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ZFIN ID:
ZDB-MRPHLNO-050308-1
CITATIONS
(12 total)
Morpholino Name:
MO1-ptch2
Morpholino Symbol:
MO1-ptch2
Beales, P.L., Bland, E., Tobin, J.L., Bacchelli, C., Tuysuz, B., Hill, J., Rix, S., Pearson, C.G., Kai, M., Hartley, J., Johnson, C., Irving, M., Elcioglu, N., Winey, M., Tada, M., and Scambler, P.J. (2007) IFT80, which encodes a conserved intraflagellar transport protein, is mutated in Jeune asphyxiating thoracic dystrophy. Nature Genetics. 39(6):727-729
Cerda, G.A., Thomas, J.E., Allende, M.L., Karlstrom, R.O., and Palma, V. (2006) Electroporation of DNA, RNA, and morpholinos into zebrafish embryos. Methods (San Diego, Calif.). 39(3):207-211
Hong, S., Hu, P., Jang, J.H., Carrington, B., Sood, R., Berger, S.I., Roessler, E., Muenke, M. (2020) Functional analysis of Sonic Hedgehog variants associated with holoprosencephaly in humans using a CRISPR/Cas9 zebrafish model. Human Mutation. 41(12):2155-2166
Lee, J., Willer, J.R., Willer, G.B., Smith, K., Gregg, R.G., and Gross, J.M. (2008) Zebrafish blowout provides genetic evidence for Patched1-mediated negative regulation of Hedgehog signaling within the proximal optic vesicle of the vertebrate eye. Developmental Biology. 319(1):10-22
Nagai-Tanima, M., Hong, S., Hu, P., Carrington, B., Sood, R., Roessler, E., Muenke, M. (2020) Rare hypomorphic human variation in the heptahelical domain of SMO contributes to holoprosencephaly phenotypes. Human Mutation. 41(12):2105-2118
Ochi, H., Pearson, B.J., Chuang, P.T., Hammerschmidt, M., and Westerfield, M. (2006) Hhip regulates zebrafish muscle development by both sequestering Hedgehog and modulating localization of Smoothened. Developmental Biology. 297(1):127-140
Pan, C., Xiong, Y., Lv, X., Xia, Y., Zhang, S., Chen, H., Fan, J., Wu, W., Liu, F., Wu, H., Zhou, Z., Zhang, L., Zhao, Y. (2017) UbcD1 regulates Hedgehog signaling by directly modulating Ci ubiquitination and processing. EMBO reports. 18:1922-1934
Stückemann, T., Wegleiter, T., Stefan, E., Nägele, O., Tarbashevich, K., Böck, G., Raz, E., and Aanstad, P. (2012) Zebrafish Cxcr4a determines the proliferative response to Hedgehog signalling. Development (Cambridge, England). 139(15):2711-2720
Wilson, C.W., Nguyen, C.T., Chen, M.H., Yang, J.H., Gacayan, R., Huang, J., Chen, J.N., and Chuang, P.T. (2009) Fused has evolved divergent roles in vertebrate Hedgehog signalling and motile ciliogenesis. Nature. 459(7243):98-102
Wolff, C., Roy, S., and Ingham, P.W. (2003) Multiple muscle cell identities induced by distinct levels and timing of hedgehog activity in the zebrafish embryo. Current biology : CB. 13(14):1169-1181
Woods, I.G., and Talbot, W.S. (2005) The you Gene Encodes an EGF-CUB Protein Essential for Hedgehog Signaling in Zebrafish. PLoS Biology. 3(3):e66
Zhang, Z., Feng, J., Pan, C., Lv, X., Wu, W., Zhou, Z., Liu, F., Zhang, L., and Zhao, Y. (2013) Atrophin-Rpd3 complex represses Hedgehog signaling by acting as a corepressor of CiR. The Journal of cell biology. 203(4):575-583
Hong, S., Hu, P., Jang, J.H., Carrington, B., Sood, R., Berger, S.I., Roessler, E., Muenke, M. (2020) Functional analysis of Sonic Hedgehog variants associated with holoprosencephaly in humans using a CRISPR/Cas9 zebrafish model. Human Mutation. 41(12):2155-2166
Nagai-Tanima, M., Hong, S., Hu, P., Carrington, B., Sood, R., Roessler, E., Muenke, M. (2020) Rare hypomorphic human variation in the heptahelical domain of SMO contributes to holoprosencephaly phenotypes. Human Mutation. 41(12):2105-2118
Pan, C., Xiong, Y., Lv, X., Xia, Y., Zhang, S., Chen, H., Fan, J., Wu, W., Liu, F., Wu, H., Zhou, Z., Zhang, L., Zhao, Y. (2017) UbcD1 regulates Hedgehog signaling by directly modulating Ci ubiquitination and processing. EMBO reports. 18:1922-1934
Zhang, Z., Feng, J., Pan, C., Lv, X., Wu, W., Zhou, Z., Liu, F., Zhang, L., and Zhao, Y. (2013) Atrophin-Rpd3 complex represses Hedgehog signaling by acting as a corepressor of CiR. The Journal of cell biology. 203(4):575-583
Stückemann, T., Wegleiter, T., Stefan, E., Nägele, O., Tarbashevich, K., Böck, G., Raz, E., and Aanstad, P. (2012) Zebrafish Cxcr4a determines the proliferative response to Hedgehog signalling. Development (Cambridge, England). 139(15):2711-2720
Wilson, C.W., Nguyen, C.T., Chen, M.H., Yang, J.H., Gacayan, R., Huang, J., Chen, J.N., and Chuang, P.T. (2009) Fused has evolved divergent roles in vertebrate Hedgehog signalling and motile ciliogenesis. Nature. 459(7243):98-102
Lee, J., Willer, J.R., Willer, G.B., Smith, K., Gregg, R.G., and Gross, J.M. (2008) Zebrafish blowout provides genetic evidence for Patched1-mediated negative regulation of Hedgehog signaling within the proximal optic vesicle of the vertebrate eye. Developmental Biology. 319(1):10-22
Beales, P.L., Bland, E., Tobin, J.L., Bacchelli, C., Tuysuz, B., Hill, J., Rix, S., Pearson, C.G., Kai, M., Hartley, J., Johnson, C., Irving, M., Elcioglu, N., Winey, M., Tada, M., and Scambler, P.J. (2007) IFT80, which encodes a conserved intraflagellar transport protein, is mutated in Jeune asphyxiating thoracic dystrophy. Nature Genetics. 39(6):727-729
Cerda, G.A., Thomas, J.E., Allende, M.L., Karlstrom, R.O., and Palma, V. (2006) Electroporation of DNA, RNA, and morpholinos into zebrafish embryos. Methods (San Diego, Calif.). 39(3):207-211
Ochi, H., Pearson, B.J., Chuang, P.T., Hammerschmidt, M., and Westerfield, M. (2006) Hhip regulates zebrafish muscle development by both sequestering Hedgehog and modulating localization of Smoothened. Developmental Biology. 297(1):127-140
Woods, I.G., and Talbot, W.S. (2005) The you Gene Encodes an EGF-CUB Protein Essential for Hedgehog Signaling in Zebrafish. PLoS Biology. 3(3):e66
Wolff, C., Roy, S., and Ingham, P.W. (2003) Multiple muscle cell identities induced by distinct levels and timing of hedgehog activity in the zebrafish embryo. Current biology : CB. 13(14):1169-1181
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