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ZFIN ID:
ZDB-MRPHLNO-060705-5
CITATIONS
(16 total)
Morpholino Name:
MO1-tcf7l1a
Morpholino Symbol:
MO1-tcf7l1a
Caneparo, L., Huang, Y.L., Staudt, N., Tada, M., Ahrendt, R., Kazanskaya, O., Niehrs, C., and Houart, C. (2007) Dickkopf-1 regulates gastrulation movements by coordinated modulation of Wnt/betacatenin and Wnt/PCP activities, through interaction with the Dally-like homolog Knypek. Genes & Development. 21(4):465-480
Carl, M., Bianco, I.H., Bajoghli, B., Aghaallaei, N., Czerny, T., and Wilson, S.W. (2007) Wnt/Axin1/beta-Catenin Signaling Regulates Asymmetric Nodal Activation, Elaboration, and Concordance of CNS Asymmetries. Neuron. 55(3):393-405
Cavodeassi, F., Carreira-Barbosa, F., Young, R., Concha, M., Allende, M.L., Houart, C., Tada, M., and Wilson, S. (2005) Early Stages of Zebrafish Eye Formation Require the Coordinated Activity of Wnt11, Fz5, and the Wnt/Catenin Pathway. Neuron. 47(1):43-56
Domené, S., Roessler, E., El-Jaick, K.B., Snir, M., Brown, J.L., Vélez, J.I., Bale, S., Lacbawan, F., Muenke, M., and Feldman, B. (2008) Mutations in the human SIX3 gene in holoprosencephaly are loss-of-function. Human molecular genetics. 17(24):3919-3928
Dorsky, R.I., Itoh, M., Moon, R.T., and Chitnis, A. (2003) Two tcf3 genes cooperate to pattern the zebrafish brain. Development (Cambridge, England). 130(9):1937-1947
Dorsky, R.I., Sheldahl, L.C., and Moon, R.T. (2002) A transgenic Lef1/beta-catenin-dependent reporter is expressed in spatially restricted domains throughout zebrafish development. Developmental Biology. 241(2):229-237
Faro, A., Boj, S.F., Ambrósio, R., van den Broek, O., Korving, J., and Clevers, H. (2009) T-Cell Factor 4 (tcf7l2) Is the Main Effector of Wnt Signaling During Zebrafish Intestine Organogenesis. Zebrafish. 6(1):59-68
Gribble, S.L., Kim, H.S., Bonner, J., Wang, X., and Dorsky, R.I. (2009) Tcf3 inhibits spinal cord neurogenesis by regulating sox4a expression. Development (Cambridge, England). 136(5):781-789
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
Jeong, J.Y., Einhorn, Z., Mathur, P., Chen, L., Lee, S., Kawakami, K., and Guo, S. (2007) Patterning the zebrafish diencephalon by the conserved zinc-finger protein Fezl. Development (Cambridge, England). 134(1):127-136
Johansson, M., Giger, F.A., Fielding, T., Houart, C. (2019) Dkk1 Controls Cell-Cell Interaction through Regulation of Non-nuclear β-Catenin Pools. Developmental Cell. 51(6):775-786.e3
Kagermeier-Schenk, B., Wehner, D., Ozhan-Kizil, G., Yamamoto, H., Li, J., Kirchner, K., Hoffmann, C., Stern, P., Kikuchi, A., Schambony, A., and Weidinger, G. (2011) Waif1/5T4 Inhibits Wnt/β-Catenin Signaling and Activates Noncanonical Wnt Pathways by Modifying LRP6 Subcellular Localization. Developmental Cell. 21(6):1129-43
Lu, F.I., Sun, Y.H., Wei, C.Y., Thisse, C., Thisse, B. (2014) Tissue-specific derepression of TCF/LEF controls the activity of the Wnt/β-catenin pathway. Nature communications. 5:5368
Mandal, A., Holowiecki, A., Song, Y.C., Waxman, J.S. (2017) Wnt signaling balances specification of the cardiac and pharyngeal muscle fields. Mechanisms of Development. 143:32-41
Shimizu, N., Kawakami, K., and Ishitani, T. (2012) Visualization and exploration of Tcf/Lef function using a highly responsive Wnt/beta-catenin signaling-reporter transgenic zebrafish. Developmental Biology. 370(1):71-85
Sorrell, M.R., Dohn, T.E., D'Aniello, E., and Waxman, J.S. (2013) Tcf7l1 proteins cell autonomously restrict cardiomyocyte and promote endothelial specification in zebrafish. Developmental Biology. 380(2):199-210
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
Johansson, M., Giger, F.A., Fielding, T., Houart, C. (2019) Dkk1 Controls Cell-Cell Interaction through Regulation of Non-nuclear β-Catenin Pools. Developmental Cell. 51(6):775-786.e3
Mandal, A., Holowiecki, A., Song, Y.C., Waxman, J.S. (2017) Wnt signaling balances specification of the cardiac and pharyngeal muscle fields. Mechanisms of Development. 143:32-41
Lu, F.I., Sun, Y.H., Wei, C.Y., Thisse, C., Thisse, B. (2014) Tissue-specific derepression of TCF/LEF controls the activity of the Wnt/β-catenin pathway. Nature communications. 5:5368
Sorrell, M.R., Dohn, T.E., D'Aniello, E., and Waxman, J.S. (2013) Tcf7l1 proteins cell autonomously restrict cardiomyocyte and promote endothelial specification in zebrafish. Developmental Biology. 380(2):199-210
Shimizu, N., Kawakami, K., and Ishitani, T. (2012) Visualization and exploration of Tcf/Lef function using a highly responsive Wnt/beta-catenin signaling-reporter transgenic zebrafish. Developmental Biology. 370(1):71-85
Kagermeier-Schenk, B., Wehner, D., Ozhan-Kizil, G., Yamamoto, H., Li, J., Kirchner, K., Hoffmann, C., Stern, P., Kikuchi, A., Schambony, A., and Weidinger, G. (2011) Waif1/5T4 Inhibits Wnt/β-Catenin Signaling and Activates Noncanonical Wnt Pathways by Modifying LRP6 Subcellular Localization. Developmental Cell. 21(6):1129-43
Faro, A., Boj, S.F., Ambrósio, R., van den Broek, O., Korving, J., and Clevers, H. (2009) T-Cell Factor 4 (tcf7l2) Is the Main Effector of Wnt Signaling During Zebrafish Intestine Organogenesis. Zebrafish. 6(1):59-68
Gribble, S.L., Kim, H.S., Bonner, J., Wang, X., and Dorsky, R.I. (2009) Tcf3 inhibits spinal cord neurogenesis by regulating sox4a expression. Development (Cambridge, England). 136(5):781-789
Domené, S., Roessler, E., El-Jaick, K.B., Snir, M., Brown, J.L., Vélez, J.I., Bale, S., Lacbawan, F., Muenke, M., and Feldman, B. (2008) Mutations in the human SIX3 gene in holoprosencephaly are loss-of-function. Human molecular genetics. 17(24):3919-3928
Caneparo, L., Huang, Y.L., Staudt, N., Tada, M., Ahrendt, R., Kazanskaya, O., Niehrs, C., and Houart, C. (2007) Dickkopf-1 regulates gastrulation movements by coordinated modulation of Wnt/betacatenin and Wnt/PCP activities, through interaction with the Dally-like homolog Knypek. Genes & Development. 21(4):465-480
Carl, M., Bianco, I.H., Bajoghli, B., Aghaallaei, N., Czerny, T., and Wilson, S.W. (2007) Wnt/Axin1/beta-Catenin Signaling Regulates Asymmetric Nodal Activation, Elaboration, and Concordance of CNS Asymmetries. Neuron. 55(3):393-405
Jeong, J.Y., Einhorn, Z., Mathur, P., Chen, L., Lee, S., Kawakami, K., and Guo, S. (2007) Patterning the zebrafish diencephalon by the conserved zinc-finger protein Fezl. Development (Cambridge, England). 134(1):127-136
Cavodeassi, F., Carreira-Barbosa, F., Young, R., Concha, M., Allende, M.L., Houart, C., Tada, M., and Wilson, S. (2005) Early Stages of Zebrafish Eye Formation Require the Coordinated Activity of Wnt11, Fz5, and the Wnt/Catenin Pathway. Neuron. 47(1):43-56
Dorsky, R.I., Itoh, M., Moon, R.T., and Chitnis, A. (2003) Two tcf3 genes cooperate to pattern the zebrafish brain. Development (Cambridge, England). 130(9):1937-1947
Dorsky, R.I., Sheldahl, L.C., and Moon, R.T. (2002) A transgenic Lef1/beta-catenin-dependent reporter is expressed in spatially restricted domains throughout zebrafish development. Developmental Biology. 241(2):229-237
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