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ZFIN ID:
ZDB-MRPHLNO-051216-6
CITATIONS
(25 total)
Morpholino Name:
MO2-sox32
Morpholino Symbol:
MO2-sox32
Boutillon, A., Escot, S., Elouin, A., Jahn, D., González-Tirado, S., Starruß, J., Brusch, L., David, N.B. (2022) Guidance by followers ensures long-range coordination of cell migration through α-catenin mechanoperception. Developmental Cell. 57(12):1529-1544.e5
Chou, C.W., Hsu, H.C., You, M.S., Lin, J., Liu, Y.W. (2016) The endoderm indirectly influences morphogenetic movements of the zebrafish head kidney through the posterior cardinal vein and VegfC. Scientific Reports. 6:30677
Dickmeis, T., Mourrain, P., Saint-Etienne, L., Fischer, N., Aanstad, P., Clark, M., Strähle, U., and Rosa, F. (2001) A crucial component of the endoderm formation pathway, CASANOVA, is encoded by a novel sox-related gene. Genes & Development. 15(12):1487-1492
Dumortier, J.G., Martin, S., Meyer, D., Rosa, F.M., and David, N.B. (2012) Collective mesendoderm migration relies on an intrinsic directionality signal transmitted through cell contacts. Proceedings of the National Academy of Sciences of the United States of America. 109(42):16945-16950
Dworkin, S., Simkin, J., Darido, C., Partridge, D.D., Georgy, S.R., Caddy, J., Wilanowski, T., Lieschke, G.J., Doggett, K., Heath, J.K., Jane, S.M. (2014) Grainyhead-like 3 regulation of endothelin-1 in the pharyngeal endoderm is critical for growth and development of the craniofacial skeleton. Mechanisms of Development. 133:77-90
Hu, B., Rodriguez, J.J., Kakkerla Balaraju, A., Gao, Y., Nguyen, N.T., Steen, H., Suhaib, S., Chen, S., Lin, F. (2021) Glypican 4 mediates Wnt transport between germ layers via signaling filopodia. The Journal of cell biology. 220(12):
Li, L., Mao, A., Wang, P., Ning, G., Cao, Y., Wang, Q. (2018) Endodermal pouch-expressed
dmrt2b
is important for pharyngeal cartilage formation.. Biology Open. 7(12):
Li, L., Ning, G., Yang, S., Yan, Y., Cao, Y., Wang, Q. (2019) BMP signaling is required for nkx2.3-positive pharyngeal pouch progenitor specification in zebrafish. PLoS Genetics. 15:e1007996
Lou, X., Deshwar, A.R., Crump, J.G., and Scott, I.C. (2011) Smarcd3b and Gata5 promote a cardiac progenitor fate in the zebrafish embryo. Development (Cambridge, England). 138(15):3113-23
Mao, A., Zhang, M., Li, L., Liu, J., Ning, G., Cao, Y., Wang, Q. (2020) Pharyngeal pouches provide a niche microenvironment for arch artery progenitor specification. Development (Cambridge, England). 148(2):
Mao, A., Zhang, M., Liu, J., Cao, Y., Wang, Q. (2019) PDGF signaling from pharyngeal pouches promotes arch artery morphogenesis. Journal of genetics and genomics = Yi chuan xue bao. 46(12):551-559
Mudumana, S.P., Hentschel, D., Liu, Y., Vasilyev, A., and Drummond, I.A. (2008) odd skipped related1 reveals a novel role for endoderm in regulating kidney versus vascular cell fate. Development (Cambridge, England). 135(20):3355-3367
Muto, A., Calof, A.L., Lander, A.D., and Schilling, T.F. (2011) Multifactorial Origins of Heart and Gut Defects in nipbl-Deficient Zebrafish, a Model of Cornelia de Lange Syndrome. PLoS Biology. 9(10):e1001181
Paksa, A., Bandemer, J., Hoeckendorf, B., Razin, N., Tarbashevich, K., Minina, S., Meyen, D., Biundo, A., Leidel, S.A., Peyrieras, N., Gov, N.S., Keller, P.J., Raz, E. (2016) Repulsive cues combined with physical barriers and cell-cell adhesion determine progenitor cell positioning during organogenesis. Nature communications. 7:11288
Pietsch, J., Delalande, J.M., Jakaitis, B., Stensby, J.D., Dohle, S., Talbot, W.S., Raible, D.W., and Shepherd, I.T. (2006) lessen encodes a zebrafish trap100 required for enteric nervous system development. Development (Cambridge, England). 133(3):395-406
Pézeron, G., Mourrain, P., Courty, S., Ghislain, J., Becker, T.S., Rosa, F.M., and David, N.B. (2008) Live analysis of endodermal layer formation identifies random walk as a novel gastrulation movement. Current biology : CB. 18(4):276-281
Reichenbach, B., Delalande, J.M., Kolmogorova, E., Prier, A., Nguyen, T., Smith, C.M., Holzschuh, J., and Shepherd, I.T. (2008) Endoderm-derived Sonic hedgehog and mesoderm Hand2 expression are required for enteric nervous system development in zebrafish. Developmental Biology. 318(1):52-64
Serluca, F.C. (2008) Development of the proepicardial organ in the zebrafish. Developmental Biology. 315(1):18-27
Terashima, A.V., Mudumana, S.P., Drummond, I.A. (2014) Odd skipped related 1 is a negative feedback regulator of Nodal-induced endoderm development. Developmental Dynamics : an official publication of the American Association of Anatomists. 243(12):1571-80
Tomar, R., Mudumana, S.P., Pathak, N., Hukreide, N.A., Drummond, I.A. (2014) osr1 Is Required for Podocyte Development Downstream of wt1a. Journal of the American Society of Nephrology : JASN. 25(11):2539-45
Wang, X., and Yost, H.J. (2008) Initiation and propagation of posterior to anterior (PA) waves in zebrafish left-right development. Developmental Dynamics : an official publication of the American Association of Anatomists. 237(12):3640-3647
Wong, K.S., Rehn, K., Palencia-Desai, S., Kohli, V., Hunter, W., Uhl, J.D., Rost, M.S., and Sumanas, S. (2012) Hedgehog signaling is required for differentiation of endocardial progenitors in zebrafish. Developmental Biology. 361(2):377-91
Xie, H., Ye, D., Sepich, D., Lin, F. (2016) S1pr2/Gα13 signaling regulates the migration of endocardial precursors by controlling endoderm convergence. Developmental Biology. 414:228-43
Ye, D., Xie, H., Hu, B., Lin, F. (2015) Endoderm convergence controls subduction of the myocardial precursors during heart-tube formation. Development (Cambridge, England). 142:2928-40
Yuan, X., Song, M., Devine, P., Bruneau, B.G., Scott, I.C., Wilson, M.D. (2018) Heart enhancers with deeply conserved regulatory activity are established early in zebrafish development. Nature communications. 9:4977
Boutillon, A., Escot, S., Elouin, A., Jahn, D., González-Tirado, S., Starruß, J., Brusch, L., David, N.B. (2022) Guidance by followers ensures long-range coordination of cell migration through α-catenin mechanoperception. Developmental Cell. 57(12):1529-1544.e5
Hu, B., Rodriguez, J.J., Kakkerla Balaraju, A., Gao, Y., Nguyen, N.T., Steen, H., Suhaib, S., Chen, S., Lin, F. (2021) Glypican 4 mediates Wnt transport between germ layers via signaling filopodia. The Journal of cell biology. 220(12):
Mao, A., Zhang, M., Li, L., Liu, J., Ning, G., Cao, Y., Wang, Q. (2020) Pharyngeal pouches provide a niche microenvironment for arch artery progenitor specification. Development (Cambridge, England). 148(2):
Li, L., Ning, G., Yang, S., Yan, Y., Cao, Y., Wang, Q. (2019) BMP signaling is required for nkx2.3-positive pharyngeal pouch progenitor specification in zebrafish. PLoS Genetics. 15:e1007996
Mao, A., Zhang, M., Liu, J., Cao, Y., Wang, Q. (2019) PDGF signaling from pharyngeal pouches promotes arch artery morphogenesis. Journal of genetics and genomics = Yi chuan xue bao. 46(12):551-559
Li, L., Mao, A., Wang, P., Ning, G., Cao, Y., Wang, Q. (2018) Endodermal pouch-expressed
dmrt2b
is important for pharyngeal cartilage formation.. Biology Open. 7(12):
Yuan, X., Song, M., Devine, P., Bruneau, B.G., Scott, I.C., Wilson, M.D. (2018) Heart enhancers with deeply conserved regulatory activity are established early in zebrafish development. Nature communications. 9:4977
Chou, C.W., Hsu, H.C., You, M.S., Lin, J., Liu, Y.W. (2016) The endoderm indirectly influences morphogenetic movements of the zebrafish head kidney through the posterior cardinal vein and VegfC. Scientific Reports. 6:30677
Paksa, A., Bandemer, J., Hoeckendorf, B., Razin, N., Tarbashevich, K., Minina, S., Meyen, D., Biundo, A., Leidel, S.A., Peyrieras, N., Gov, N.S., Keller, P.J., Raz, E. (2016) Repulsive cues combined with physical barriers and cell-cell adhesion determine progenitor cell positioning during organogenesis. Nature communications. 7:11288
Xie, H., Ye, D., Sepich, D., Lin, F. (2016) S1pr2/Gα13 signaling regulates the migration of endocardial precursors by controlling endoderm convergence. Developmental Biology. 414:228-43
Ye, D., Xie, H., Hu, B., Lin, F. (2015) Endoderm convergence controls subduction of the myocardial precursors during heart-tube formation. Development (Cambridge, England). 142:2928-40
Dworkin, S., Simkin, J., Darido, C., Partridge, D.D., Georgy, S.R., Caddy, J., Wilanowski, T., Lieschke, G.J., Doggett, K., Heath, J.K., Jane, S.M. (2014) Grainyhead-like 3 regulation of endothelin-1 in the pharyngeal endoderm is critical for growth and development of the craniofacial skeleton. Mechanisms of Development. 133:77-90
Terashima, A.V., Mudumana, S.P., Drummond, I.A. (2014) Odd skipped related 1 is a negative feedback regulator of Nodal-induced endoderm development. Developmental Dynamics : an official publication of the American Association of Anatomists. 243(12):1571-80
Tomar, R., Mudumana, S.P., Pathak, N., Hukreide, N.A., Drummond, I.A. (2014) osr1 Is Required for Podocyte Development Downstream of wt1a. Journal of the American Society of Nephrology : JASN. 25(11):2539-45
Dumortier, J.G., Martin, S., Meyer, D., Rosa, F.M., and David, N.B. (2012) Collective mesendoderm migration relies on an intrinsic directionality signal transmitted through cell contacts. Proceedings of the National Academy of Sciences of the United States of America. 109(42):16945-16950
Wong, K.S., Rehn, K., Palencia-Desai, S., Kohli, V., Hunter, W., Uhl, J.D., Rost, M.S., and Sumanas, S. (2012) Hedgehog signaling is required for differentiation of endocardial progenitors in zebrafish. Developmental Biology. 361(2):377-91
Lou, X., Deshwar, A.R., Crump, J.G., and Scott, I.C. (2011) Smarcd3b and Gata5 promote a cardiac progenitor fate in the zebrafish embryo. Development (Cambridge, England). 138(15):3113-23
Muto, A., Calof, A.L., Lander, A.D., and Schilling, T.F. (2011) Multifactorial Origins of Heart and Gut Defects in nipbl-Deficient Zebrafish, a Model of Cornelia de Lange Syndrome. PLoS Biology. 9(10):e1001181
Mudumana, S.P., Hentschel, D., Liu, Y., Vasilyev, A., and Drummond, I.A. (2008) odd skipped related1 reveals a novel role for endoderm in regulating kidney versus vascular cell fate. Development (Cambridge, England). 135(20):3355-3367
Pézeron, G., Mourrain, P., Courty, S., Ghislain, J., Becker, T.S., Rosa, F.M., and David, N.B. (2008) Live analysis of endodermal layer formation identifies random walk as a novel gastrulation movement. Current biology : CB. 18(4):276-281
Reichenbach, B., Delalande, J.M., Kolmogorova, E., Prier, A., Nguyen, T., Smith, C.M., Holzschuh, J., and Shepherd, I.T. (2008) Endoderm-derived Sonic hedgehog and mesoderm Hand2 expression are required for enteric nervous system development in zebrafish. Developmental Biology. 318(1):52-64
Serluca, F.C. (2008) Development of the proepicardial organ in the zebrafish. Developmental Biology. 315(1):18-27
Wang, X., and Yost, H.J. (2008) Initiation and propagation of posterior to anterior (PA) waves in zebrafish left-right development. Developmental Dynamics : an official publication of the American Association of Anatomists. 237(12):3640-3647
Pietsch, J., Delalande, J.M., Jakaitis, B., Stensby, J.D., Dohle, S., Talbot, W.S., Raible, D.W., and Shepherd, I.T. (2006) lessen encodes a zebrafish trap100 required for enteric nervous system development. Development (Cambridge, England). 133(3):395-406
Dickmeis, T., Mourrain, P., Saint-Etienne, L., Fischer, N., Aanstad, P., Clark, M., Strähle, U., and Rosa, F. (2001) A crucial component of the endoderm formation pathway, CASANOVA, is encoded by a novel sox-related gene. Genes & Development. 15(12):1487-1492
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