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ZFIN ID:
ZDB-MRPHLNO-100414-8
CITATIONS
(7 total)
Morpholino Name:
MO1-epas1b
Morpholino Symbol:
MO1-epas1b
Chung, H.Y., Lin, B.A., Lin, Y.X., Chang, C.W., Tzou, W.S., Pei, T.W., Hu, C.H. (2021) Meis1, Hi1α, and GATA1 are integrated into a hierarchical regulatory network to mediate primitive erythropoiesis. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 35:e21915
Hsieh, C.S., Ko, C.Y., Chen, S.Y., Liu, T.M., Wu, J.S., Hu, C.H., and Sun, C.K. (2008) In vivo long-term continuous observation of gene expression in zebrafish embryo nerve systems by using harmonic generation microscopy and morphant technology. Journal of Biomedical Optics. 13(6):064041
Ko, C.Y., Tsai, M.Y., Tseng, W.F., Cheng, C.H., Huang, C.R., Wu, J.S., Chung, H.Y., Hsieh, C.S., Sun, C.K., Hwang, S.P., Yuh, C.H., Huang, C.J., Pai, T.W., Tzou, W.S., and Hu, C.H. (2011) Integration of CNS survival and differentiation by HIF2α. Cell death and differentiation. 18(11):1757-70
Lai, Y.R., Lu, Y.F., Lien, H.W., Huang, C.J., Hwang, S.L. (2016) Foxa2 and Hif1ab regulate maturation of intestinal goblet cells by modulating agr2 expression in zebrafish embryos. The Biochemical journal. 473(14):2205-18
Lien, H.W., Yuan, R.Y., Chou, C.M., Chen, Y.C., Hung, C.C., Hu, C.H., Hwang, S.P., Hwang, P.P., Shen, C.N., Chen, C.L., Cheng, C.H., Huang, C.J. (2016) Zebrafish cyclin Dx is required for development of motor neuron progenitors, and its expression is regulated by hypoxia-inducible factor 2α. Scientific Reports. 6:28297
Lin, T.Y., Chou, C.F., Chung, H.Y., Chiang, C.Y., Li, C.H., Wu, J.L., Lin, H.J., Pai, T.W., Hu, C.H., Tzou, W.S. (2014) Hypoxia-Inducible Factor 2 Alpha Is Essential for Hepatic Outgrowth and Functions via the Regulation of leg1 Transcription in the Zebrafish Embryo. PLoS One. 9:e101980
Wu, S., Chen, K., Xu, T., Ma, K., Gao, L., Fu, C., Zhang, W., Jing, C., Ren, C., Deng, M., Chen, Y., Zhou, Y., Pan, W., Jia, X. (2021) Tpr Deficiency Disrupts Erythroid Maturation With Impaired Chromatin Condensation in Zebrafish Embryogenesis. Frontiers in cell and developmental biology. 9:709923
Chung, H.Y., Lin, B.A., Lin, Y.X., Chang, C.W., Tzou, W.S., Pei, T.W., Hu, C.H. (2021) Meis1, Hi1α, and GATA1 are integrated into a hierarchical regulatory network to mediate primitive erythropoiesis. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 35:e21915
Wu, S., Chen, K., Xu, T., Ma, K., Gao, L., Fu, C., Zhang, W., Jing, C., Ren, C., Deng, M., Chen, Y., Zhou, Y., Pan, W., Jia, X. (2021) Tpr Deficiency Disrupts Erythroid Maturation With Impaired Chromatin Condensation in Zebrafish Embryogenesis. Frontiers in cell and developmental biology. 9:709923
Lai, Y.R., Lu, Y.F., Lien, H.W., Huang, C.J., Hwang, S.L. (2016) Foxa2 and Hif1ab regulate maturation of intestinal goblet cells by modulating agr2 expression in zebrafish embryos. The Biochemical journal. 473(14):2205-18
Lien, H.W., Yuan, R.Y., Chou, C.M., Chen, Y.C., Hung, C.C., Hu, C.H., Hwang, S.P., Hwang, P.P., Shen, C.N., Chen, C.L., Cheng, C.H., Huang, C.J. (2016) Zebrafish cyclin Dx is required for development of motor neuron progenitors, and its expression is regulated by hypoxia-inducible factor 2α. Scientific Reports. 6:28297
Lin, T.Y., Chou, C.F., Chung, H.Y., Chiang, C.Y., Li, C.H., Wu, J.L., Lin, H.J., Pai, T.W., Hu, C.H., Tzou, W.S. (2014) Hypoxia-Inducible Factor 2 Alpha Is Essential for Hepatic Outgrowth and Functions via the Regulation of leg1 Transcription in the Zebrafish Embryo. PLoS One. 9:e101980
Ko, C.Y., Tsai, M.Y., Tseng, W.F., Cheng, C.H., Huang, C.R., Wu, J.S., Chung, H.Y., Hsieh, C.S., Sun, C.K., Hwang, S.P., Yuh, C.H., Huang, C.J., Pai, T.W., Tzou, W.S., and Hu, C.H. (2011) Integration of CNS survival and differentiation by HIF2α. Cell death and differentiation. 18(11):1757-70
Hsieh, C.S., Ko, C.Y., Chen, S.Y., Liu, T.M., Wu, J.S., Hu, C.H., and Sun, C.K. (2008) In vivo long-term continuous observation of gene expression in zebrafish embryo nerve systems by using harmonic generation microscopy and morphant technology. Journal of Biomedical Optics. 13(6):064041
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