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Summary Anatomy Item Literature (6354) Expression Attributions Wiki
XB-ANAT-254

Papers associated with oocyte

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Polyadenylation and deadenylation of maternal mRNAs during oocyte growth and maturation in the mouse., Paynton BV., Mol Reprod Dev. February 1, 1994; 37 (2): 172-80.


Hyperpolarization-activated chloride currents in Xenopus oocytes., Kowdley GC., J Gen Physiol. February 1, 1994; 103 (2): 217-30.


Injection of bovine parathyroid poly(A)+ RNA into Xenopus oocytes confers sensitivity to high extracellular calcium., Chen TH., J Bone Miner Res. February 1, 1994; 9 (2): 293-300.


ATP-dependent ionic permeability on nuclear envelope in in situ nuclei of Xenopus oocytes., Mazzanti M., FASEB J. February 1, 1994; 8 (2): 231-6.


The agonist binding site of the gamma-aminobutyric acid type A channel is not formed by the extracellular cysteine loop., Amin J., Mol Pharmacol. February 1, 1994; 45 (2): 317-23.


Homomers of alpha 8 and alpha 7 subunits of nicotinic receptors exhibit similar channel but contrasting binding site properties., Gerzanich V., Mol Pharmacol. February 1, 1994; 45 (2): 212-20.


Molecular cloning and expression of a cDNA of the bovine prostaglandin F2 alpha receptor., Sakamoto K., J Biol Chem. February 4, 1994; 269 (5): 3881-6.


Illegitimate recombination in Xenopus: characterization of end-joined junctions., Lehman CW., Nucleic Acids Res. February 11, 1994; 22 (3): 434-42.


Pharmacological modulation of human cardiac Na+ channels., Krafte DS., Eur J Pharmacol. February 15, 1994; 266 (3): 245-54.


A novel nicotinic agonist facilitates induction of long-term potentiation in the rat hippocampus., Hunter BE., Neurosci Lett. February 28, 1994; 168 (1-2): 130-4.


Expression and potential function of the c-mos proto-oncogene in human eggs., Pal SK., Fertil Steril. March 1, 1994; 61 (3): 496-503.


Differential expression of Shaw-related K+ channels in the rat central nervous system., Weiser M., J Neurosci. March 1, 1994; 14 (3 Pt 1): 949-72.


The deadenylation conferred by the 3' untranslated region of a developmentally controlled mRNA in Xenopus embryos is switched to polyadenylation by deletion of a short sequence element., Bouvet P., Mol Cell Biol. March 1, 1994; 14 (3): 1893-900.


Molecular cloning and functional characterization of chick lens fiber connexin 45.6., Jiang JX., Mol Biol Cell. March 1, 1994; 5 (3): 363-73.


In vitro expression of the 15 kDa subunit of the mediatophore and functional reconstitution of acetylcholine release., Leroy C., Gen Pharmacol. March 1, 1994; 25 (2): 245-55.


Effects of nitroprusside and redox reagents on NMDA receptors expressed in Xenopus oocytes., Omerovic A., Brain Res Mol Brain Res. March 1, 1994; 22 (1-4): 89-96.


Functional expression of Ca(2+)-mobilizing opioid receptors in Xenopus oocytes injected with rat brain mRNA., Kaneko S., Brain Res Mol Brain Res. March 1, 1994; 22 (1-4): 69-75.


Subunit-specific enhancement of glutamate receptor responses by zinc., Dreixler JC., Brain Res Mol Brain Res. March 1, 1994; 22 (1-4): 144-50.


Pre-steady-state transient currents mediated by the Na/K pump in internally perfused Xenopus oocytes., Holmgren M., Biophys J. March 1, 1994; 66 (3 Pt 1): 912-22.


Water permeability properties of the ovarian oocytes from Bufo arenarum and Xenopus laevis: a comparative study., Capurro C., J Membr Biol. March 1, 1994; 138 (2): 151-7.


Voltage clamping of Xenopus laevis oocytes utilizing agarose-cushion electrodes., Schreibmayer W., Pflugers Arch. March 1, 1994; 426 (5): 453-8.


Differential acidic pH sensitivity of delta F508 CFTR Cl- channel activity in lipid bilayers., Sherry AM., Am J Physiol. March 1, 1994; 266 (3 Pt 1): C870-5.


Effects of the epileptogenic agent bicuculline methiodide on membrane currents induced by N-methyl-D-aspartate and kainate (oocyte; Xenopus laevis)., Musshoff U., Dev Biol. March 7, 1994; 639 (1): 135-8.


An3 mRNA encodes an RNA helicase that colocalizes with nucleoli in Xenopus oocytes in a stage-specific manner., Gururajan R., Proc Natl Acad Sci U S A. March 15, 1994; 91 (6): 2056-60.


Differential regulation by cAMP-dependent protein kinase and protein kinase C of the mu opioid receptor coupling to a G protein-activated K+ channel., Chen Y., J Biol Chem. March 18, 1994; 269 (11): 7839-42.


Expression cloning of a rat hepatic reduced glutathione transporter with canalicular characteristics., Yi JR., J Clin Invest. April 1, 1994; 93 (4): 1841-5.


A Xenopus maternal effect mutant gene affects oocyte meiotic reinitiation and fertilization., de Vantéry C., J Exp Zool. April 1, 1994; 268 (5): 410-9.


Isolation and characterization of a novel gene of the DEAD box protein family which is specifically expressed in germ cells of Xenopus laevis., Komiya T., Dev Biol. April 1, 1994; 162 (2): 354-63.      


Functional aspects of B-Myb in early Xenopus development., Bouwmeester T., Oncogene. April 1, 1994; 9 (4): 1029-38.


B1 and B2 bradykinin receptors encoded by distinct mRNAs., Webb M., J Neurochem. April 1, 1994; 62 (4): 1247-53.


Modulation of the Na,K-pump function by beta subunit isoforms., Jaisser F., J Gen Physiol. April 1, 1994; 103 (4): 605-23.


Ca2+ influx modulation of temporal and spatial patterns of inositol trisphosphate-mediated Ca2+ liberation in Xenopus oocytes., Yao Y., J Physiol. April 1, 1994; 476 (1): 17-28.


Gating of Shaker K+ channels: I. Ionic and gating currents., Stefani E., Biophys J. April 1, 1994; 66 (4): 996-1010.


Gating of Shaker K+ channels: II. The components of gating currents and a model of channel activation., Bezanilla F., Biophys J. April 1, 1994; 66 (4): 1011-21.


[Biological regulation with platelet activating factor--molecular cloning and signal transduction of PAF]., Izumi T., Rinsho Ketsueki. April 1, 1994; 35 (4): 386-9.


ras-p21 activates phospholipase D and A2, but not phospholipase C or PKC, in Xenopus laevis oocytes., Carnero A., J Cell Biochem. April 1, 1994; 54 (4): 478-86.


Intracellular immunization with cytosolic recombinant antibodies., Biocca S., Biotechnology (N Y). April 1, 1994; 12 (4): 396-9.


Microtubule and chromatin behavior follow MAP kinase activity but not MPF activity during meiosis in mouse oocytes., Verlhac MH., Development. April 1, 1994; 120 (4): 1017-25.


Nuclear export of signal recognition particle RNA is a facilitated process that involves the Alu sequence domain., He XP., J Cell Sci. April 1, 1994; 107 ( Pt 4) 903-12.


A 28 kDa sarcolemmal antigen in kidney principal cell basolateral membranes: relationship to orthogonal arrays and MIP26., Verbavatz JM., J Cell Sci. April 1, 1994; 107 ( Pt 4) 1083-94.


Reconstitution of expressed KCa channels from Xenopus oocytes to lipid bilayers., Pérez G., Biophys J. April 1, 1994; 66 (4): 1022-7.


Functional independence of monomeric CHIP28 water channels revealed by expression of wild-type mutant heterodimers., Shi LB., J Biol Chem. April 8, 1994; 269 (14): 10417-22.


Base modification pattern at the wobble position of Xenopus selenocysteine tRNA(Sec)., Sturchler C., Nucleic Acids Res. April 25, 1994; 22 (8): 1354-8.


Functional expression of the nitrobenzylthioinosine-sensitive nucleoside transporter of human choriocarcinoma (BeWo) cells in isolated oocytes of Xenopus laevis., Boumah CE., Biochem J. May 1, 1994; 299 ( Pt 3) 769-73.


Requirement for the MAP kinase kinase/MAP kinase cascade in Xenopus oocyte maturation., Kosako H., EMBO J. May 1, 1994; 13 (9): 2131-8.


Insulin-like growth factor 1 receptor-mediated endocytosis in Xenopus laevis oocytes. A role for receptor tyrosine kinase activity., Taghon MS., Dev Biol. May 1, 1994; 163 (1): 66-74.


The effects of glycophorin A on the expression of the human red cell anion transporter (band 3) in Xenopus oocytes., Groves JD., J Membr Biol. May 1, 1994; 140 (1): 81-8.


Interaction between Ca2+ release from inositol trisphosphate sensitive stores and Ca2+ entry through neuronal Ca2+ channels expressed in Xenopus oocyte., Fournier F., Cell Calcium. May 1, 1994; 15 (5): 411-22.


[Production of partial blastulas by parthenogenesis in Xenopus]., Tournier F., C R Acad Sci III. May 1, 1994; 317 (5): 405-10.


Nuclear polyadenylation factors recognize cytoplasmic polyadenylation elements., Bilger A., Genes Dev. May 1, 1994; 8 (9): 1106-16.

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