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ZFIN ID:
ZDB-ATB-090508-5
CITATIONS
(22 total)
Antibody Name:
Ab2-rho
Kramer, A.C., Carthage, J., Berry, Y., Gurdziel, K., Cook, T.A., Thummel, R. (2023) A comparative analysis of gene and protein expression in chronic and acute models of photoreceptor degeneration in adult zebrafish. Frontiers in cell and developmental biology. 11:12332691233269
Kramer, A.C., Gurdziel, K., Thummel, R. (2021) A Comparative Analysis of Gene and Protein Expression Throughout a Full 28-Day Retinal Regeneration Time-Course in Adult Zebrafish. Frontiers in cell and developmental biology. 9:741514
Crespo, C., Knust, E. (2018) Characterisation of maturation of photoreceptor cell subtypes during zebrafish retinal development. Biology Open. 7(11):
Ranski, A.H., Kramer, A.C., Morgan, G.W., Perez, J.L., Thummel, R. (2018) Characterization of retinal regeneration in adult zebrafish following multiple rounds of phototoxic lesion. PeerJ. 6:e5646
Iribarne, M., Nishiwaki, Y., Nakamura, S., Araragi, M., Oguri, E., Masai, I. (2017) Aipl1 is required for cone photoreceptor function and survival through the stability of Pde6c and Gc3 in zebrafish. Scientific Reports. 7:45962
Wasfy, M.M., Matsui, J.I., Miller, J., Dowling, J.E., Perkins, B.D. (2014) myosin 7aa(-/-) mutant zebrafish show mild photoreceptor degeneration and reduced electroretinographic responses. Experimental Eye Research. 122:65-76
Nelson, C.M., Ackerman, K.M., O'Hayer, P., Bailey, T.J., Gorsuch, R.A., and Hyde, D.R. (2013) Tumor Necrosis Factor-Alpha Is Produced by Dying Retinal Neurons and Is Required for Muller Glia Proliferation during Zebrafish Retinal Regeneration. The Journal of neuroscience : the official journal of the Society for Neuroscience. 33(15):6524-6539
Nishiwaki, Y., Yoshizawa, A., Kojima, Y., Oguri, E., Nakamura, S., Suzuki, S., Yuasa-Kawada, J., Kinoshita-Kawada, M., Mochizuki, T., and Masai, I. (2013) The BH3-Only SNARE BNip1 Mediates Photoreceptor Apoptosis in Response to Vesicular Fusion Defects. Developmental Cell. 25(4):374-387
Suzuki, S.C., Bleckert, A., Williams, P.R., Takechi, M., Kawamura, S., and Wong, R.O. (2013) Cone photoreceptor types in zebrafish are generated by symmetric terminal divisions of dedicated precursors. Proceedings of the National Academy of Sciences of the United States of America. 110(37):15109-14
Li, X., Montgomery, J., Cheng, W., Noh, J.H., Hyde, D.R., and Li, L. (2012) Pineal photoreceptor cells are required for maintaining the circadian rhythms of behavioral visual sensitivity in zebrafish. PLoS One. 7(7):e40508
Yin, J., Shine, L., Raycroft, F., Deeti, S., Reynolds, A., Ackerman, K.M., Glaviano, A., O'Farrell, S., O'Leary, O., Kilty, C., Kennedy, C., McLoughlin, S., Rice, M., Russell, E., Higgins, D.G., Hyde, D.R., and Kennedy, B.N. (2012) Inhibition of the pim1 oncogene results in diminished visual function. PLoS One. 7(12):e52177
Murphy, T.R., Vihtelic, T.S., Ile, K.E., Watson, C.T., Willer, G.B., Gregg, R.G., Bankaitis, V.A., and Hyde, D.R. (2011) Phosphatidylinositol synthase is required for lens structural integrity and photoreceptor cell survival in the zebrafish eye. Experimental Eye Research. 93(4):460-74
Qin, Z., Kidd, A.R., Thomas, J.L., Poss, K.D., Hyde, D.R., Raymond, P.A., and Thummel, R. (2011) FGF signaling regulates rod photoreceptor cell maintenance and regeneration in zebrafish. Experimental Eye Research. 93(5):726-34
Stevens, C.B., Cameron, D.A., and Stenkamp, D.L. (2011) Plasticity of photoreceptor-generating retinal progenitors revealed by prolonged retinoic acid exposure. BMC Developmental Biology. 11(1):51
Thomas, J.L., Vihtelic, T.S., Dendekker, A.D., Willer, G., Luo, X., Murphy, T.R., Gregg, R.G., Hyde, D.R., and Thummel, R. (2011) The loss of vacuolar protein sorting 11 (vps11) causes retinal pathogenesis in a vertebrate model of syndromic albinism. Investigative ophthalmology & visual science. 52(6):3119-28
Ile, K.E., Kassen, S., Cao, C., Vihtehlic, T., Shah, S.D., Mousley, C.J., Alb, J.G. Jr, Huijbregts, R.P., Stearns, G.W., Brockerhoff, S.E., Hyde, D.R., and Bankaitis, V.A. (2010) Zebrafish Class 1 Phosphatidylinositol Transfer Proteins: PITPbeta and Double Cone Cell Outer Segment Integrity in Retina. Traffic (Copenhagen, Denmark). 11(9):1151-1167
Montgomery, J.E., Parsons, M.J., and Hyde, D.R. (2010) A novel model of retinal ablation demonstrates that the extent of rod cell death regulates the origin of the regenerated zebrafish rod photoreceptors. The Journal of comparative neurology. 518(6):800-814
Thummel, R., Enright, J.M., Kassen, S.C., Montgomery, J.E., Bailey, T.J., and Hyde, D.R. (2010) Pax6a and Pax6b are required at different points in neuronal progenitor cell proliferation during zebrafish photoreceptor regeneration. Experimental Eye Research. 90(5):572-582
Hamaoka, T., Takechi, M., Chinen, A., Nishiwaki, Y., and Kawamura, S. (2002) Visualization of rod photoreceptor development using GFP-transgenic zebrafish. Genesis (New York, N.Y. : 2000). 34(3):215-220
Perkins, B.D., Kainz, P.M., O'Malley, D.M., and Dowling, J.E. (2002) Transgenic expression of a GFP-rhodopsin COOH-terminal fusion protein in zebrafish rod photoreceptors. Visual neuroscience. 19(3):257-264
Vihtelic, T.S. and Hyde, D.R. (2000) Light-induced rod and cone cell death and regeneration in the adult albino zebrafish (Danio rerio) retina. Journal of neurobiology. 44(3):289-307
Vihtelic, T.S., Doro, C.J., and Hyde, D.R. (1999) Cloning and characterization of six zebrafish photoreceptor opsin cDNAs and immunolocalization of their corresponding proteins. Visual neuroscience. 16:571-585
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