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Summary Expression Phenotypes Gene Literature (67) GO Terms (20) Nucleotides (246) Proteins (34) Interactants (642) Wiki
XB-GENEPAGE-6456076

Papers associated with aplnr



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referenced by:


Microarray-based identification of VegT targets in Xenopus., Taverner NV, Kofron M, Kofron M, Shin Y, Kabitschke C, Gilchrist MJ, Wylie C, Cho KW, Heasman J, Smith JC., Mech Dev. March 1, 2005; 122 (3): 333-54.                                          


Patterning and tissue movements in a novel explant preparation of the marginal zone of Xenopus laevis., Davidson LA, Keller R, DeSimone D., Gene Expr Patterns. July 1, 2004; 4 (4): 457-66.        


Embryonic expression of Xenopus laevis SOX7., Fawcett SR, Klymkowsky MW., Gene Expr Patterns. January 1, 2004; 4 (1): 29-33.          


Adult and embryonic blood and endothelium derive from distinct precursor populations which are differentially programmed by BMP in Xenopus., Walmsley M, Ciau-Uitz A, Patient R., Development. December 1, 2002; 129 (24): 5683-95.          


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


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


The receptor tyrosine kinase EphB4 and ephrin-B ligands restrict angiogenic growth of embryonic veins in Xenopus laevis., Helbling PM, Saulnier DM, Brändli AW., Development. January 1, 2000; 127 (2): 269-78.              


Xl erg: expression pattern and overexpression during development plead for a role in endothelial cell differentiation., Baltzinger M, Mager-Heckel AM, Remy P., Dev Dyn. December 1, 1999; 216 (4-5): 420-33.


Amino acid sequence and embryonic expression of msr/apj, the mouse homolog of Xenopus X-msr and human APJ., Devic E, Rizzoti K, Bodin S, Knibiehler B, Audigier Y., Mech Dev. June 1, 1999; 84 (1-2): 199-203.


Elucidating the origins of the vascular system: a fate map of the vascular endothelial and red blood cell lineages in Xenopus laevis., Mills KR, Kruep D, Saha MS., Dev Biol. May 15, 1999; 209 (2): 352-68.                


[Expression of a new family of receptors similar to CXC chemokine receptors in endothelial cell precursors]., Devic E, Rizzoti K, Bodin S, Paquereau L, Knibiehler B, Audigier Y., Pathol Biol (Paris). April 1, 1999; 47 (4): 330-8.


Towards a molecular anatomy of the Xenopus pronephric kidney., Brändli AW., Int J Dev Biol. January 1, 1999; 43 (5): 381-95.                      


VEGF mediates angioblast migration during development of the dorsal aorta in Xenopus., Cleaver O, Krieg PA., Development. October 1, 1998; 125 (19): 3905-14.          


Neovascularization of the Xenopus embryo., Cleaver O, Tonissen KF, Saha MS, Krieg PA., Dev Dyn. September 1, 1997; 210 (1): 66-77.        


Retinoic acid can block differentiation of the myocardium after heart specification., Drysdale TA, Patterson KD, Saha M, Krieg PA., Dev Biol. August 15, 1997; 188 (2): 205-15.          


Expression of a new G protein-coupled receptor X-msr is associated with an endothelial lineage in Xenopus laevis., Devic E, Paquereau L, Vernier P, Knibiehler B, Audigier Y., Mech Dev. October 1, 1996; 59 (2): 129-40.        

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