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Summary Anatomy Item Literature (4593) Expression Attributions Wiki
XB-ANAT-123

Papers associated with alimentary system

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Movements of the large intestine in the anuran larvae, Xenopus laevis., Naitoh T., Comp Biochem Physiol C Comp Pharmacol Toxicol. January 1, 1990; 97 (1): 201-7.


Origin and distribution of enteric neurones in Xenopus., Epperlein HH., Anat Embryol (Berl). January 1, 1990; 182 (1): 53-67.


Evidence that Xenopus laevis contains two different nonallelic insulin-like growth factor-I genes., Shuldiner AR., Biochem Biophys Res Commun. January 15, 1990; 166 (1): 223-30.


Dermal glands of Xenopus laevis contain a polypeptide with a highly repetitive amino acid sequence., Gmachl M., FEBS Lett. January 15, 1990; 260 (1): 145-8.


Isolation and characterization of a tyrosyl phosphatase activator from rabbit skeletal muscle and Xenopus laevis oocytes., Cayla X., Biochemistry. January 23, 1990; 29 (3): 658-67.


Tissue specific expression of avian vitellogenin gene is correlated with DNA hypomethylation and in vivo specific protein-DNA interactions., Jost JP., Philos Trans R Soc Lond B Biol Sci. January 30, 1990; 326 (1235): 231-40.


Evolution of insulin-like growth factor I (IGF-I): structure and expression of an IGF-I precursor from Xenopus laevis., Kajimoto Y., Mol Endocrinol. February 1, 1990; 4 (2): 217-26.


Morphogenesis of endoplasmic reticulum in Xenopus oocytes after microinjection of rat liver smooth microsomes., Paiement J., Am J Anat. February 1, 1990; 187 (2): 183-92.


Distribution of integrins and their ligands in the trunk of Xenopus laevis during neural crest cell migration., Krotoski D., J Exp Zool. February 1, 1990; 253 (2): 139-50.


Reconstitution of an insulin signaling pathway in Xenopus laevis oocytes: coexpression of a mammalian insulin receptor and three different mammalian hexose transporters., Vera JC., Mol Cell Biol. February 1, 1990; 10 (2): 743-51.


Gulonolactone oxidase is missing in teleost fish. The direct spectrophotometric assay., Dabrowski K., Biol Chem Hoppe Seyler. March 1, 1990; 371 (3): 207-14.


Exocrine secretion and processing of pro-xenopsin in rat gastric lumen., Ferris CF., Am J Physiol. March 1, 1990; 258 (3 Pt 1): G419-25.


Dissimilar trophic effects of cerulein and xenopsin on the rat pancreas., Feurle GE., Int J Pancreatol. March 1, 1990; 6 (2): 129-37.


Nucleotide sequence and estrogen induction of Xenopus laevis 3-hydroxy-3-methylglutaryl-coenzyme A reductase., Chen HJ., J Biol Chem. March 15, 1990; 265 (8): 4622-9.


Functional expression of Ca2(+)-mobilizing alpha-thrombin receptors in mRNA-injected Xenopus oocytes., Van Obberghen-Schilling E., FEBS Lett. March 26, 1990; 262 (2): 330-4.


Glucose transporters serve as water channels., Fischbarg J., Proc Natl Acad Sci U S A. April 1, 1990; 87 (8): 3244-7.


Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorphosis., Levi G., Development. April 1, 1990; 108 (4): 681-92.                


Regulation of Na+ channels in frog lung epithelium: a target tissue for aldosterone action., Fischer H., Pflugers Arch. April 1, 1990; 416 (1-2): 62-7.


Development and innervation of the abdominal muscle in embryonic Xenopus laevis., Lynch K., Am J Anat. April 1, 1990; 187 (4): 374-92.


Enzymatic and immunological properties of alkaline phosphatase of bullfrog., Goseki M., J Exp Zool. April 1, 1990; 254 (1): 1-5.


RTA, a candidate G protein-coupled receptor: cloning, sequencing, and tissue distribution., Ross PC., Proc Natl Acad Sci U S A. April 1, 1990; 87 (8): 3052-6.


Vaults. II. Ribonucleoprotein structures are highly conserved among higher and lower eukaryotes., Kedersha NL., J Cell Biol. April 1, 1990; 110 (4): 895-901.


Expression of the hepatocyte Na+/bile acid cotransporter in Xenopus laevis oocytes., Hagenbuch B., J Biol Chem. April 5, 1990; 265 (10): 5357-60.


Thyroid hormone regulates type I deiodinase messenger RNA in rat liver., Berry MJ., Mol Endocrinol. May 1, 1990; 4 (5): 743-8.


Endocytosis via coated pits mediated by glycoprotein receptor in which the cytoplasmic tail is replaced by unrelated sequences., Verrey F., Cell Regul. May 1, 1990; 1 (6): 471-86.


Hensen's node, but not other biological signallers, can induce supernumerary digits in the developing chick limb bud., Stocker KM., Rouxs Arch Dev Biol. May 1, 1990; 198 (7): 371-381.


Expression of rat liver canalicular sulfate carrier in Xenopus laevis oocytes., Palacín M., J Biol Chem. May 5, 1990; 265 (13): 7142-4.


An NF1-related vitellogenin activator element mediates transcription from the estrogen-regulated Xenopus laevis vitellogenin promoter., Chang TC., J Biol Chem. May 15, 1990; 265 (14): 8176-82.


The oocyte lamin persists as a single major component of the nuclear lamina during embryonic development of the surf clam., Dessev G., Int J Dev Biol. June 1, 1990; 34 (2): 267-74.


Epithelial K channel expressed in Xenopus oocytes is inactivated by protein kinase C., Sullivan SK., Proc Natl Acad Sci U S A. June 1, 1990; 87 (12): 4553-6.


Selective photochemical treatment of oestrogen receptor in a Xenopus liver extract destroys hormone binding and transcriptional activation but not DNA binding., Cridland NA., EMBO J. June 1, 1990; 9 (6): 1859-66.


High concentrations of estrogen stabilize vitellogenin mRNA against cytoplasmic degradation but physiological concentrations do not., McKenzie EA., Mol Endocrinol. June 1, 1990; 4 (6): 807-11.


Copolymers of glutamic acid and tyrosine are potent inhibitors of oocyte casein kinase II., Tellez R., FEBS Lett. June 4, 1990; 265 (1-2): 113-6.


Active Na+ transport across Xenopus lung alveolar epithelium., Kim KJ., Respir Physiol. July 1, 1990; 81 (1): 29-39.


Developmental and thyroid hormone-dependent regulation of pancreatic genes in Xenopus laevis., Shi YB, Shi YB., Genes Dev. July 1, 1990; 4 (7): 1107-13.                


Identification of Ca2(+)-dependent cell adhesion molecules in Xenopus by the use of interspecies homology., Herzberg F., Differentiation. July 1, 1990; 44 (1): 1-7.          


Changes in lectin-binding pattern in the digestive tract of Xenopus laevis during metamorphosis. II. Small intestine., Ishizuya-Oka A., J Morphol. July 1, 1990; 205 (1): 9-15.


Changes in lectin-binding pattern in the digestive tract of Xenopus laevis during metamorphosis. I. Gastric region., Ishizuya-Oka A., J Morphol. July 1, 1990; 205 (1): 1-8.


Isolation and structures of xenopsin-related peptides from rat stomach, liver and brain., Carraway RE., Regul Pept. July 30, 1990; 29 (2-3): 229-39.


Expression of spasmolysin (FIM-A.1): an integumentary mucin from Xenopus laevis., Hauser F., Exp Cell Res. August 1, 1990; 189 (2): 157-62.


Human facilitative glucose transporters. Isolation, functional characterization, and gene localization of cDNAs encoding an isoform (GLUT5) expressed in small intestine, kidney, muscle, and adipose tissue and an unusual glucose transporter pseudogene-like sequence (GLUT6)., Kayano T., J Biol Chem. August 5, 1990; 265 (22): 13276-82.


Expression of rat liver Na+/L-alanine co-transport in Xenopus laevis oocytes. Effect of glucagon in vivo., Palacin M., Biochem J. August 15, 1990; 270 (1): 189-95.


Expression of the mammalian system A neutral amino acid transporter in Xenopus oocytes., Tarnuzzer RW., J Biol Chem. August 15, 1990; 265 (23): 13914-7.


In vivo N-glycosylation and fate of Asn-X-Ser/Thr tripeptides., Geetha-Habib M., J Biol Chem. August 15, 1990; 265 (23): 13655-60.


Distribution and migration pathways of HNK-1-immunoreactive neural crest cells in teleost fish embryos., Sadaghiani B., Development. September 1, 1990; 110 (1): 197-209.


Primary structure and functional expression of a high voltage activated calcium channel from rabbit lung., Biel M., FEBS Lett. September 3, 1990; 269 (2): 409-12.


Rabbit small intestinal trehalase. Purification, cDNA cloning, expression, and verification of glycosylphosphatidylinositol anchoring., Ruf J., J Biol Chem. September 5, 1990; 265 (25): 15034-9.


Isolation and characterization of cDNA clones for the gamma subunit of Xenopus fibrinogen, the product of a coordinately regulated gene family., Bhattacharya A., Mol Cell Endocrinol. September 10, 1990; 72 (3): 213-20.


Ca2(+)-activated K+ channels from rabbit kidney medullary thick ascending limb cells expressed in Xenopus oocytes., Lu L., J Biol Chem. September 25, 1990; 265 (27): 16190-4.


Estrogen receptor level determines sex-specific in vitro transcription from the Xenopus vitellogenin promoter., Corthésy B., Proc Natl Acad Sci U S A. October 1, 1990; 87 (20): 7878-82.

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