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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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A tight control over Wnt action., Molenaar M, Destrée O., Int J Dev Biol. January 1, 1999; 43 (7): 675-80.    


[The effect of hyperbaric oxygenation on the antioxidant status of Xenopus laevis after its preliminary adaptation to oxygen]., Gus'kov EP, Miliutina NP, Timofeeva IV, Shkurat TP., Ontogenez. January 1, 1999; 30 (2): 91-6.


Independent and exclusive modulation of cardiac delayed rectifying K+ current by protein kinase C and protein kinase A., Lo CF, Numann R., Circ Res. November 16, 1998; 83 (10): 995-1002.


Opl: a zinc finger protein that regulates neural determination and patterning in Xenopus., Kuo JS, Patel M, Gamse J, Merzdorf C, Liu X, Apekin V, Sive H., Development. August 1, 1998; 125 (15): 2867-82.                  


The juxtamembrane region of the cadherin cytoplasmic tail supports lateral clustering, adhesive strengthening, and interaction with p120ctn., Yap AS, Niessen CM, Gumbiner BM., J Cell Biol. May 4, 1998; 141 (3): 779-89.                  


The gene encoding a cationic amino acid transporter (SLC7A4) maps to the region deleted in the velocardiofacial syndrome., Sperandeo MP, Borsani G, Incerti B, Zollo M, Rossi E, Zuffardi O, Castaldo P, Taglialatela M, Andria G, Sebastio G., Genomics. April 15, 1998; 49 (2): 230-6.


Transporters for cationic amino acids in animal cells: discovery, structure, and function., Devés R, Boyd CA., Physiol Rev. April 1, 1998; 78 (2): 487-545.


Cloning and functional expression of a cDNA from rat jejunal epithelium encoding a protein (4F2hc) with system y+L amino acid transport activity., Yao SY, Muzyka WR, Elliott JF, Cheeseman CI, Young JD., Biochem J. March 1, 1998; 330 ( Pt 2) 745-52.


Loss of cell adhesion in Xenopus laevis embryos mediated by the cytoplasmic domain of XLerk, an erythropoietin-producing hepatocellular ligand., Jones TL, Chong LD, Kim J, Xu RH, Kung HF, Daar IO., Proc Natl Acad Sci U S A. January 20, 1998; 95 (2): 576-81.            


Smad6 inhibits BMP/Smad1 signaling by specifically competing with the Smad4 tumor suppressor., Hata A, Lagna G, Massagué J, Hemmati-Brivanlou A., Genes Dev. January 15, 1998; 12 (2): 186-97.          


Stimulation of translation and cytoplasmic polyadenylation by the Xenopus c-mycI 3'-untranslated region., Fraser SD, Browder LW., Differentiation. November 1, 1997; 62 (2): 51-62.


Human cationic amino acid transporters hCAT-1, hCAT-2A, and hCAT-2B: three related carriers with distinct transport properties., Closs EI, Gräf P, Habermeier A, Cunningham JM, Förstermann U., Biochemistry. May 27, 1997; 36 (21): 6462-8.


A new technique for evaluating volume sensitivity of ion channels., Schütt W, Sackin H., Pflugers Arch. January 1, 1997; 433 (3): 368-75.


X-MyT1, a Xenopus C2HC-type zinc finger protein with a regulatory function in neuronal differentiation., Bellefroid EJ, Bourguignon C, Hollemann T, Ma Q, Anderson DJ, Kintner C, Pieler T., Cell. December 27, 1996; 87 (7): 1191-202.              


Translational inhibition by 5'-polycytidine tracts in Xenopus embryos and in vitro., Kuo JS, Veale R, Maxwell B, Sive H., Gene. October 17, 1996; 176 (1-2): 17-21.


Maternal beta-catenin establishes a 'dorsal signal' in early Xenopus embryos., Wylie C, Kofron M, Payne C, Anderson R, Hosobuchi M, Joseph E, Heasman J., Development. October 1, 1996; 122 (10): 2987-96.              


Modulation of ecotropic murine retroviruses by N-linked glycosylation of the cell surface receptor/amino acid transporter., Wang H, Klamo E, Kuhmann SE, Kozak SL, Kavanaugh MP, Kabat D., J Virol. October 1, 1996; 70 (10): 6884-91.


Tumour suppressor gene p53 in the horse: identification, cloning, sequencing and a possible role in the pathogenesis of equine sarcoid., Bucher K, Szalai G, Marti E, Griot-Wenk ME, Lazary S, Pauli U., Res Vet Sci. September 1, 1996; 61 (2): 114-9.


Inhibition of Xbra transcription activation causes defects in mesodermal patterning and reveals autoregulation of Xbra in dorsal mesoderm., Conlon FL, Sedgwick SG, Weston KM, Smith JC., Development. August 1, 1996; 122 (8): 2427-35.                    


DNA sequences mediating the transcriptional response of the Mix.2 homeobox gene to mesoderm induction., Vize PD., Dev Biol. July 10, 1996; 177 (1): 226-31.


Smoothelin, a novel cytoskeletal protein specific for smooth muscle cells., van der Loop FT, Schaart G, Timmer ED, Ramaekers FC, van Eys GJ., J Cell Biol. July 1, 1996; 134 (2): 401-11.    


Developmental regulation of the chicken beta B1-crystallin promoter in transgenic mice., Duncan MK, Li X, Ogino H, Yasuda K, Piatigorsky J., Mech Dev. June 1, 1996; 57 (1): 79-89.


Effects of c-myc first exons and 5' synthetic hairpins on RNA translation in oocytes and early embryos of Xenopus laevis., Fraser SD, Wilkes-Johnston J, Browder LW., Oncogene. March 21, 1996; 12 (6): 1223-30.


Regulation and function of the tissue-specific transcription factor HNF1 alpha (LFB1) during Xenopus development., Weber H, Strandmann EP, Holewa B, Bartkowski S, Zapp D, Zoidl C, Ryffel GU., Int J Dev Biol. February 1, 1996; 40 (1): 297-304.                      


The Y-box motif mediates redox-dependent transcriptional activation in mouse cells., Duh JL, Zhu H, Shertzer HG, Nebert DW, Puga A., J Biol Chem. December 22, 1995; 270 (51): 30499-507.


Structure and metal-regulated expression of the gene encoding Xenopus laevis metallothionein-A., Saint-Jacques E, April MJ, Séguin C., Gene. July 28, 1995; 160 (2): 201-6.


Regulation of Xenopus laevis estrogen receptor gene expression is mediated by an estrogen response element in the protein coding region., Lee JH, Kim J, Shapiro DJ., DNA Cell Biol. May 1, 1995; 14 (5): 419-30.


Developmental expression of the maternal protein XDCoH, the dimerization cofactor of the homeoprotein LFB1 (HNF1)., Pogge yon Strandmann E, Ryffel GU., Development. April 1, 1995; 121 (4): 1217-26.                      


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.


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.              


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.


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.


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.                  


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.                


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.


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.              


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.


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.


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 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.


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.


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.


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.              


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.


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.


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.


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.

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