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Summary Expression Phenotypes Gene Literature (179) GO Terms (9) Nucleotides (399) Proteins (59) Interactants (465) Wiki
XB-GENEPAGE-976954

Papers associated with cat.2



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Catalase activity in the regenerating tail tip of Xenopus larvae and the effect of 3-amino-1,2,4-triazole., von HAHN H., Experientia. October 15, 1959; 15 379-80.


Melatonin content of cat cerebrospinal fluid and blood following intravenous injection of melatonin as measured by Xenopus laevis skin melanophore test., Kovács L, Trentini GP, Mess B., Acta Physiol Acad Sci Hung. January 1, 1975; 46 (1): 33-6.


Subsurface cisterns in the vertebrate retina., Fisher SK, Goldman K., Cell Tissue Res. December 18, 1975; 164 (4): 473-80.


Properties of acetylcholine receptors translated by cat muscle mRNA in Xenopus oocytes., Miledi R, Parker I, Sumikawa K., EMBO J. January 1, 1982; 1 (11): 1307-12.


Development of peroxisomes in amphibians. II. Cytochemical and biochemical studies on the liver, kidney, and pancreas., Dauca M, Calvert R, Ménard D, Hugon JS, Hourdry J., J Exp Zool. September 20, 1982; 223 (1): 57-65.


Corticotropin-releasing factor (CRF)-like immunoreactivity in the vertebrate endocrine pancreas., Petrusz P, Merchenthaler I, Maderdrut JL, Vigh S, Schally AV., Proc Natl Acad Sci U S A. March 1, 1983; 80 (6): 1721-5.


Recording of single gamma-aminobutyrate- and acetylcholine-activated receptor channels translated by exogenous mRNA in Xenopus oocytes., Miledi R, Parker I, Sumikawa K., Proc R Soc Lond B Biol Sci. July 22, 1983; 218 (1213): 481-4.


Voltage-operated channels induced by foreign messenger RNA in Xenopus oocytes., Gundersen CB, Miledi R, Parker I., Proc R Soc Lond B Biol Sci. November 22, 1983; 220 (1218): 131-40.


Replication, integration and expression of exogenous DNA injected into fertilized eggs of Xenopus laevis., Etkin Ld, Pearman B, Roberts M, Bektesh SL., Differentiation. January 1, 1984; 26 (3): 194-202.


MHC homology between various mammalian species at the DNA level: its relevance to MHC evolution., Devilee P, Warnaar JN, Giphart MJ., Exp Clin Immunogenet. January 1, 1984; 1 (2): 90-8.


Corticotropin-releasing factor (CRF)-like immunoreactivity in the gastro-entero-pancreatic endocrine system., Petrusz P, Merchenthaler I, Ordronneau P, Maderdrut JL, Vigh S, Schally AV., Peptides. January 1, 1984; 5 Suppl 1 71-8.


Excitatory amino acid receptors in Xenopus embryo spinal cord and their role in the activation of swimming., Dale N, Roberts A., J Physiol. March 1, 1984; 348 527-43.


The comparative distribution of xenopsin- and neurotensin-like immunoreactivity in Xenopus laevis and rat tissues., Goedert M, Sturmey N, Williams BJ, Emson PC., Dev Biol. August 13, 1984; 308 (2): 273-80.


Construction of a vector, pRSVcatamb38, for the rapid and sensitive assay of amber suppression in human and other mammalian cells., Burke JF, Mogg AE., Nucleic Acids Res. February 25, 1985; 13 (4): 1317-26.


Eye-specific segregation of optic afferents in mammals, fish, and frogs: the role of activity., Schmidt JT, Tieman SB., Cell Mol Neurobiol. June 1, 1985; 5 (1-2): 5-34.


Delineation of transcriptional control signals within the Moloney murine sarcoma virus long terminal repeat., Graves BJ, Eisenman RN, McKnight SL., Mol Cell Biol. August 1, 1985; 5 (8): 1948-58.


The distribution of F-actin in cells isolated from vertebrate retinas., Vaughan DK, Fisher SK., Exp Eye Res. March 1, 1987; 44 (3): 393-406.      


Fixation of the unmethylated or the 5'-CCGG-3' methylated adenovirus late E2A promoter-cat gene construct in the genome of hamster cells: gene expression and stability of methylation patterns., Müller U, Doerfler W., J Virol. December 1, 1987; 61 (12): 3710-20.


The cellular basis for suppressive rod-cone interaction., Frumkes TE, Eysteinsson T., Vis Neurosci. January 1, 1988; 1 (3): 263-73.


Progesterone decreases DNA binding factor activity and the expression in Xenopus oocytes of a cAMP responsive gene from rat liver., Williams JA, Schlichter D, Wicks WD., Second Messengers Phosphoproteins. January 1, 1988; 12 (5-6): 261-70.


The inducible lac operator-repressor system is functional for control of expression of injected DNA in Xenopus oocytes., Hu MC, Davidson N., Gene. January 1, 1988; 62 (2): 301-13.


5'-flanking and 5'-proximal exon regions of the two Xenopus albumin genes. Deletion analysis of constitutive promoter function., Schorpp M, Döbbeling U, Wagner U, Ryffel GU., J Mol Biol. January 5, 1988; 199 (1): 83-93.


Expression of ACh-activated channels and sodium channels by messenger RNAs from innervated and denervated muscle., Parker I, Sumikawa K, Gundersen CB, Miledi R., Proc R Soc Lond B Biol Sci. April 22, 1988; 233 (1272): 235-46.


Reactivation of the methylation-inactivated late E2A promoter of adenovirus type 2 by E1A (13 S) functions., Weisshaar B, Langner KD, Jüttermann R, Müller U, Zock C, Klimkait T, Doerfler W., J Mol Biol. July 20, 1988; 202 (2): 255-70.


Multiple elements are required for expression of an intermediate filament gene., Sax CM, Farrell FX, Tobian JA, Zehner ZE., Nucleic Acids Res. August 25, 1988; 16 (16): 8057-76.


Peroxisomes in pigment epithelium and Müller cells of amphibian retina possess D-amino acid oxidase as well as catalase., Beard ME, Davies T, Holloway M, Holtzman E., Exp Eye Res. December 1, 1988; 47 (6): 795-806.          


Developmental patterns of peroxisomal enzymes in amphibian liver during spontaneous and triiodothyronine-induced metamorphosis., Ciolek E, Vamecq J, Van Hoof F, Dauça M, Bautz A., Comp Biochem Physiol B. January 1, 1989; 93 (2): 477-84.


Change in desensitization of cat muscle acetylcholine receptor caused by coexpression of Torpedo acetylcholine receptor subunits in Xenopus oocytes., Sumikawa K, Miledi R., Proc Natl Acad Sci U S A. January 1, 1989; 86 (1): 367-71.


Morphological characterization of substance P-like immunoreactive amacrine cells in the anuran retina., Hiscock J, Straznicky C., Vision Res. January 1, 1989; 29 (3): 293-301.


Marchi-positive myelinoid bodies at the transition between the central and the peripheral nervous system in some vertebrates., Corneliuson O, Berthold CH, Fabricius C, Gatzinsky K, Carlstedt T., J Anat. April 1, 1989; 163 17-31.


Nuclear factors specifically bind to upstream sequences of a Xenopus laevis ribosomal protein gene promoter., Carnevali F, La Porta C, Ilardi V, Beccari E., Nucleic Acids Res. October 25, 1989; 17 (20): 8171-84.


Receptor interconversion model of hormone action. 3. Estrogen receptor mediated repression of reporter gene activity in A431 cells., Nag A, Park I, Krust A, Smith RG., Biochemistry. March 20, 1990; 29 (11): 2699-702.


A retinoic acid receptor expressed in the early development of Xenopus laevis., Ellinger-Ziegelbauer H, Dreyer C., Genes Dev. January 1, 1991; 5 (1): 94-104.              


Characterization of Xenopus laevis proenkephalin gene., Wong M, Rius RA, Loh YP., Brain Res Mol Brain Res. October 1, 1991; 11 (3-4): 197-205.


Evidence for direct estrogen regulation of the human gonadotropin-releasing hormone gene., Radovick S, Ticknor CM, Nakayama Y, Notides AC, Rahman A, Weintraub BD, Cutler GB, Wondisford FE., J Clin Invest. November 1, 1991; 88 (5): 1649-55.


The limits of the cellular capacity to mediate an estrogen response., Webb P, Lopez GN, Greene GL, Baxter JD, Kushner PJ., Mol Endocrinol. February 1, 1992; 6 (2): 157-67.


Cell adhesion molecules as targets for Hox genes: neural cell adhesion molecule promoter activity is modulated by cotransfection with Hox-2.5 and -2.4., Jones FS, Prediger EA, Bittner DA, De Robertis EM, Edelman GM., Proc Natl Acad Sci U S A. March 15, 1992; 89 (6): 2086-90.


The regulation of translation by the 5' untranslated region of Xenopus c-myc I mRNA during early development., Lazarus P., Oncogene. May 1, 1992; 7 (5): 1037-41.


Desensitization of junctional and extrajunctional nicotinic ACh receptors expressed in Xenopus oocytes., Morales A, Sumikawa K., Brain Res Mol Brain Res. December 1, 1992; 16 (3-4): 323-9.


p120, a novel substrate of protein tyrosine kinase receptors and of p60v-src, is related to cadherin-binding factors beta-catenin, plakoglobin and armadillo., Reynolds AB, Herbert L, Cleveland JL, Berg ST, Gaut JR., Oncogene. December 1, 1992; 7 (12): 2439-45.


Identification of RNA-binding proteins specific to Xenopus Eg maternal mRNAs: association with the portion of Eg2 mRNA that promotes deadenylation in embryos., Legagneux V, Bouvet P, Omilli F, Chevalier S, Osborne HB., Development. December 1, 1992; 116 (4): 1193-202.


Interactions between Xwnt-8 and Spemann organizer signaling pathways generate dorsoventral pattern in the embryonic mesoderm of Xenopus., Christian JL, Moon RT., Genes Dev. January 1, 1993; 7 (1): 13-28.              


Regulation of Xenopus c-myc promoter activity in oocytes and embryos., Modak SP, Principaud E, Spohr G., Oncogene. March 1, 1993; 8 (3): 645-54.


Species and tissue distribution of the regulatory protein of glucokinase., Vandercammen A, Van Schaftingen E., Biochem J. September 1, 1993; 294 ( Pt 2) 551-6.


XASH-3, a novel Xenopus achaete-scute homolog, provides an early marker of planar neural induction and position along the mediolateral axis of the neural plate., Zimmerman K, Shih J, Bars J, Collazo A, Anderson DJ., Development. September 1, 1993; 119 (1): 221-32.                


Distinct elements of the xsna promoter are required for mesodermal and ectodermal expression., Mayor R, Essex LJ, Bennett MF, Sargent MG., Development. November 1, 1993; 119 (3): 661-71.                  


Delayed activation of single mechanosensitive channels in Lymnaea neurons., Small DL, Morris CE., Am J Physiol. August 1, 1994; 267 (2 Pt 1): C598-606.


Constitutive expression of a microinjected glucose-regulated protein (grp78) fusion gene during early Xenopus laevis development., Vezina C, Wooden SK, Lee AS, Heikkila JJ., Differentiation. September 1, 1994; 57 (3): 171-7.


Activation of Xenopus MyoD transcription by members of the MEF2 protein family., Wong MW, Pisegna M, Lu MF, Leibham D, Perry M., Dev Biol. December 1, 1994; 166 (2): 683-95.              


Cloning of the Xenopus laevis cdk2 promoter and functional analysis in oocytes and during early development., Olive M, Thézé N, Philippe M, Le Pennec JP, Lerivray H., Gene. December 30, 1994; 151 (1-2): 81-8.

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