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Summary Anatomy Item Literature (2386) Expression Attributions Wiki
XB-ANAT-509

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Cell-free assembly of rough and smooth endoplasmic reticulum., Lavoie C., J Cell Sci. June 1, 1996; 109 ( Pt 6) 1415-25.


Review article: new insights into the mechanisms of hepatic transport and bile secretion., Erlinger S., J Gastroenterol Hepatol. June 1, 1996; 11 (6): 575-9.


Demonstration and characterization of dipeptide transport system activity in sheep omasal epithelium by expression of mRNA in Xenopus laevis oocytes., Matthews JC., J Anim Sci. July 1, 1996; 74 (7): 1720-7.


Differentiation-associated antimicrobial functions in human colon adenocarcinoma cell lines., Bernet-Camard MF., Exp Cell Res. July 10, 1996; 226 (1): 80-9.


Cloning and expression of Xenopus HGF-like protein (HLP) and Ron/HLP receptor implicate their involvement in early neural development., Nakamura T., Biochem Biophys Res Commun. July 16, 1996; 224 (2): 564-73.          


Sensitivity of a renal K+ channel (ROMK2) to the inhibitory sulfonylurea compound glibenclamide is enhanced by coexpression with the ATP-binding cassette transporter cystic fibrosis transmembrane regulator., McNicholas CM., Proc Natl Acad Sci U S A. July 23, 1996; 93 (15): 8083-8.


Specificity of glossopharyngeal nerve responses to astringent compounds in Xenopus., Yamashita S., Chem Senses. August 1, 1996; 21 (4): 459-65.


Xenopus connexin38 forms hemi-gap-junctional channels in the nonjunctional plasma membrane of Xenopus oocytes., Ebihara L., Biophys J. August 1, 1996; 71 (2): 742-8.


Integrin alpha 6 expression is required for early nervous system development in Xenopus laevis., Lallier TE., Development. August 1, 1996; 122 (8): 2539-54.                                  


Transport of the antiviral nucleoside analogs 3'-azido-3'-deoxythymidine and 2',3'-dideoxycytidine by a recombinant nucleoside transporter (rCNT) expressed in Xenopus laevis oocytes., Yao SY., Mol Pharmacol. August 1, 1996; 50 (2): 388-93.


Dissociation of protamine-DNA complexes by Xenopus nucleoplasmin and minichromosome assembly in vitro., Ruiz-Lara SA., Eur J Biochem. August 15, 1996; 240 (1): 186-94.


Glutamate release by the intact light-responsive photoreceptor layer of the Xenopus retina., Schmitz Y., J Neurosci Methods. September 1, 1996; 68 (1): 55-60.


Cellular localization and regulation of CHIF in kidney and colon., Capurro C., Am J Physiol. September 1, 1996; 271 (3 Pt 1): C753-62.


Vascular regression during amphibian metamorphosis--a scanning electron microscope study of vascular corrosion casts of the ventral velum in tadpoles of Xenopus laevis Daudin., Aichhorn H., Scanning. September 1, 1996; 18 (6): 447-55.


Proteolytic disruption of laminin-integrin complexes on muscle cells during synapse formation., Anderson MJ., Mol Cell Biol. September 1, 1996; 16 (9): 4972-84.


Nicotinic acid transport mediated by pH-dependent anion antiporter and proton cotransporter in rabbit intestinal brush-border membrane., Takanaga H., J Pharm Pharmacol. October 1, 1996; 48 (10): 1073-7.


Identification of a novel, sodium-dependent, reduced glutathione transporter in the rat lens epithelium., Kannan R., Invest Ophthalmol Vis Sci. October 1, 1996; 37 (11): 2269-75.


Hepatocyte nuclear factor 4 (HNF4) binding sites in the salmon HNF1 promoter., Deryckere F., Gene. October 10, 1996; 175 (1-2): 35-41.


The cellular patterns of BDNF and trkB expression suggest multiple roles for BDNF during Xenopus visual system development., Cohen-Cory S., Dev Biol. October 10, 1996; 179 (1): 102-15.              


Genesis of the frog retinal pigment epithelium., Beazley LD., Brain Res Dev Brain Res. October 23, 1996; 96 (1-2): 290-4.


Molecular cloning of the Xenopus c-met/hepatocyte growth factor receptor and its regional expression during early development., Aoki S., J Biochem. November 1, 1996; 120 (5): 961-8.


cDNA cloning of a functional water channel from toad urinary bladder epithelium., Ma T., Am J Physiol. November 1, 1996; 271 (5 Pt 1): C1699-704.


Expression of type XII collagen by wound epithelial, mesenchymal, and ependymal cells during blastema formation in regenerating newt (Notophthalmus viridescens) tails., Wei Y., J Morphol. November 1, 1996; 230 (2): 177-86.


A novel antigen is shared by retinal pigment epithelium and pigmented neural crest., Clare E., Dev Genes Evol. November 1, 1996; 206 (3): 195-206.


Combinatorial signalling by Xwnt-11 and Xnr3 in the organizer epithelium., Glinka A., Mech Dev. December 1, 1996; 60 (2): 221-31.          


Involvement of Livertine, a hepatocyte growth factor family member, in neural morphogenesis., Ruiz i Altaba A., Mech Dev. December 1, 1996; 60 (2): 207-20.          


Is Xenopus IgX an analog of IgA?, Mussmann R., Eur J Immunol. December 1, 1996; 26 (12): 2823-30.


Apoptosis and cell proliferation in the Xenopus small intestine during metamorphosis., Ishizuya-Oka A., Cell Tissue Res. December 1, 1996; 286 (3): 467-76.


Bulbar representation of the 'water-nose' during Xenopus ontogeny., Meyer DL., Neurosci Lett. December 13, 1996; 220 (2): 109-12.


Cell surface expression of the epithelial Na channel and a mutant causing Liddle syndrome: a quantitative approach., Firsov D., Proc Natl Acad Sci U S A. December 24, 1996; 93 (26): 15370-5.


Autoactivation of Xenopus Thyroid Hormone Receptor beta Genes Correlates with Larval Epithelial Apoptosis and Adult Cell Proliferation., Shi YB., J Biomed Sci. January 1, 1997; 4 (1): 9-18.


Spatially distinct domains of cell behavior in the zebrafish organizer region., D'Amico LA., Biochem Cell Biol. January 1, 1997; 75 (5): 563-77.


Temporal and spatial regulation of a putative transcriptional repressor implicates it as playing a role in thyroid hormone-dependent organ transformation., Ishizuya-Oka A., Dev Genet. January 1, 1997; 20 (4): 329-37.            


Temporal and spatial expression of an intestinal Na+/PO4 3- cotransporter correlates with epithelial transformation during thyroid hormone-dependent frog metamorphosis., Ishizuya-Oka A., Dev Genet. January 1, 1997; 20 (1): 53-66.                


Evidence for beta 1-integrins on both apical and basal surfaces of Xenopus retinal pigment epithelium., Chen W., Exp Eye Res. January 1, 1997; 64 (1): 73-84.              


Xrx1, a novel Xenopus homeobox gene expressed during eye and pineal gland development., Casarosa S., Mech Dev. January 1, 1997; 61 (1-2): 187-98.          


The C-terminal domain of Mad-like signal transducers is sufficient for biological activity in the Xenopus embryo and transcriptional activation., Meersseman G., Mech Dev. January 1, 1997; 61 (1-2): 127-40.    


Xenopus Pax-6 and retinal development., Hirsch N., J Neurobiol. January 1, 1997; 32 (1): 45-61.            


Expression of the cystic fibrosis phenotype in a renal amphibian epithelial cell line., Ling BN., J Biol Chem. January 3, 1997; 272 (1): 594-600.


Inhibition of epithelial Na+ currents by intracellular domains of the cystic fibrosis transmembrane conductance regulator., Kunzelmann K., FEBS Lett. January 6, 1997; 400 (3): 341-4.


A synthetic peptide corresponding to the extracellular domain of occludin perturbs the tight junction permeability barrier., Wong V., J Cell Biol. January 27, 1997; 136 (2): 399-409.            


Isolation and characterization of a cDNA encoding a Xenopus immunoglobulin binding protein, BiP (grp78)., Miskovic D., Comp Biochem Physiol B Biochem Mol Biol. February 1, 1997; 116 (2): 227-34.


Molecular cloning and functional expression of cDNAs encoding a human Na+-nucleoside cotransporter (hCNT1)., Ritzel MW., Am J Physiol. February 1, 1997; 272 (2 Pt 1): C707-14.


Neural induction and patterning in embryos deficient in FGF signaling., Godsave SF., Int J Dev Biol. February 1, 1997; 41 (1): 57-65.        


Molecular cloning of Xenopus hatching enzyme and its specific expression in hatching gland cells., Katagiri C., Int J Dev Biol. February 1, 1997; 41 (1): 19-25.            


A single morphogenetic field gives rise to two retina primordia under the influence of the prechordal plate., Li H., Development. February 1, 1997; 124 (3): 603-15.                  


Microtubule disruption reveals that Spemann's organizer is subdivided into two domains by the vegetal alignment zone., Lane MC., Development. February 1, 1997; 124 (4): 895-906.                


HNF4beta, a new gene of the HNF4 family with distinct activation and expression profiles in oogenesis and embryogenesis of Xenopus laevis., Holewa B., Mol Cell Biol. February 1, 1997; 17 (2): 687-94.


A member of the Met/HGF-receptor family is expressed in a BMP-4-like pattern in the ectoderm of Xenopus gastrulae., Aberger F., Biochem Biophys Res Commun. February 3, 1997; 231 (1): 191-5.      


A set of novel tadpole specific genes expressed only in the epidermis are down-regulated by thyroid hormone during Xenopus laevis metamorphosis., Furlow JD., Dev Biol. February 15, 1997; 182 (2): 284-98.                        

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