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Summary Expression Phenotypes Gene Literature (78) GO Terms (11) Nucleotides (101) Proteins (57) Interactants (311) Wiki
XB-GENEPAGE-6451332

Papers associated with tert



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Telomerase activity is widespread in adult somatic tissues of Xenopus., Bousman S, Schneider G, Shampay J., J Exp Zool B Mol Dev Evol. February 15, 2003; 295 (1): 82-6.


The selective activation of the glutamate receptor GluR5 by ATPA is controlled by serine 741., Nielsen MM, Liljefors T, Krogsgaard-Larsen P, Egebjerg J., Mol Pharmacol. January 1, 2003; 63 (1): 19-25.


Formation of extrachromosomal circles from telomeric DNA in Xenopus laevis., Cohen S, Méchali M., EMBO Rep. December 1, 2002; 3 (12): 1168-74.


Effect of reactive oxygen species on NH4+ permeation in Xenopus laevis oocytes., Cougnon M, Benammou S, Brouillard F, Hulin P, Planelles G., Am J Physiol Cell Physiol. June 1, 2002; 282 (6): C1445-53.


Unique insecticide specificity of human homomeric rho 1 GABA(C) receptor., Ratra GS, Erkkila BE, Weiss DS, Casida JE., Toxicol Lett. March 24, 2002; 129 (1-2): 47-53.


The snoRNA domain of vertebrate telomerase RNA functions to localize the RNA within the nucleus., Lukowiak AA, Narayanan A, Li ZH, Terns RM, Terns MP., RNA. December 1, 2001; 7 (12): 1833-44.


Positive allosteric modulation of native and recombinant gamma-aminobutyric acid(B) receptors by 2,6-Di-tert-butyl-4-(3-hydroxy-2,2-dimethyl-propyl)-phenol (CGP7930) and its aldehyde analog CGP13501., Urwyler S, Mosbacher J, Lingenhoehl K, Heid J, Hofstetter K, Froestl W, Bettler B, Kaupmann K., Mol Pharmacol. November 1, 2001; 60 (5): 963-71.


Identification and analyses of the Xenopus TERT gene that encodes the catalytic subunit of telomerase., Kuramoto M, Ohsumi K, Kishimoto T, Ishikawa F., Gene. October 17, 2001; 277 (1-2): 101-10.


General anesthetic potencies of a series of propofol analogs correlate with potency for potentiation of gamma-aminobutyric acid (GABA) current at the GABA(A) receptor but not with lipid solubility., Krasowski MD, Jenkins A, Flood P, Kung AY, Hopfinger AJ, Harrison NL., J Pharmacol Exp Ther. April 1, 2001; 297 (1): 338-51.


Stereochemistry and molecular pharmacology of (S)-thio-ATPA, a new potent and selective GluR5 agonist., Stensbøl TB, Jensen HS, Nielsen B, Johansen TN, Egebjerg J, Frydenvang K, Krogsgaard-Larsen P., Eur J Pharmacol. January 12, 2001; 411 (3): 245-53.


Social isolation-induced decreases in both the abundance of neuroactive steroids and GABA(A) receptor function in rat brain., Serra M, Pisu MG, Littera M, Papi G, Sanna E, Tuveri F, Usala L, Purdy RH, Biggio G., J Neurochem. August 1, 2000; 75 (2): 732-40.


Identification of amino acid residues of GABA(A) receptor subunits contributing to the formation and affinity of the tert-butylbicyclophosphorothionate binding site., Jursky F, Fuchs K, Buhr A, Tretter V, Sigel E, Sieghart W., J Neurochem. March 1, 2000; 74 (3): 1310-6.


Synthesis and pharmacological activity of O-(5-isoxazolyl)-L-serine., Ikegami F, Yamamoto A, Sekine T, Ishikawa T, Kusamae-Eguchi K, Kusama T, Watanabe K., Chem Pharm Bull (Tokyo). February 1, 2000; 48 (2): 278-80.


The actions of ether, alcohol and alkane general anaesthetics on GABAA and glycine receptors and the effects of TM2 and TM3 mutations., Krasowski MD, Harrison NL., Br J Pharmacol. February 1, 2000; 129 (4): 731-43.


Role of disulfide bonds in the structure and potassium channel blocking activity of ShK toxin., Pennington MW, Lanigan MD, Kalman K, Mahnir VM, Rauer H, McVaugh CT, Behm D, Donaldson D, Chandy KG, Kem WR, Norton RS., Biochemistry. November 2, 1999; 38 (44): 14549-58.


Nucleolar localization signals of box H/ACA small nucleolar RNAs., Narayanan A, Lukowiak A, Jády BE, Dragon F, Kiss T, Terns RM, Terns MP., EMBO J. September 15, 1999; 18 (18): 5120-30.


Resolution, absolute stereochemistry and molecular pharmacology of the enantiomers of ATPA., Stensbøl TB, Borre L, Johansen TN, Egebjerg J, Madsen U, Ebert B, Krogsgaard-Larsen P., Eur J Pharmacol. September 10, 1999; 380 (2-3): 153-62.


Resolution, absolute stereochemistry, and enantiopharmacology of the GluR1-4 and GluR5 antagonist 2-amino-3-[5-tert-butyl-3-(phosphonomethoxy)-4-isoxazolyl]propionic acid., Møller EH, Egebjerg J, Brehm L, Stensbøl TB, Johansen TN, Madsen U, Krogsgaard-Larsen P., Chirality. January 1, 1999; 11 (10): 752-9.


Propofol analogues. Synthesis, relationships between structure and affinity at GABAA receptor in rat brain, and differential electrophysiological profile at recombinant human GABAA receptors., Trapani G, Latrofa A, Franco M, Altomare C, Sanna E, Usala M, Biggio G, Liso G., J Med Chem. May 21, 1998; 41 (11): 1846-54.


Antagonist properties of a phosphono isoxazole amino acid at glutamate R1-4 (R,S)-2-amino-3-(3-hydroxy-5-methyl-4-isoxazolyl)propionic acid receptor subtypes., Wahl P, Anker C, Traynelis SF, Egebjerg J, Rasmussen JS, Krogsgaard-Larsen P, Madsen U., Mol Pharmacol. March 1, 1998; 53 (3): 590-6.


Pharmacology and toxicology of ATOA, an AMPA receptor antagonist and a partial agonist at GluR5 receptors., Wahl P, Frandsen A, Madsen U, Schousboe A, Krogsgaard-Larsen P., Neuropharmacology. January 1, 1998; 37 (10-11): 1205-10.


Actions of picrodendrin antagonists on dieldrin-sensitive and -resistant Drosophila GABA receptors., Hosie AM, Ozoe Y, Koike K, Ohmoto T, Nikaido T, Sattelle DB., Br J Pharmacol. December 1, 1996; 119 (8): 1569-76.


Effects of repetitive tetanic stimulation at long intervals on excitation-contraction coupling in frog skeletal muscle., Bruton JD, Lännergren J, Westerblad H., J Physiol. August 15, 1996; 495 ( Pt 1) 15-22.


Mechanisms underlying changes of tetanic [Ca2+]i and force in skeletal muscle., Westerblad H, Allen DG., Acta Physiol Scand. March 1, 1996; 156 (3): 407-16.


Susceptibility of cloned K+ channels to reactive oxygen species., Duprat F, Guillemare E, Romey G, Fink M, Lesage F, Lazdunski M, Honore E., Proc Natl Acad Sci U S A. December 5, 1995; 92 (25): 11796-800.


Telomerase activity in germline and embryonic cells of Xenopus., Mantell LL, Greider CW., EMBO J. July 1, 1994; 13 (13): 3211-7.


Oviductin. Purification and properties of the oviductal protease that processes the molecular weight 43,000 glycoprotein of the Xenopus laevis egg envelope., Hardy DM, Hedrick JL., Biochemistry. May 12, 1992; 31 (18): 4466-72.

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