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Summary Anatomy Item Literature (427) Expression Attributions Wiki
XB-ANAT-126

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Expression of the Wnt inhibitor, sFRP5, in the gut endoderm of Xenopus., Pilcher KE., Gene Expr Patterns. December 1, 2002; 2 (3-4): 369-72.  


The gastric biology of Helicobacter pylori., Sachs G., Annu Rev Physiol. January 1, 2003; 65 349-69.


Experimental conversion of liver to pancreas., Horb ME., Curr Biol. January 21, 2003; 13 (2): 105-15.    


Redundant early and overlapping larval roles of Xsox17 subgroup genes in Xenopus endoderm development., Clements D., Mech Dev. March 1, 2003; 120 (3): 337-48.            


Cell-autonomous and signal-dependent expression of liver and intestine marker genes in pluripotent precursor cells from Xenopus embryos., Chen Y, Chen Y., Mech Dev. March 1, 2003; 120 (3): 277-88.                      


Screening for novel pancreatic genes from in vitro-induced pancreas in Xenopus., Sogame A., Dev Growth Differ. April 1, 2003; 45 (2): 143-52.                  


Expression of Nkx2-5-GFP bacterial artificial chromosome transgenic mice closely resembles endogenous Nkx2-5 gene activity., Chi X., Genesis. April 1, 2003; 35 (4): 220-6.


Ca2+-recruitment in tachykinin-induced contractions of gut smooth muscle from African clawed frog, Xenopus laevis and rainbow trout, Oncorhynchus mykiss., Johansson A., Gen Comp Endocrinol. April 1, 2003; 131 (2): 185-91.


Cloning and functional characterization of squid voltage-dependent Ca2+ channel beta subunits: involvement of N-terminal sequences in differential modulation of the current., Kimura T., Neurosci Res. May 1, 2003; 46 (1): 105-17.


A second glutamine synthetase gene with expression in the gills of the gulf toadfish (Opsanus beta)., Walsh PJ., J Exp Biol. May 1, 2003; 206 (Pt 9): 1523-33.


Xenopus X-box binding protein 1, a leucine zipper transcription factor, is involved in the BMP signaling pathway., Zhao H., Dev Biol. May 15, 2003; 257 (2): 278-91.          


Mr 25 000 protein, a substrate for protein serine/threonine kinases, is identified as a part of Xenopus laevis vitellogenin B1., Yoshitome S., Dev Growth Differ. June 1, 2003; 45 (3): 283-94.        


Thyroid hormone-upregulated expression of Musashi-1 is specific for progenitor cells of the adult epithelium during amphibian gastrointestinal remodeling., Ishizuya-Oka A., J Cell Sci. August 1, 2003; 116 (Pt 15): 3157-64.          


Differential expression of two cathepsin Es during metamorphosis-associated remodeling of the larval to adult type epithelium in Xenopus stomach., Ikuzawa M., J Biochem. September 1, 2003; 134 (3): 385-94.


Left-right asymmetric morphogenesis in the Xenopus digestive system., Muller JK., Dev Dyn. December 1, 2003; 228 (4): 672-82.          


Molecular cloning of a putative Ciona intestinalis cionin receptor, a new member of the CCK/gastrin receptor family., Nilsson IB., Gene. December 24, 2003; 323 79-88.


Evolutionarily conserved expression pattern and trans-regulating activity of Xenopus p51/p63., Tomimori Y., Biochem Biophys Res Commun. January 9, 2004; 313 (2): 230-6.            


Novel human, mouse and xenopus genes encoding a member of the RAS superfamily of low-molecular-weight GTP-binding proteins and its downregulation in W/WV mouse jejunum., Daigo Y., J Gastroenterol Hepatol. February 1, 2004; 19 (2): 211-7.


Neurotrophin receptors and enteric neuronal development during metamorphosis in the amphibian Xenopus laevis., Sundqvist M., Cell Tissue Res. April 1, 2004; 316 (1): 45-54.


Expression of vomeronasal receptor genes in Xenopus laevis., Hagino-Yamagishi K., J Comp Neurol. April 26, 2004; 472 (2): 246-56.                      


Spatial and temporal expression pattern of a novel gene in the frog Xenopus laevis: correlations with adult intestinal epithelial differentiation during metamorphosis., Buchholz DR., Gene Expr Patterns. May 1, 2004; 4 (3): 321-8.    


Characterization of receptors for two Xenopus gastrointestinal tachykinin peptides in their species of origin., Johansson A., Naunyn Schmiedebergs Arch Pharmacol. July 1, 2004; 370 (1): 35-45.


An alternative splicing product of the murine trpv1 gene dominant negatively modulates the activity of TRPV1 channels., Wang C., J Biol Chem. September 3, 2004; 279 (36): 37423-30.


cDNA cloning and sequence analysis of Xenopus laevis preproendothelin-1., Quan J., J Cardiovasc Pharmacol. November 1, 2004; 44 Suppl 1 S256-9.


Stomach remodeling-associated changes of H+/K+-ATPase beta subunit expression in Xenopus laevis and H+/K+-ATPase-dependent acid secretion in tadpole stomach., Ikuzawa M., J Exp Zool A Comp Exp Biol. December 1, 2004; 301 (12): 992-1002.


Membrane translocation mechanism of the antimicrobial peptide buforin 2., Kobayashi S., Biochemistry. December 14, 2004; 43 (49): 15610-6.


Developmental expression of Pod 1 in Xenopus laevis., Simrick S., Int J Dev Biol. January 1, 2005; 49 (1): 59-63.        


Expression of CCAAT/enhancer binding protein delta is closely associated with degeneration of surface mucous cells of larval stomach during the metamorphosis of Xenopus laevis., Ikuzawa M., Comp Biochem Physiol B Biochem Mol Biol. March 1, 2005; 140 (3): 505-11.


A novel type of urea transporter, UT-C, is highly expressed in proximal tubule of seawater eel kidney., Mistry AC., Am J Physiol Renal Physiol. March 1, 2005; 288 (3): F455-65.


Remodeling of the intestine during metamorphosis of Xenopus laevis., Schreiber AM., Proc Natl Acad Sci U S A. March 8, 2005; 102 (10): 3720-5.              


Identification of mammalian proline transporter SIT1 (SLC6A20) with characteristics of classical system imino., Takanaga H., J Biol Chem. March 11, 2005; 280 (10): 8974-84.


FXYD3 (Mat-8), a new regulator of Na,K-ATPase., Crambert G., Mol Biol Cell. May 1, 2005; 16 (5): 2363-71.


Evi-1 expression in Xenopus., Mead PE., Gene Expr Patterns. June 1, 2005; 5 (5): 601-8.              


Cloning and functional characterization of a novel connexin expressed in somites of Xenopus laevis., De Boer TP., Dev Dyn. July 1, 2005; 233 (3): 864-71.            


NeuroD1 in the endocrine pancreas: localization and dual function as an activator and repressor., Itkin-Ansari P., Dev Dyn. July 1, 2005; 233 (3): 946-53.


Expression of Panza, an alpha2-macroglobulin, in a restricted dorsal domain of the primitive gut in Xenopus laevis., Pineda-Salgado L., Gene Expr Patterns. December 1, 2005; 6 (1): 3-10.      


Physiology of electrogenic SLC26 paralogues., Romero MF., Novartis Found Symp. January 1, 2006; 273 126-38; discussion 138-47, 261-4.


Widespread tissue distribution and diverse functions of corticotropin-releasing factor and related peptides., Boorse GC., Gen Comp Endocrinol. March 1, 2006; 146 (1): 9-18.      


Expression of Xenopus laevis Lhx2 during eye development and evidence for divergent expression among vertebrates., Viczian AS., Dev Dyn. April 1, 2006; 235 (4): 1133-41.                  


The RNA-binding protein, Vg1RBP, is required for pancreatic fate specification., Spagnoli FM., Dev Biol. April 15, 2006; 292 (2): 442-56.                      


Survivin increased vascular development during Xenopus ontogenesis., Du Pasquier D., Differentiation. June 1, 2006; 74 (5): 244-53.              


Combined ectopic expression of Pdx1 and Ptf1a/p48 results in the stable conversion of posterior endoderm into endocrine and exocrine pancreatic tissue., Afelik S., Genes Dev. June 1, 2006; 20 (11): 1441-6.                        


cDNA cloning and sequence analysis of preproendothelin-1 (PPET-1) from salmon, Oncorhynchus keta., Wang H., Exp Biol Med (Maywood). June 1, 2006; 231 (6): 709-12.


Developmental expression of FoxJ1.2, FoxJ2, and FoxQ1 in Xenopus tropicalis., Choi VM., Gene Expr Patterns. June 1, 2006; 6 (5): 443-7.      


Molecular interactions between dipeptides, drugs and the human intestinal H+ -oligopeptide cotransporter hPEPT1., Sala-Rabanal M., J Physiol. July 1, 2006; 574 (Pt 1): 149-66.


Developmental cell death during Xenopus metamorphosis involves BID cleavage and caspase 2 and 8 activation., Du Pasquier D., Dev Dyn. August 1, 2006; 235 (8): 2083-94.                  


Role for retinoid signaling in left-right asymmetric digestive organ morphogenesis., Lipscomb K., Dev Dyn. August 1, 2006; 235 (8): 2266-75.    


Cholesterol homeostasis in development: the role of Xenopus 7-dehydrocholesterol reductase (Xdhcr7) in neural development., Tadjuidje E., Dev Dyn. August 1, 2006; 235 (8): 2095-110.                          


Identification of IgF, a hinge-region-containing Ig class, and IgD in Xenopus tropicalis., Zhao Y., Proc Natl Acad Sci U S A. August 8, 2006; 103 (32): 12087-92.                                  


Target soluble N-ethylmaleimide-sensitive factor attachment protein receptors (t-SNAREs) differently regulate activation and inactivation gating of Kv2.2 and Kv2.1: Implications on pancreatic islet cell Kv channels., Wolf-Goldberg T., Mol Pharmacol. September 1, 2006; 70 (3): 818-28.

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