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

Papers associated with oocyte

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Attempts to define functional domains of gap junction proteins with synthetic peptides., Dahl G., Biophys J. November 1, 1994; 67 (5): 1816-22.


Meiosis-specific cell cycle regulation in maturing Xenopus oocytes., Ohsumi K., J Cell Sci. November 1, 1994; 107 ( Pt 11) 3005-13.


Ovary-specific expression of a gene encoding a divergent alpha-tubulin isotype in Xenopus., Wu WL., Differentiation. November 1, 1994; 58 (1): 9-18.


Membrane clustering and bungarotoxin binding by the nicotinic acetylcholine receptor: role of the beta subunit., Wheeler SV., J Neurochem. November 1, 1994; 63 (5): 1891-9.


Interactive roles of Ras, insulin receptor substrate-1, and proteins with Src homology-2 domains in insulin signaling in Xenopus oocytes., Chuang LM., J Biol Chem. November 4, 1994; 269 (44): 27645-9.


Mitogen-activated protein kinase kinase is required for the mos-induced metaphase arrest., Kosako H., J Biol Chem. November 11, 1994; 269 (45): 28354-8.


CPEB is a specificity factor that mediates cytoplasmic polyadenylation during Xenopus oocyte maturation., Hake LE., Cell. November 18, 1994; 79 (4): 617-27.


Nucleic acid-binding properties of the Xenopus oocyte Y box protein mRNP3+4., Murray MT., Biochemistry. November 22, 1994; 33 (46): 13910-7.


Single-channel inositol 1,4,5-trisphosphate receptor currents revealed by patch clamp of isolated Xenopus oocyte nuclei., Mak DO., J Biol Chem. November 25, 1994; 269 (47): 29375-8.


An NLS is sufficient to engage facilitated translocation by the nuclear pore complex and subsequent intranuclear binding., Vancurova I., Biochem Biophys Res Commun. November 30, 1994; 205 (1): 529-36.


A possible role for the 60-kD Ro autoantigen in a discard pathway for defective 5S rRNA precursors., O'Brien CA., Genes Dev. December 1, 1994; 8 (23): 2891-903.


Further analysis of cytoplasmic polyadenylation in Xenopus embryos and identification of embryonic cytoplasmic polyadenylation element-binding proteins., Simon R., Mol Cell Biol. December 1, 1994; 14 (12): 7867-75.


Mobilization of intracellular Ca2+ and stimulation of cyclic AMP production by kappa opioid receptors expressed in Xenopus oocytes., Kaneko S., Brain Res Mol Brain Res. December 1, 1994; 27 (2): 258-64.


Analysis of aspartic acid and asparagine metabolism in Xenopus laevis oocytes using a simple and sensitive HPLC method., O'Connor CM., Mol Reprod Dev. December 1, 1994; 39 (4): 392-6.


Protooncogene product, c-mos kinase, is involved in upregulating Na+/H+ antiporter in Xenopus oocytes., Rezai K., Am J Physiol. December 1, 1994; 267 (6 Pt 1): C1717-22.


Association of p34cdc2 kinase and MAP kinase with microtubules during the meiotic maturation of Xenopus oocytes., Fellous A., Int J Dev Biol. December 1, 1994; 38 (4): 651-9.


The phosphotyrosyl phosphatase activator of protein phosphatase 2A. A novel purification method, immunological and enzymic characterization., Van Hoof C., Eur J Biochem. December 15, 1994; 226 (3): 899-907.


Processing of U14 small nucleolar RNA from three different introns of the mouse 70-kDa-cognate-heat-shock-protein pre-messenger RNA., Barbhaiya H., Eur J Biochem. December 15, 1994; 226 (3): 765-71.


Characterization of FIII/YY1, a Xenopus laevis conserved zinc-finger protein binding to the first exon of L1 and L14 ribosomal protein genes., Pisaneschi G., Biochem Biophys Res Commun. December 15, 1994; 205 (2): 1236-42.


Forskolin and methylxanthines block the increase in intracellular pH during meiosis in Xenopus laevis oocytes., Rezai K., Biochem Biophys Res Commun. December 15, 1994; 205 (2): 979-83.


Negative and positive effects of CpG-methylation on Xenopus ribosomal gene transcription in vitro., Labhart P., FEBS Lett. December 19, 1994; 356 (2-3): 302-6.


Electrogenic amino acid exchange via the rBAT transporter., Coady MJ., FEBS Lett. December 19, 1994; 356 (2-3): 174-8.


Ca2+ channel inhibition by kappa opioid receptors expressed in Xenopus oocytes., Kaneko S., Neuroreport. December 20, 1994; 5 (18): 2506-8.


Osmo-dependent Cl- currents activated by cyclic AMP in follicle-enclosed Xenopus oocytes., Arellano RO., Proc Biol Sci. December 22, 1994; 258 (1353): 229-35.


Analysis of the Ras p21/mitogen-activated protein kinase signaling in vitro and in Xenopus oocytes., Fukuda M., J Biol Chem. December 30, 1994; 269 (52): 33097-101.


[A 2-component cytoskeletal system as the basis of cortical contractility in clawed toad eggs]., Riabova LV., Ontogenez. January 1, 1995; 26 (3): 236-47.


The NIMA kinase: a mitotic regulator in Aspergillus nidulans and vertebrate cells., Lu KP., Prog Cell Cycle Res. January 1, 1995; 1 187-205.


Co-assembly of potassium channel subunits in Drosophila: the combinatorial hypothesis revisited., Wu CF., Chin J Physiol. January 1, 1995; 38 (3): 131-8.


Coupling between charge movement and pore opening in voltage dependent potassium channels., Stefani E., Medicina (B Aires). January 1, 1995; 55 (5 Pt 2): 591-9.


Characterization of and modulation by a beta-subunit of a human maxi KCa channel cloned from myometrium., Wallner M., Recept Channels. January 1, 1995; 3 (3): 185-99.


The concentrations of AcSDKP, a physiological inhibitor of cell proliferation, vary during oogenesis and early development in Xenopus laevis., Volkov L., Biol Cell. January 1, 1995; 85 (2-3): 223-5.


Cortical cytoskeleton of the Xenopus oocyte, egg, and early embryo., Larabell CA., Curr Top Dev Biol. January 1, 1995; 31 433-53.


Ribonucleoprotein complex formation by the human hepatitis B virus polymerase., Seifer M., Intervirology. January 1, 1995; 38 (5): 295-303.


Morphological and electrophysiological properties of centrifuged stratified Xenopus oocytes., Richter HP., Biol Cell. January 1, 1995; 84 (3): 129-38.


Oocyte microinjection assay for evaluation of Ras-induced signaling pathways., Tocque B., Methods Enzymol. January 1, 1995; 255 426-35.


Patterns of localization and cytoskeletal association of two vegetally localized RNAs, Vg1 and Xcat-2., Forristall C., Development. January 1, 1995; 121 (1): 201-8.          


Hypertonic activation of AE2 anion exchanger in Xenopus oocytes via NHE-mediated intracellular alkalinization., Humphreys BD., Am J Physiol. January 1, 1995; 268 (1 Pt 1): C201-9.


Localization and functional characterization of rat kidney-specific chloride channel, ClC-K1., Uchida S., J Clin Invest. January 1, 1995; 95 (1): 104-13.


Evidence against a potential endoplasmic reticulum transmembrane domain of 27K zein expressed in Xenopus oocytes., Lee DH., Protein Eng. January 1, 1995; 8 (1): 91-6.


Evidence for coupling between Na+ pump activity and TEA-sensitive K+ currents in Xenopus laevis oocytes., Huang H., J Membr Biol. January 1, 1995; 143 (1): 29-35.


Functional expression of adrenergic and opioid receptors in Xenopus oocytes: interaction between alpha 2- and beta 2-adrenergic receptors., Birnbaum AK., Brain Res Mol Brain Res. January 1, 1995; 28 (1): 72-80.


Homology between mitochondriogenesis in the avian and amphibian oocyte., D'Herde K., Reprod Nutr Dev. January 1, 1995; 35 (3): 305-11.


Calcium puffs in Xenopus oocytes., Parker I., Ciba Found Symp. January 1, 1995; 188 50-60; discussion 60-5.


Regulation of oocyte growth and maturation in fish., Nagahama Y., Curr Top Dev Biol. January 1, 1995; 30 103-45.


Cellular effects of olomoucine, an inhibitor of cyclin-dependent kinases., Abraham RT., Biol Cell. January 1, 1995; 83 (2-3): 105-20.


Calcium release from the nucleus by InsP3 receptor channels., Stehno-Bittel L., Neuron. January 1, 1995; 14 (1): 163-7.


Functional expression of the renal organic cation transporter and P-glycoprotein in Xenopus laevis oocytes., Nelson JA., Cancer Chemother Pharmacol. January 1, 1995; 37 (1-2): 187-9.


Single cells as biosensors for chemical separations., Shear JB., Science. January 6, 1995; 267 (5194): 74-7.


Intercellular channels in teleosts: functional characterization of two connexins from Atlantic croaker., Bruzzone R., FEBS Lett. January 30, 1995; 358 (3): 301-4.


Permeation and gating properties of a cloned renal K+ channel., Chepilko S., Am J Physiol. February 1, 1995; 268 (2 Pt 1): C389-401.

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