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Summary Anatomy Item Literature (3923) Expression Attributions Wiki
XB-ANAT-50

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Axial protocadherin is a mediator of prenotochord cell sorting in Xenopus., Kuroda H., Dev Biol. April 15, 2002; 244 (2): 267-77.  


Cardiac-specific activity of an Nkx2-5 enhancer requires an evolutionarily conserved Smad binding site., Lien CL., Dev Biol. April 15, 2002; 244 (2): 257-66.


Nkx-2.5 gene induction in mice is mediated by a Smad consensus regulatory region., Liberatore CM., Dev Biol. April 15, 2002; 244 (2): 243-56.


Antimorphic PV.1 causes secondary axis by inducing ectopic organizer., Hwang YS., Biochem Biophys Res Commun. April 12, 2002; 292 (4): 1081-6.        


Antisense inhibition of Xbrachyury impairs mesoderm formation in Xenopus embryos., Giovannini N., Dev Growth Differ. April 1, 2002; 44 (2): 147-59.            


Regulation of avian cardiogenesis by Fgf8 signaling., Alsan BH., Development. April 1, 2002; 129 (8): 1935-43.


Belief vs. scientific observation: the curious story of the precardiac mesoderm., Eisenberg LM., Anat Rec. April 1, 2002; 266 (4): 194-7.


Xenopus marginal coil (Xmc), a novel FGF inducible cytosolic coiled-coil protein regulating gastrulation movements., Frazzetto G., Mech Dev. April 1, 2002; 113 (1): 3-14.            


Inhibition of BMP activity by the FGF signal promotes posterior neural development in zebrafish., Koshida S., Dev Biol. April 1, 2002; 244 (1): 9-20.


Endogenous patterns of BMP signaling during early chick development., Faure S., Dev Biol. April 1, 2002; 244 (1): 44-65.


Adsorption and release properties of growth factors from biodegradable implants., Ziegler J., J Biomed Mater Res. March 5, 2002; 59 (3): 422-8.


eFGF is required for activation of XmyoD expression in the myogenic cell lineage of Xenopus laevis., Fisher ME, Fisher ME., Development. March 1, 2002; 129 (6): 1307-15.    


Repairing a torn cell surface: make way, lysosomes to the rescue., McNeil PL., J Cell Sci. March 1, 2002; 115 (Pt 5): 873-9.


The planar polarity gene strabismus regulates convergent extension movements in Xenopus., Darken RS., EMBO J. March 1, 2002; 21 (5): 976-85.


Overexpression of the secreted factor Mig30 expressed in the Spemann organizer impairs morphogenetic movements during Xenopus gastrulation., Hayata T., Mech Dev. March 1, 2002; 112 (1-2): 37-51.                


Docking protein SNT1 is a critical mediator of fibroblast growth factor signaling during Xenopus embryonic development., Akagi K., Dev Dyn. March 1, 2002; 223 (2): 216-28.                  


Hyaluronan is an abundant constituent of the extracellular matrix of Xenopus embryos., Müllegger J., Mol Reprod Dev. March 1, 2002; 61 (3): 312-6.


Brachyury proteins regulate target genes through modular binding sites in a cooperative fashion., Kusch T., Genes Dev. February 15, 2002; 16 (4): 518-29.


Dorsalization of the neural tube by Xenopus tiarin, a novel patterning factor secreted by the flanking nonneural head ectoderm., Tsuda H., Neuron. February 14, 2002; 33 (4): 515-28.


Hedgehog signaling in gastrointestinal development and disease., Harmon EB., Curr Mol Med. February 1, 2002; 2 (1): 67-82.


Developmental expression of cardiac myosin-binding protein C in Xenopus., Duan LJ., Dev Genes Evol. February 1, 2002; 212 (1): 47-9.


Role of the thrombopoietin (TPO)/Mpl system: c-Mpl-like molecule/TPO signaling enhances early hematopoiesis in Xenopus laevis., Kakeda M., Dev Growth Differ. February 1, 2002; 44 (1): 63-75.                


Xenopus Brachyury regulates mesodermal expression of Zic3, a gene controlling left-right asymmetry., Kitaguchi T., Dev Growth Differ. February 1, 2002; 44 (1): 55-61.        


Possible role of the 38 kDa protein, lacking in the gastrula-arrested Xenopus mutant, in gastrulation., Tanaka TS., Dev Growth Differ. February 1, 2002; 44 (1): 23-33.              


Intrinsic differences between the superficial and deep layers of the Xenopus ectoderm control primary neuronal differentiation., Chalmers AD., Dev Cell. February 1, 2002; 2 (2): 171-82.    


Endoderm is required for vascular endothelial tube formation, but not for angioblast specification., Vokes SA., Development. February 1, 2002; 129 (3): 775-85.            


Temporal and spatial expression patterns of FoxD2 during the early development of Xenopus laevis., Pohl BS., Mech Dev. February 1, 2002; 111 (1-2): 181-4.              


Dynamic regulation of Brachyury expression in the amphibian embryo by XSIP1., Papin C., Mech Dev. February 1, 2002; 111 (1-2): 37-46.  


Degradation of hyaluronan by a Hyal2-type hyaluronidase affects pattern formation of vitelline vessels during embryogenesis of Xenopus laevis., Müllegger J., Mech Dev. February 1, 2002; 111 (1-2): 25-35.    


Identification of Sef, a novel modulator of FGF signalling., Tsang M., Nat Cell Biol. February 1, 2002; 4 (2): 165-9.


Modulation of substrate adhesion dynamics via microtubule targeting requires kinesin-1., Krylyshkina O., J Cell Biol. January 21, 2002; 156 (2): 349-59.                    


Extracellular signals, cell interactions and transcription factors involved in the induction of the neural crest cells., Aybar MJ., Biol Res. January 1, 2002; 35 (2): 267-75.


BMP-2, BMP-4, and PDGF-bb stimulate chemotactic migration of primary human mesenchymal progenitor cells., Fiedler J., J Cell Biochem. January 1, 2002; 87 (3): 305-12.


Signals that instruct somite and myotome formation persist in Xenopus laevis early tailbud stage embryos., Dali L., Cells Tissues Organs. January 1, 2002; 172 (1): 1-12.


Role of BMP-4 in the inducing ability of the head organizer in Xenopus laevis., Sedohara A., Zoolog Sci. January 1, 2002; 19 (1): 67-80.


Neural inhibition by c-Jun as a synergizing factor in bone morphogenetic protein 4 signaling., Peng Y., Neuroscience. January 1, 2002; 109 (4): 657-64.


Notch signaling is involved in the regulation of Id3 gene transcription during Xenopus embryogenesis., Reynaud-Deonauth S., Differentiation. January 1, 2002; 69 (4-5): 198-208.            


The transcription factor Sox9 is required for cranial neural crest development in Xenopus., Spokony RF., Development. January 1, 2002; 129 (2): 421-32.        


Cloning and expression of the Cdx family from the frog Xenopus tropicalis., Reece-Hoyes JS., Dev Dyn. January 1, 2002; 223 (1): 134-40.      


Beta-catenin, MAPK and Smad signaling during early Xenopus development., Schohl A., Development. January 1, 2002; 129 (1): 37-52.                                                                                                      


Ectodermal syndecan-2 mediates left-right axis formation in migrating mesoderm as a cell-nonautonomous Vg1 cofactor., Kramer KL., Dev Cell. January 1, 2002; 2 (1): 115-24.  


XNAP, a conserved ankyrin repeat-containing protein with a role in the Notch pathway during Xenopus primary neurogenesis., Lahaye K., Mech Dev. January 1, 2002; 110 (1-2): 113-24.      


Efficient Cre-mediated deletion in cardiac progenitor cells conferred by a 3'UTR-ires-Cre allele of the homeobox gene Nkx2-5., Stanley EG., Int J Dev Biol. January 1, 2002; 46 (4): 431-9.


Wnt/Frizzled activation of Rho regulates vertebrate gastrulation and requires a novel Formin homology protein Daam1., Habas R., Cell. December 28, 2001; 107 (7): 843-54.  


Vertebrate hairy and Enhancer of split related proteins: transcriptional repressors regulating cellular differentiation and embryonic patterning., Davis RL., Oncogene. December 20, 2001; 20 (58): 8342-57.


Dorsoventral differences in cell-cell interactions modulate the motile behaviour of cells from the Xenopus gastrula., Reintsch WE., Dev Biol. December 15, 2001; 240 (2): 387-403.                      


The secreted glycoprotein Noelin-1 promotes neurogenesis in Xenopus., Moreno TA., Dev Biol. December 15, 2001; 240 (2): 340-60.                  


Xerl, a novel CNS-specific secretory protein, establishes the boundary between neural plate and neural crest., Kuriyama S., Int J Dev Biol. December 1, 2001; 45 (8): 845-52.            


otx2 expression in the ectoderm activates anterior neural determination and is required for Xenopus cement gland formation., Gammill LS., Dev Biol. December 1, 2001; 240 (1): 223-36.              


MAP kinase converts MyoD into an instructive muscle differentiation factor in Xenopus., Zetser A., Dev Biol. December 1, 2001; 240 (1): 168-81.                

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