, Molecular and developmental evolution. 328(1-2):119-138
Takacs, C.M., Giraldez, A.J. (2016) miR-430 regulates oriented cell division during neural tube development in zebrafish. Developmental Biology. 409(2):442-50
Araya, C., Tawk, M., Girdler, G.C., Costa, M., Carmona-Fontaine, C., and Clarke, J.D. (2014) Mesoderm is required for coordinated cell movements within zebrafish neural plate in vivo. Neural Development. 9(1):9
Conner, C., Ackerman, K.M., Lahne, M., Hobgood, J.S., Hyde, D.R. (2014) Repressing Notch Signaling and Expressing TNFα Are Sufficient to Mimic Retinal Regeneration by Inducing Müller Glial Proliferation to Generate Committed Progenitor Cells. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34(43):14403-19
Navis, A., Marjoram, L., and Bagnat, M. (2013) Cftr controls lumen expansion and function of Kupffer's vesicle in zebrafish. Development (Cambridge, England). 140(8):1703-1712
Palanca, A.M., Lee, S.L., Yee, L.E., Joe-Wong, C., Trinh, L.A., Hiroyasu, E., Husain, M., Fraser, S.E., Pellegrini, M., and Sagasti, A. (2013) New transgenic reporters identify somatosensory neuron subtypes in larval zebrafish. Developmental Neurobiology. 73(2):152-167
Tay, H.G., Schulze, S.K., Compagnon, J., Foley, F.C., Heisenberg, C.P., Yost, H.J., Abdelilah-Seyfried, S., and Amack, J.D. (2013) Lethal giant larvae 2 regulates development of the ciliated organ Kupffer's vesicle. Development (Cambridge, England). 140(7):1550-1559
Inoue, D., and Wittbrodt, J. (2011) One for all-a highly efficient and versatile method for fluorescent immunostaining in fish embryos. PLoS One. 6(5):e19713
Fukazawa, C., Santiago, C., Park, K.M., Deery, W.J., Canny, S.G., Holterhoff, C.K., and Wagner, D.S. (2010) poky/chuk/ikk1 is required for differentiation of the zebrafish embryonic epidermis. Developmental Biology. 346(2):272-283
Prykhozhij, S.V. (2010) In the Absence of Sonic Hedgehog, p53 Induces Apoptosis and Inhibits Retinal Cell Proliferation, Cell-Cycle Exit and Differentiation in Zebrafish. PLoS One. 5(10):e13549
Jing, X., and Malicki, J. (2009) Zebrafish ale oko, an essential determinant of sensory neuron survival and the polarity of retinal radial glia, encodes the p50 subunit of dynactin. Development (Cambridge, England). 136(17):2955-2964
Kaslin, J., Ganz, J., Geffarth, M., Grandel, H., Hans, S., and Brand, M. (2009) Stem cells in the adult zebrafish cerebellum: initiation and maintenance of a novel stem cell niche. The Journal of neuroscience : the official journal of the Society for Neuroscience. 29(19):6142-6153
Patten, S.A., and Ali, D.W. (2009) PKC{gamma}-induced trafficking of AMPA receptors in embryonic zebrafish depends on NSF and PICK1. Proceedings of the National Academy of Sciences of the United States of America. 106(16):6796-6801
Sonawane, M., Martin-Maischein, H., Schwarz, H., and Nüsslein-Volhard, C. (2009) Lgl2 and E-cadherin act antagonistically to regulate hemidesmosome formation during epidermal development in zebrafish. Development (Cambridge, England). 136(8):1231-1240
Vitorino, M., Jusuf, P.R., Maurus, D., Yukiko, Y., Higashijima, S.I., and Harris, W.A. (2009) Vsx2 in the zebrafish retina: restricted lineages through derepression. Neural Development. 4:14
Del Bene, F., Wehman, A.M., Link, B.A., and Baier, H. (2008) Regulation of neurogenesis by interkinetic nuclear migration through an apical-basal notch gradient. Cell. 134(6):1055-1065
Munson, C., Huisken, J., Bit-Avragim, N., Kuo, T., Dong, P.D., Ober, E.A., Verkade, H., Abdelilah-Seyfried, S., and Stainier, D.Y. (2008) Regulation of neurocoel morphogenesis by Pard6gammab. Developmental Biology. 324(1):41-54
Patten, S.A., Sihra, R.K., Dhami, K.S., Coutts, C.A., and Ali, D.W. (2007) Differential expression of PKC isoforms in developing zebrafish. International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience. 25(3):155-164
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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