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ZFIN ID:
ZDB-ATB-090616-1
CITATIONS
(41 total)
Antibody Name:
Ab1-otof
Bufalo, A.J., Vanderbeck, M.M., Schmitt, J., McGraw, H.F. (2024) EpCAM regulates hair cell development and regeneration in the zebrafish lateral line. microPublication. Biology. 2024:
Megerson, E., Kuehn, M., Leifer, B., Bell, J.M., Snyder, J.L., McGraw, H.F. (2023) Kremen1 regulates the regenerative capacity of support cells and mechanosensory hair cells in the zebrafish lateral line. iScience. 27:108678108678
Newton, K.C., Kacev, D., Nilsson, S.R.O., Saettele, A.L., Golden, S.A., Sheets, L. (2023) Lateral line ablation by ototoxic compounds results in distinct rheotaxis profiles in larval zebrafish. Communications biology. 6:8484
Zhang, T., Xu, Z., Zheng, D., Wang, X., He, J., Zhang, L., Zallocchi, M. (2023) Novel biallelic variants in the PLEC gene are associated with severe hearing loss. Hearing Research. 436:108831108831
Denans, N., Tran, N.T.T., Swall, M.E., Diaz, D.C., Blanck, J., Piotrowski, T. (2022) An anti-inflammatory activation sequence governs macrophage transcriptional dynamics during tissue injury in zebrafish. Nature communications. 13:5356
Laureano, A.S., Flaherty, K., Hinman, A.M., Jadali, A., Nakamura, T., Higashijima, S.I., Sabaawy, H.E., Kwan, K.Y. (2022) shox2 is required for vestibular statoacoustic neuron development. Biology Open. 11(12):
Lee, D.S., Schrader, A., Bell, E., Warchol, M.E., Sheets, L. (2022) Evaluation of Cisplatin-Induced Pathology in the Larval Zebrafish Lateral Line. International Journal of Molecular Sciences. 23(22):
Holmgren, M., Ravicz, M.E., Hancock, K.E., Strelkova, O., Kallogjeri, D., Indzhykulian, A.A., Warchol, M.E., Sheets, L. (2021) Mechanical overstimulation causes acute injury and synapse loss followed by fast recovery in lateral-line neuromasts of larval zebrafish. eLIFE. 10:
Manchanda, A., Bonventre, J.A., Bugel, S.M., Chatterjee, P., Tanguay, R., Johnson, C.P. (2021) Truncation of the otoferlin transmembrane domain alters the development of hair cells and reduces membrane docking. Molecular biology of the cell. 32(14):1293-1305
Parkinson, L., Stawicki, T.M. (2021) alms1 mutant zebrafish do not show hair cell phenotypes seen in other cilia mutants. PLoS One. 16:e0246844
Warchol, M.E., Schrader, A., Sheets, L. (2021) Macrophages Respond Rapidly to Ototoxic Injury of Lateral Line Hair Cells but Are Not Required for Hair Cell Regeneration. Frontiers in Cellular Neuroscience. 14:613246
Zallocchi, M., Hati, S., Xu, Z., Hausman, W., Liu, H., He, D.Z., Zuo, J. (2021) Characterization of quinoxaline derivatives for protection against iatrogenic-induced hearing loss. JCI insight. 6(5):
Jedrychowska, J., Gasanov, E.V., Korzh, V. (2020) Kcnb1 plays a role in development of the inner ear. Developmental Biology. 471:65-75
Pei, W., Xu, L., Chen, Z., Slevin, C.C., Pettie, K.P., Wincovitch, S., NISC Comparative Sequencing Program, Burgess, S.M. (2020) A subset of SMN complex members have a specific role in tissue regeneration via ERBB pathway-mediated proliferation. NPJ Regenerative medicine. 5:6
Fogerty, J., Stepanyan, R., Cianciolo, L.T., Tooke, B.P., Perkins, B.D. (2019) Genomic non-redundancy of the mir-183/96/182 cluster and its requirement for hair cell maintenance. Scientific Reports. 9:10302
Manchanda, A., Chatterjee, P., Bonventre, J.A., Haggard, D.E., Kindt, K.S., Tanguay, R.L., Johnson, C.P. (2019) Otoferlin Depletion Results in Abnormal Synaptic Ribbons and Altered Intracellular Calcium Levels in Zebrafish. Scientific Reports. 9:14273
Meritet, D.M., Spagnoli, S.T., Fischer, K.A., Löhr, C.V. (2019) Evaluating the Effects of Various Decalcification Protocols on Immunohistochemical Staining in Zebrafish (
Danio rerio
). Zebrafish. 16(3):280-290
Thiessen, K.D., Grzegorski, S.J., Chin, Y., Higuchi, L., Wilkinson, C.J., Shavit, J.A., Kramer, K.L. (2019) Zebrafish otolith biomineralization requires polyketide synthase. Mechanisms of Development. 157:1-9
Pei, W., Xu, L., Huang, S.C., Pettie, K., Idol, J., Rissone, A., Jimenez, E., Sinclair, J.W., Slevin, C., Varshney, G.K., Jones, M., Carrington, B., Bishop, K., Huang, H., Sood, R., Lin, S., Burgess, S.M. (2018) Guided genetic screen to identify genes essential in the regeneration of hair cells and other tissues. NPJ Regenerative medicine. 3:11
Sanchez, S.M.R., Fuson, O., Tarang, S., Goodman, L., Pyakurel, U., Liu, H., He, D.Z., Zallocchi, M. (2018) Quinoxaline protects zebrafish lateral line hair cells from cisplatin and aminoglycosides damage. Scientific Reports. 8:15119
Li, H., Pei, W., Vergarajauregui, S., Zerfas, P.M., Raben, N., Burgess, S.M., Puertollano, R. (2017) Novel Degenerative and Developmental Defects in a Zebrafish Model of Mucolipidosis Type IV. Human molecular genetics. 26(14):2701-2718
Roberts, R., Elsner, J., Bagnall, M.W. (2017) Delayed Otolith Development Does Not Impair Vestibular Circuit Formation in Zebrafish. Journal of the Association for Research in Otolaryngology : JARO. 18(3):415-425
Sheets, L. (2017) Excessive activation of ionotropic glutamate receptors induces apoptotic hair-cell death independent of afferent and efferent innervation. Scientific Reports. 7:41102
Lee, S.G., Huang, M., Obholzer, N.D., Sun, S., Li, W., Petrillo, M., Dai, P., Zhou, Y., Cotanche, D.A., Megason, S.G., Li, H., Chen, Z.Y. (2016) Myc and Fgf Are Required for Zebrafish Neuromast Hair Cell Regeneration. PLoS One. 11:e0157768
Pei, W., Xu, L., Varshney, G.K., Carrington, B., Bishop, K., Jones, M., Huang, S.C., Idol, J., Pretorius, P.R., Beirl, A., Schimmenti, L.A., Kindt, K.S., Sood, R., Burgess, S.M. (2016) Additive reductions in zebrafish PRPS1 activity result in a spectrum of deficiencies modeling several human PRPS1-associated diseases. Scientific Reports. 6:29946
Vogl, C., Panou, I., Yamanbaeva, G., Wichmann, C., Mangosing, S.J., Vilardi, F., Indzhykulian, A.A., Pangršič, T., Santarelli, R., Rodriguez-Ballesteros, M., Weber, T., Jung, S., Cardenas, E., Wu, X., Wojcik, S.M., Kwan, K.Y., Del Castillo, I., Schwappach, B., Strenzke, N., Corey, D.P., Lin, S.Y., Moser, T. (2016) Tryptophan-rich basic protein (WRB) mediates insertion of the tail-anchored protein otoferlin and is required for hair cell exocytosis and hearing. The EMBO journal. 35(23):2536-2552
Agarwala, S., Duquesne, S., Liu, K., Boehm, A., Grimm, L., Link, S., König, S., Eimer, S., Ronneberger, O., Lecaudey, V. (2015) Amotl2a interacts with the Hippo effector Yap1 and the Wnt/β-catenin effector Lef1 to control tissue size in zebrafish. eLIFE. 4:e08201
Ariza-Cosano, A., Bensimon-Brito, A., Gómez-Skarmeta, J.L., Bessa, J. (2015) sox21a directs lateral line patterning by modulating FGF signaling. Developmental Neurobiology. 75(1):80-92
Chatterjee, P., Padmanarayana, M., Abdullah, N., Holman, C.L., LaDu, J., Tanguay, R.L., Johnson, C.P. (2015) Otoferlin Deficiency In Zebrafish Results In Defects In Balance And Hearing: Rescue Of The Balance And Hearing Phenotype With Full-length And Truncated Forms Of Mouse Otoferlin. Molecular and cellular biology. 35(6):1043-54
Ernest, S., Rosa, F.M. (2015) A genomic region encompassing a newly identified exon provides enhancing activity sufficient for normal myo7aa expression in zebrafish sensory hair cells. Developmental Neurobiology. 75(9):961-83
He, Y., Cai, C., Tang, D., Sun, S., Li, H. (2014) Effect of histone deacetylase inhibitors trichostatin A and valproic acid on hair cell regeneration in zebrafish lateral line neuromasts. Frontiers in Cellular Neuroscience. 8:382
Ogun, O., Zallocchi, M. (2014) Clarin-1 acts as a modulator of mechanotransduction activity and presynaptic ribbon assembly. The Journal of cell biology. 207(3):375-391
Head, J.R., Gacioch, L., Pennisi, M., and Meyers, J.R. (2013) Activation of canonical Wnt/beta-catenin signaling stimulates proliferation in neuromasts in the zebrafish posterior lateral line. Developmental Dynamics : an official publication of the American Association of Anatomists. 242(7):832-46
Rothschild, S.C., Lahvic, J., Francescatto, L., McLeod, J.J., Burgess, S.M., and Tombes, R.M. (2013) CaMK-II activation is essential for zebrafish inner ear development and acts through Delta-Notch signaling. Developmental Biology. 381(1):179-88
Bricaud, O., and Collazo, A. (2011) Balancing cell numbers during organogenesis: Six1a differentially affects neurons and sensory hair cells in the inner ear. Developmental Biology. 357(1):191-201
Goodyear, R.J., Legan, P.K., Christiansen, J.R., Xia, B., Korchagina, J., Gale, J.E., Warchol, M.E., Corwin, J.T., and Richardson, G.P. (2010) Identification of the hair cell soma-1 Antigen, HCS-1, as Otoferlin. Journal of the Association for Research in Otolaryngology : JARO. 11:573–586
Li, H., Kloosterman, W., and Fekete, D.M. (2010) MicroRNA-183 Family Members Regulate Sensorineural Fates in the Inner Ear. The Journal of neuroscience : the official journal of the Society for Neuroscience. 30(9):3254-3263
Faucherre, A., Pujol-Martí, J., Kawakami, K., and Lopez-Schier, H. (2009) Afferent neurons of the zebrafish lateral line are strict selectors of hair-cell orientation. PLoS One. 4(2):e4477
Friedman, L.M., Dror, A.A., Mor, E., Tenne, T., Toren, G., Satoh, T., Biesemeier, D.J., Shomron, N., Fekete, D.M., Hornstein, E., and Avraham, K.B. (2009) MicroRNAs are essential for development and function of inner ear hair cells in vertebrates. Proceedings of the National Academy of Sciences of the United States of America. 106(19):7915-7920
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
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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