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ZFIN ID:
ZDB-ATB-090130-2
CITATIONS
(32 total)
Antibody Name:
Ab2-ctnnb
Tao, Z., Yang, D., Ni, R. (2023) Tmed10 deficiency results in impaired exocrine pancreatic differentiation in zebrafish larvae. Developmental Biology. 503:43-52
Marques, I.J., Ernst, A., Arora, P., Vianin, A., Hetke, T., Sanz-Morejón, A., Naumann, U., Odriozola, A., Langa, X., Andrés-Delgado, L., Zuber, B., Torroja, C., Osterwalder, M., Simões, F., Englert, C., Mercader, N. (2022) WT1 transcription factor impairs cardiomyocyte specification and drives a phenotypic switch from myocardium to epicardium. Development (Cambridge, England). 149(6):
Clark, B.S., Miesfeld, J.B., Flinn, M.A., Collery, R.F., Link, B.A. (2021) Dynamic Polarization of Rab11a Modulates Crb2a Localization and Impacts Signaling to Regulate Retinal Neurogenesis. Frontiers in cell and developmental biology. 8:608112
Moreno-Mármol, T., Ledesma-Terrón, M., Tabanera, N., Martin-Bermejo, M.J., Cardozo, M.J., Cavodeassi, F., Bovolenta, P. (2021) Stretching of the retinal pigment epithelium contributes to zebrafish optic cup morphogenesis. eLIFE. 10:
Covello, G., Rossello, F.J., Filosi, M., Gajardo, F., Duchemin, A.L., Tremonti, B.F., Eichenlaub, M., Polo, J.M., Powell, D., Ngai, J., Allende, M.L., Domenici, E., Ramialison, M., Poggi, L. (2020) Transcriptome analysis of the zebrafish
atoh7-/-
Mutant,
lakritz
, highlights Atoh7-dependent genetic networks with potential implications for human eye diseases. FASEB bioAdvances. 2:434-448
Andrés-Delgado, L., Ernst, A., Galardi-Castilla, M., Bazaga, D., Peralta, M., Münch, J., González-Rosa, J.M., Marques, I., Tessadori, F., de la Pompa, J.L., Vermot, J., Mercader, N. (2019) Actin dynamics and the Bmp pathway drive apical extrusion of proepicardial cells. Development (Cambridge, England). 146(13):
Chia, J.S.M., Wall, E.S., Wee, C.L., Rowland, T.A.J., Cheng, R.K., Cheow, K., Guillemin, K., Jesuthasan, S. (2019) Bacteria evoke alarm behaviour in zebrafish. Nature communications. 10:3831
Liedtke, D., Orth, M., Meissler, M., Geuer, S., Knaup, S., Köblitz, I., Klopocki, E. (2019) ECM alterations in Fndc3a (Fibronectin Domain Containing Protein 3A) deficient zebrafish cause temporal fin development and regeneration defects. Scientific Reports. 9:13383
Ren, J., Han, P., Ma, X., Farah, E.N., Bloomekatz, J., Zeng, X.I., Zhang, R., Swim, M.M., Witty, A.D., Knight, H.G., Deshpande, R., Xu, W., Yelon, D., Chen, S., Chi, N.C. (2019) Canonical Wnt5b Signaling Directs Outlying Nkx2.5+ Mesoderm into Pacemaker Cardiomyocytes. Developmental Cell. 50(6):729-743.e5
Uroz, M., Garcia-Puig, A., Tekeli, I., Elosegui-Artola, A., Abenza, J.F., Marín-Llauradó, A., Pujals, S., Conte, V., Albertazzi, L., Roca-Cusachs, P., Raya, Á., Trepat, X. (2019) Traction forces at the cytokinetic ring regulate cell division and polyploidy in the migrating zebrafish epicardium. Nature Materials. 18(9):1015-1023
Russell, J.O., Ko, S., Saggi, H.S., Singh, S., Poddar, M., Shin, D., Monga, S.P. (2018) Bromodomain and Extraterminal (BET) Proteins Regulate Hepatocyte Proliferation in Hepatocyte-Driven Liver Regeneration. The American journal of pathology. 188(6):1389-1405
Edens, B.M., Yan, J., Deng, H.X., Siddique, T., Ma, Y.C. (2017) A novel ALS-associated variant in
UBQLN4
regulates motor axon morphogenesis.. eLIFE. 6
Morris, E.A., Bodin, S., Delaval, B., Comunale, F., Georget, V., Costa, M.L., Lutfalla, G., Gauthier-Rouvière, C. (2017) Flotillins control zebrafish epiboly through their role in cadherin-mediated cell-cell adhesion. Biology of the cell. 109(5):210-221
James, A., Lee, C., Williams, A.M., Angileri, K., Lathrop, K.L., Gross, J.M. (2016) The Hyaloid Vasculature Facilitates Basement Membrane Breakdown During Choroid Fissure Closure in the Zebrafish Eye. Developmental Biology. 419(2):262-272
Sempou, E., Biasini, E., Pinzón-Olejua, A., Harris, D.A., Málaga-Trillo, E. (2016) Activation of zebrafish Src family kinases by the prion protein is an amyloid-β-sensitive signal that prevents the endocytosis and degradation of E-cadherin/β-catenin complexes in vivo. Molecular neurodegeneration. 11:18
Bouldin, C.M., Manning, A.J., Peng, Y.H., Farr, G.H., Hung, K.L., Dong, A., Kimelman, D. (2015) Wnt signaling and tbx16 form a bistable switch to commit bipotential progenitors to mesoderm. Development (Cambridge, England). 142:2499-507
Hernández-Bejarano, M., Gestri, G., Spawls, L., Nieto-López, F., Picker, A., Tada, M., Brand, M., Bovolenta, P., Wilson, S.W., Cavodeassi, F. (2015) Opposing Shh and Fgf signals initiate nasotemporal patterning of the retina. Development (Cambridge, England). 142(22):3933-42
Valenti, F., Ibetti, J., Komiya, Y., Baxter, M., Lucchese, A.M., Derstine, L., Covaciu, C., Rizzo, V., Vento, R., Russo, G., Macaluso, M., Cotelli, F., Castiglia, D., Gottardi, C.J., Habas, R., Giordano, A., Bellipanni, G. (2015) The increase in maternal expression of axin1 and axin2 contribute to the zebrafish mutant ichabod ventralized phenotype. Journal of cellular biochemistry. 116(3):418-30
Hultin, S., Zheng, Y., Mojallal, M., Vertuani, S., Gentili, C., Balland, M., Milloud, R., Belting, H.G., Affolter, M., Helker, C.S., Adams, R.H., Herzog, W., Uhlen, P., Majumdar, A., Holmgren, L. (2014) AmotL2 links VE-cadherin to contractile actin fibres necessary for aortic lumen expansion. Nature communications. 5:3743
Musso, G., Tasan, M., Mosimann, C., Beaver, J.E., Plovie, E., Carr, L.A., Chua, H.N., Dunham, J., Zuberi, K., Rodriguez, H., Morris, Q., Zon, L., Roth, F.P., and MacRae, C.A. (2014) Novel cardiovascular gene functions revealed via systematic phenotype prediction in zebrafish. Development (Cambridge, England). 141(1):224-235
Ohishi, K., Toume, K., Arai, M.A., Sadhu, S.K., Ahmed, F., Mizoguchi, T., Itoh, M., Ishibashi, M. (2014) Ricinine: A pyridone alkaloid from Ricinus communis that activates the Wnt signaling pathway through casein kinase 1α. Bioorganic & Medicinal Chemistry. 22(17):4597-601
Clark, B.S., Cui, S., Miesfeld, J.B., Klezovitch, O., Vasioukhin, V., and Link, B.A. (2012) Loss of Llgl1 in retinal neuroepithelia reveals links between apical domain size, Notch activity and neurogenesis. Development (Cambridge, England). 139(9):1599-1610
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
Ramachandran, R., Zhao, X.F., and Goldman, D. (2011) Ascl1a/Dkk/ beta -catenin signaling pathway is necessary and glycogen synthase kinase-3 beta inhibition is sufficient for zebrafish retina regeneration. Proceedings of the National Academy of Sciences of the United States of America. 108(38):15858-63
Yang, Y., and Thorpe, C. (2011) BMP and non-canonical Wnt signaling are required for inhibition of secondary tail formation in zebrafish. Development (Cambridge, England). 138(12):2601-2611
Tay, H.G., Ng, Y.W., and Manser, E. (2010) A vertebrate-specific Chp-PAK-PIX pathway maintains E-cadherin at adherens junctions during zebrafish epiboly. PLoS One. 5(4):e10125
Arrington, C.B., and Yost, H.J. (2009) Extra-embryonic syndecan 2 regulates organ primordia migration and fibrillogenesis throughout the zebrafish embryo. Development (Cambridge, England). 136(18):3143-3152
Kan, N.G., Junghans, D., and Izpisúa Belmonte, J.C. (2009) Compensatory growth mechanisms regulated by BMP and FGF signaling mediate liver regeneration in zebrafish after partial hepatectomy. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 23(10):3516-3525
Phelps, R.A., Chidester, S., Dehghanizadeh, S., Phelps, J., Sandoval, I.T., Rai, K., Broadbent, T., Sarkar, S., Burt, R.W., and Jones, D.A. (2009) A two-step model for colon adenoma initiation and progression caused by APC loss. Cell. 137(4):623-634
Goessling, W., North, T.E., Lord, A.M., Ceol, C., Lee, S., Weidinger, G., Bourque, C., Strijbosch, R., Haramis, A.P., Puder, M., Clevers, H., Moon, R.T., and Zon, L.I. (2008) APC mutant zebrafish uncover a changing temporal requirement for wnt signaling in liver development. Developmental Biology. 320(1):161-174
Barrios, A., Poole, R.J., Durbin, L., Brennan, C., Holder, N., and Wilson, S.W. (2003) Eph/Ephrin signaling regulates the mesenchymal-to-epithelial transition of the paraxial mesoderm during somite morphogenesis. Current biology : CB. 13(18):1571-1582
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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