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ZFIN ID:
ZDB-MRPHLNO-051028-1
CITATIONS
(17 total)
Morpholino Name:
MO1-cxcl12b
Morpholino Symbol:
MO1-cxcl12b
Boldajipour, B., Doitsidou, M., Tarbashevich, K., Laguri, C., Yu, S.R., Ries, J., Dumstrei, K., Thelen, S., Dörries, J., Messerschmidt, E.M., Thelen, M., Schwille, P., Brand, M., Lortat-Jacob, H., and Raz, E. (2011) Cxcl12 evolution - subfunctionalization of a ligand through altered interaction with the chemokine receptor. Development (Cambridge, England). 138(14):2909-2914
Cha, Y.R., Fujita, M., Butler, M., Isogai, S., Kochhan, E., Siekmann, A.F., and Weinstein, B.M. (2012) Chemokine Signaling Directs Trunk Lymphatic Network Formation along the Preexisting Blood Vasculature. Developmental Cell. 22(4):824-836
Chalasani, S.H., Sabol, A., Xu, H., Gyda, M.A., Rasband, K., Granato, M., Chien, C.B., and Raper, J.A. (2007) Stromal cell-derived factor-1 antagonizes slit/robo signaling in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 27(5):973-980
Fujita, M., Cha, Y.R., Pham, V.N., Sakurai, A., Roman, B.L., Gutkind, J.S., and Weinstein, B.M. (2011) Assembly and patterning of the vascular network of the vertebrate hindbrain. Development (Cambridge, England). 138(9):1705-1715
Hollway, G.E., Bryson-Richardson, R.J., Berger, S., Cole, N.J., Hall, T.E., and Currie, P.D. (2007) Whole-somite rotation generates muscle progenitor cell compartments in the developing zebrafish embryo. Developmental Cell. 12(2):207-219
Jiang, D., Jiang, Z., Lu, D., Wang, X., Liang, H., Zhang, J., Meng, Y., Li, Y., Wu, D., Huang, Y., Chen, Y., Deng, H., Wu, Q., Xiong, J., Meng, A., Yu, L. (2019) Migrasomes provide regional cues for organ morphogenesis during zebrafish gastrulation. Nature cell biology. 21:966-977
Knaut, H., Blader, P., Strähle, U., and Schier, A.F. (2005) Assembly of trigeminal sensory Ganglia by chemokine signaling. Neuron. 47(5):653-666
Knaut, H., Werz, C., Geisler, R., The Tübingen 2000 Screen Consortium, Nüsslein-Volhard, C. (2003) A zebrafish homologue of the chemokine receptor Cxcr4 is a germ-cell guidance receptor. Nature. 421(6920):279-282
Lewellis, S.W., Nagelberg, D., Subedi, A., Staton, A., Leblanc, M., Giraldez, A., and Knaut, H. (2013) Precise SDF1-mediated cell guidance is achieved through ligand clearance and microRNA-mediated decay. The Journal of cell biology. 200(3):337-355
Miyasaka, N., Knaut, H., and Yoshihara, Y. (2007) Cxcl12/Cxcr4 chemokine signaling is required for placode assembly and sensory axon pathfinding in the zebrafish olfactory system. Development (Cambridge, England). 134(13):2459-2468
Mizoguchi, T., Verkade, H., Heath, J.K., Kuroiwa, A., and Kikuchi, Y. (2008) Sdf1/Cxcr4 signaling controls the dorsal migration of endodermal cells during zebrafish gastrulation. Development (Cambridge, England). 135(15):2521-2529
Nair, S., and Schilling, T.F. (2008) Chemokine Signaling Controls Endodermal Migration During Zebrafish Gastrulation. Science (New York, N.Y.). 322(5898):89-92
Nguyen, P.D., Hollway, G.E., Sonntag, C., Miles, L.B., Hall, T.E., Berger, S., Fernandez, K.J., Gurevich, D.B., Cole, N.J., Alaei, S., Ramialison, M., Sutherland, R.L., Polo, J.M., Lieschke, G.J., Currie, P.D. (2014) Haematopoietic stem cell induction by somite-derived endothelial cells controlled by meox1. Nature. 512(7514):314-8
Olesnicky Killian, E.C., Birkholz, D.A., and Artinger, K.B. (2009) A role for chemokine signaling in neural crest cell migration and craniofacial development. Developmental Biology. 333(1):161-172
Palevitch, O., Abraham, E., Borodovsky, N., Levkowitz, G., Zohar, Y., and Gothilf, Y. (2010) Cxcl12a-Cxcr4b signaling is important for proper development of the forebrain GnRH system in zebrafish. General and comparative endocrinology. 165(2):262-268
Siekmann, A.F., Standley, C., Fogarty, K.E., Wolfe, S.A., and Lawson, N.D. (2009) Chemokine signaling guides regional patterning of the first embryonic artery. Genes & Development. 23(19):2272-2277
Walters, K.B., Green, J.M., Surfus, J.C., Yoo, S.K., and Huttenlocher, A. (2010) Live imaging of neutrophil motility in a zebrafish model of WHIM syndrome. Blood. 116(15):2803-2811
Jiang, D., Jiang, Z., Lu, D., Wang, X., Liang, H., Zhang, J., Meng, Y., Li, Y., Wu, D., Huang, Y., Chen, Y., Deng, H., Wu, Q., Xiong, J., Meng, A., Yu, L. (2019) Migrasomes provide regional cues for organ morphogenesis during zebrafish gastrulation. Nature cell biology. 21:966-977
Nguyen, P.D., Hollway, G.E., Sonntag, C., Miles, L.B., Hall, T.E., Berger, S., Fernandez, K.J., Gurevich, D.B., Cole, N.J., Alaei, S., Ramialison, M., Sutherland, R.L., Polo, J.M., Lieschke, G.J., Currie, P.D. (2014) Haematopoietic stem cell induction by somite-derived endothelial cells controlled by meox1. Nature. 512(7514):314-8
Lewellis, S.W., Nagelberg, D., Subedi, A., Staton, A., Leblanc, M., Giraldez, A., and Knaut, H. (2013) Precise SDF1-mediated cell guidance is achieved through ligand clearance and microRNA-mediated decay. The Journal of cell biology. 200(3):337-355
Cha, Y.R., Fujita, M., Butler, M., Isogai, S., Kochhan, E., Siekmann, A.F., and Weinstein, B.M. (2012) Chemokine Signaling Directs Trunk Lymphatic Network Formation along the Preexisting Blood Vasculature. Developmental Cell. 22(4):824-836
Boldajipour, B., Doitsidou, M., Tarbashevich, K., Laguri, C., Yu, S.R., Ries, J., Dumstrei, K., Thelen, S., Dörries, J., Messerschmidt, E.M., Thelen, M., Schwille, P., Brand, M., Lortat-Jacob, H., and Raz, E. (2011) Cxcl12 evolution - subfunctionalization of a ligand through altered interaction with the chemokine receptor. Development (Cambridge, England). 138(14):2909-2914
Fujita, M., Cha, Y.R., Pham, V.N., Sakurai, A., Roman, B.L., Gutkind, J.S., and Weinstein, B.M. (2011) Assembly and patterning of the vascular network of the vertebrate hindbrain. Development (Cambridge, England). 138(9):1705-1715
Palevitch, O., Abraham, E., Borodovsky, N., Levkowitz, G., Zohar, Y., and Gothilf, Y. (2010) Cxcl12a-Cxcr4b signaling is important for proper development of the forebrain GnRH system in zebrafish. General and comparative endocrinology. 165(2):262-268
Walters, K.B., Green, J.M., Surfus, J.C., Yoo, S.K., and Huttenlocher, A. (2010) Live imaging of neutrophil motility in a zebrafish model of WHIM syndrome. Blood. 116(15):2803-2811
Olesnicky Killian, E.C., Birkholz, D.A., and Artinger, K.B. (2009) A role for chemokine signaling in neural crest cell migration and craniofacial development. Developmental Biology. 333(1):161-172
Siekmann, A.F., Standley, C., Fogarty, K.E., Wolfe, S.A., and Lawson, N.D. (2009) Chemokine signaling guides regional patterning of the first embryonic artery. Genes & Development. 23(19):2272-2277
Mizoguchi, T., Verkade, H., Heath, J.K., Kuroiwa, A., and Kikuchi, Y. (2008) Sdf1/Cxcr4 signaling controls the dorsal migration of endodermal cells during zebrafish gastrulation. Development (Cambridge, England). 135(15):2521-2529
Nair, S., and Schilling, T.F. (2008) Chemokine Signaling Controls Endodermal Migration During Zebrafish Gastrulation. Science (New York, N.Y.). 322(5898):89-92
Chalasani, S.H., Sabol, A., Xu, H., Gyda, M.A., Rasband, K., Granato, M., Chien, C.B., and Raper, J.A. (2007) Stromal cell-derived factor-1 antagonizes slit/robo signaling in vivo. The Journal of neuroscience : the official journal of the Society for Neuroscience. 27(5):973-980
Hollway, G.E., Bryson-Richardson, R.J., Berger, S., Cole, N.J., Hall, T.E., and Currie, P.D. (2007) Whole-somite rotation generates muscle progenitor cell compartments in the developing zebrafish embryo. Developmental Cell. 12(2):207-219
Miyasaka, N., Knaut, H., and Yoshihara, Y. (2007) Cxcl12/Cxcr4 chemokine signaling is required for placode assembly and sensory axon pathfinding in the zebrafish olfactory system. Development (Cambridge, England). 134(13):2459-2468
Knaut, H., Blader, P., Strähle, U., and Schier, A.F. (2005) Assembly of trigeminal sensory Ganglia by chemokine signaling. Neuron. 47(5):653-666
Knaut, H., Werz, C., Geisler, R., The Tübingen 2000 Screen Consortium, Nüsslein-Volhard, C. (2003) A zebrafish homologue of the chemokine receptor Cxcr4 is a germ-cell guidance receptor. Nature. 421(6920):279-282
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