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ZFIN ID:
ZDB-MRPHLNO-051024-1
CITATIONS
(11 total)
Morpholino Name:
MO1-ctnnb1
Morpholino Symbol:
MO1-ctnnb1
Caron, A., Xu, X., and Lin, X. (2012) Wnt/β-catenin signaling directly regulates Foxj1 expression and ciliogenesis in zebrafish Kupffer’s vesicle. Development (Cambridge, England). 139(3):514-24
Chen, D., Tang, J., Wan, Q., Zhang, J., Wang, K., Shen, Y., Yu, Y. (2017) E-Prostanoid 3 Receptor Mediates Sprouting Angiogenesis Through Suppression of the Protein Kinase A/β-Catenin/Notch Pathway. Arteriosclerosis, Thrombosis, and Vascular Biology. 37(5):856-866
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
Gorsuch, R.A., Lahne, M., Yarka, C.E., Petravick, M.E., Li, J., Hyde, D.R. (2017) Sox2 regulates Müller glia reprogramming and proliferation in the regenerating zebrafish retina via Lin28 and Ascl1a. Experimental Eye Research. 161:174-192
He, M., Zhang, R., Jiao, S., Zhang, F., Ye, D., Wang, H., Sun, Y. (2020) Nanog safeguards early embryogenesis against global activation of maternal β-catenin activity by interfering with TCF factors. PLoS Biology. 18:e3000561
Li, Z., Wang, Y., Zhang, M., Xu, P., Huang, H., Wu, D., and Meng, A. (2012) Amotl2 gene inhibits Wnt/beta-catenin signaling and regulates embryonic development in zebrafish embryoys. The Journal of biological chemistry. 287(16):13005-13015
Lyman Gingerich, J., Westfall, T.A., Slusarski, D.C., and Pelegri, F. (2005) hecate, a zebrafish maternal effect gene, affects dorsal organizer induction and intracellular calcium transient frequency. Developmental Biology. 286(2):427-439
Rottbauer, W., Saurin, A.J., Lickert, H., Shen, X., Burns, C.G., Wo, Z.G., Kemler, R., Kingston, R., Wu, C., and Fishman, M. (2002) Reptin and pontin antagonistically regulate heart growth in zebrafish embryos. Cell. 111(5):661-672
Shivanna, S., Harrold, I., Shashar, M., Meyer, R., Kiang, C., Francis, J., Zhao, Q., Feng, H., Edelman, E.R., Rahimi, N., Chitalia, V.C. (2015) c-Cbl regulates nuclear β-catenin and angiogenesis through its Wnt-mediated phosphorylation. The Journal of biological chemistry. 290(20):12537-46
Upadhyay, G., Goessling, W., North, T.E., Xavier, R., Zon, L.I., and Yajnik, V. (2008) Molecular association between beta-catenin degradation complex and Rac guanine exchange factor DOCK4 is essential for Wnt/beta-catenin signaling. Oncogene. 27(44):5845-5855
Zhang, M., Zhang, J., Lin, S.C., and Meng, A. (2012) beta-Catenin 1 and beta-catenin 2 play similar and distinct roles in left-right asymmetric development of zebrafish embryos. Development (Cambridge, England). 139(11):2009-2019
He, M., Zhang, R., Jiao, S., Zhang, F., Ye, D., Wang, H., Sun, Y. (2020) Nanog safeguards early embryogenesis against global activation of maternal β-catenin activity by interfering with TCF factors. PLoS Biology. 18:e3000561
Chen, D., Tang, J., Wan, Q., Zhang, J., Wang, K., Shen, Y., Yu, Y. (2017) E-Prostanoid 3 Receptor Mediates Sprouting Angiogenesis Through Suppression of the Protein Kinase A/β-Catenin/Notch Pathway. Arteriosclerosis, Thrombosis, and Vascular Biology. 37(5):856-866
Gorsuch, R.A., Lahne, M., Yarka, C.E., Petravick, M.E., Li, J., Hyde, D.R. (2017) Sox2 regulates Müller glia reprogramming and proliferation in the regenerating zebrafish retina via Lin28 and Ascl1a. Experimental Eye Research. 161:174-192
Shivanna, S., Harrold, I., Shashar, M., Meyer, R., Kiang, C., Francis, J., Zhao, Q., Feng, H., Edelman, E.R., Rahimi, N., Chitalia, V.C. (2015) c-Cbl regulates nuclear β-catenin and angiogenesis through its Wnt-mediated phosphorylation. The Journal of biological chemistry. 290(20):12537-46
Caron, A., Xu, X., and Lin, X. (2012) Wnt/β-catenin signaling directly regulates Foxj1 expression and ciliogenesis in zebrafish Kupffer’s vesicle. Development (Cambridge, England). 139(3):514-24
Li, Z., Wang, Y., Zhang, M., Xu, P., Huang, H., Wu, D., and Meng, A. (2012) Amotl2 gene inhibits Wnt/beta-catenin signaling and regulates embryonic development in zebrafish embryoys. The Journal of biological chemistry. 287(16):13005-13015
Zhang, M., Zhang, J., Lin, S.C., and Meng, A. (2012) beta-Catenin 1 and beta-catenin 2 play similar and distinct roles in left-right asymmetric development of zebrafish embryos. Development (Cambridge, England). 139(11):2009-2019
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
Upadhyay, G., Goessling, W., North, T.E., Xavier, R., Zon, L.I., and Yajnik, V. (2008) Molecular association between beta-catenin degradation complex and Rac guanine exchange factor DOCK4 is essential for Wnt/beta-catenin signaling. Oncogene. 27(44):5845-5855
Lyman Gingerich, J., Westfall, T.A., Slusarski, D.C., and Pelegri, F. (2005) hecate, a zebrafish maternal effect gene, affects dorsal organizer induction and intracellular calcium transient frequency. Developmental Biology. 286(2):427-439
Rottbauer, W., Saurin, A.J., Lickert, H., Shen, X., Burns, C.G., Wo, Z.G., Kemler, R., Kingston, R., Wu, C., and Fishman, M. (2002) Reptin and pontin antagonistically regulate heart growth in zebrafish embryos. Cell. 111(5):661-672
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