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ZFIN ID:
ZDB-MRPHLNO-061111-1
CITATIONS
(7 total)
Morpholino Name:
MO1-foxc1a
Morpholino Symbol:
MO1-foxc1a
Berry, F.B., Skarie, J.M., Mirzayans, F., Fortin, Y., Hudson, T.J., Raymond, V., Link, B.A., and Walter, M.A. (2008) FOXC1 is required for cell viability and resistance to oxidative stress in the eye through the transcriptional regulation of FOXO1A. Human molecular genetics. 17(4):490-505
Lee, H.C., Tseng, W.A., Lo, F.Y., Liu, T.M., and Tsai, H.J. (2009) FoxD5 mediates anterior-posterior polarity through upstream modulator Fgf signaling during zebrafish somitogenesis. Developmental Biology. 336(2):232-245
Lupo, G., Gestri, G., O'Brien, M., Denton, R.M., Chandraratna, R.A., Ley, S.V., Harris, W.A., and Wilson, S.W. (2011) Retinoic acid receptor signaling regulates choroid fissure closure through independent mechanisms in the ventral optic cup and periocular mesenchyme. Proceedings of the National Academy of Sciences of the United States of America. 108(21):8698-8703
O'Brien, L.L., Grimaldi, M., Kostun, Z., Wingert, R.A., Selleck, R., and Davidson, A.J. (2011) Wt1a, Foxc1a, and the Notch mediator Rbpj physically interact and regulate the formation of podocytes in zebrafish. Developmental Biology. 358(2):318-30
Palencia-Desai, S., Kohli, V., Kang, J., Chi, N.C., Black, B.L., and Sumanas, S. (2011) Vascular endothelial and endocardial progenitors differentiate as cardiomyocytes in the absence of Etsrp/Etv2 function. Development (Cambridge, England). 138(21):4721-4732
Skarie, J.M., and Link, B.A. (2009) FoxC1 is essential for vascular basement membrane integrity and hyaloid vessel morphogenesis. Investigative ophthalmology & visual science. 50(11):5026-5034
Topczewska, J.M., Topczewski, J., Shostak, A., Kume, T., Solnica-Krezel, L., and Hogan, B.L. (2001) The winged helix transcription factor Foxc1a is essential for somitogenesis in zebrafish. Genes & Development. 15(18):2483-2493
Lupo, G., Gestri, G., O'Brien, M., Denton, R.M., Chandraratna, R.A., Ley, S.V., Harris, W.A., and Wilson, S.W. (2011) Retinoic acid receptor signaling regulates choroid fissure closure through independent mechanisms in the ventral optic cup and periocular mesenchyme. Proceedings of the National Academy of Sciences of the United States of America. 108(21):8698-8703
O'Brien, L.L., Grimaldi, M., Kostun, Z., Wingert, R.A., Selleck, R., and Davidson, A.J. (2011) Wt1a, Foxc1a, and the Notch mediator Rbpj physically interact and regulate the formation of podocytes in zebrafish. Developmental Biology. 358(2):318-30
Palencia-Desai, S., Kohli, V., Kang, J., Chi, N.C., Black, B.L., and Sumanas, S. (2011) Vascular endothelial and endocardial progenitors differentiate as cardiomyocytes in the absence of Etsrp/Etv2 function. Development (Cambridge, England). 138(21):4721-4732
Lee, H.C., Tseng, W.A., Lo, F.Y., Liu, T.M., and Tsai, H.J. (2009) FoxD5 mediates anterior-posterior polarity through upstream modulator Fgf signaling during zebrafish somitogenesis. Developmental Biology. 336(2):232-245
Skarie, J.M., and Link, B.A. (2009) FoxC1 is essential for vascular basement membrane integrity and hyaloid vessel morphogenesis. Investigative ophthalmology & visual science. 50(11):5026-5034
Berry, F.B., Skarie, J.M., Mirzayans, F., Fortin, Y., Hudson, T.J., Raymond, V., Link, B.A., and Walter, M.A. (2008) FOXC1 is required for cell viability and resistance to oxidative stress in the eye through the transcriptional regulation of FOXO1A. Human molecular genetics. 17(4):490-505
Topczewska, J.M., Topczewski, J., Shostak, A., Kume, T., Solnica-Krezel, L., and Hogan, B.L. (2001) The winged helix transcription factor Foxc1a is essential for somitogenesis in zebrafish. Genes & Development. 15(18):2483-2493
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