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

Papers associated with oocyte

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Photocrosslinking of proteins to maternal mRNA in Xenopus oocytes., Swiderski RE., Dev Biol. August 1, 1988; 128 (2): 349-58.


Expression of amino acid transport systems in Xenopus oocytes injected with mRNA of rat small intestine and kidney., Aoshima H., Arch Biochem Biophys. August 15, 1988; 265 (1): 73-81.


Induction of odorant-evoked current transients in Xenopus oocytes injected with mRNA isolated from the olfactory mucosa of Rana pipiens., Getchell TV., Neurosci Lett. August 31, 1988; 91 (2): 217-21.


Promoter sequences required for transcription of Xenopus laevis histone genes in injected frog oocyte nuclei., Heindl LM., Mol Cell Biol. September 1, 1988; 8 (9): 3676-82.


S6 phosphorylation is regulated at multiple levels in Xenopus laevis oocytes., Wasserman WJ., J Exp Zool. September 1, 1988; 247 (3): 263-70.


Taxol reveals cortical sites of microtubule assembly in Xenopus oocytes. Role of the nucleus., Jessus C., Cell Differ Dev. September 1, 1988; 25 (1): 57-63.


Excitatory amino acid receptors expressed in Xenopus oocytes: agonist pharmacology., Verdoorn TA., Mol Pharmacol. September 1, 1988; 34 (3): 298-307.


Taurine and beta-alanine act on both GABA and glycine receptors in Xenopus oocyte injected with mouse brain messenger RNA., Horikoshi T., Dev Biol. September 1, 1988; 464 (2): 97-105.


Developmental regulation of two 5S ribosomal RNA genes., Wolffe AP., Science. September 23, 1988; 241 (4873): 1626-32.


Oocyte and somatic 5S ribosomal RNA and 5S RNA encoding genes in Xenopus tropicalis., Nietfeld W., Nucleic Acids Res. September 26, 1988; 16 (18): 8803-15.


Functional activity of oligosaccharide-deficient (Na,K)ATPase expressed in Xenopus oocytes., Takeda K., FEBS Lett. September 26, 1988; 238 (1): 201-4.


Nucleotide sequence and transcription of a rat tRNA(Phe) gene and a neighboring Alu-like element., Rosen A., Gene. September 30, 1988; 69 (2): 275-85.


Ouabain sensitivity of a chimeric alpha subunit (Torpedo/rat) of the (Na,K)ATPase expressed in Xenopus oocyte., Noguchi S., Biochem Biophys Res Commun. September 30, 1988; 155 (3): 1237-43.


Novel control elements in the alpha-1 tubulin gene promoter from Chlamydomonas reinhardii., Bandziulis RJ., Mol Gen Genet. October 1, 1988; 214 (2): 204-12.


Destruction of a translationally controlled mRNA in Xenopus oocytes delays progesterone-induced maturation., Smith RC., Genes Dev. October 1, 1988; 2 (10): 1296-306.


Characterization of the repressed 5S DNA minichromosomes assembled in vitro with a high-speed supernatant of Xenopus laevis oocytes., Shimamura A., Mol Cell Biol. October 1, 1988; 8 (10): 4257-69.


cDNA cloning of the developmentally regulated lamin LIII of Xenopus laevis., Stick R., EMBO J. October 1, 1988; 7 (10): 3189-97.


Effect of ultraviolet light on the expression of genes for human U1 RNA., Thirunavukkarasu C., J Cell Physiol. October 1, 1988; 137 (1): 55-64.


Expression of a histone H1-like protein is restricted to early Xenopus development., Smith RC., Genes Dev. October 1, 1988; 2 (10): 1284-95.              


Proteins regulating actin assembly in oogenesis and early embryogenesis of Xenopus laevis: gelsolin is the major cytoplasmic actin-binding protein., Ankenbauer T., J Cell Biol. October 1, 1988; 107 (4): 1489-98.                  


Competition between DNA templates injected into Xenopus laevis oocytes., Mancebo MJ., Exp Cell Res. October 1, 1988; 178 (2): 469-78.


Cytochemical analysis of the reconstitution of endoplasmic reticulum after microinjection of rat liver microsomes into Xenopus oocytes., Paiement J., J Histochem Cytochem. October 1, 1988; 36 (10): 1263-73.


Function of c-mos proto-oncogene product in meiotic maturation in Xenopus oocytes., Sagata N., Nature. October 6, 1988; 335 (6190): 519-25.


Effect of sequence differences between somatic and oocyte 5S RNA genes on transcriptional efficiency in an oocyte S150 extract., Reynolds WF., Mol Cell Biol. November 1, 1988; 8 (11): 5056-8.


Spatial reorganization of actin, tubulin and histone mRNAs during meiotic maturation and fertilization in Xenopus oocytes., Perry BA., Cell Differ Dev. November 1, 1988; 25 (2): 99-108.


Control of Torpedo acetylcholine receptor biosynthesis in Xenopus oocytes., Buller AL., Proc Natl Acad Sci U S A. November 1, 1988; 85 (22): 8717-21.


Developmental regulation of translation by the 5' noncoding region of murine c-myc mRNA in Xenopus laevis., Lazarus P., Oncogene. November 1, 1988; 3 (5): 517-21.


Presence of microtubules in isolated cortices of prophase I and metaphase II oocytes in Xenopus laevis., Huchon D., Cell Tissue Res. November 1, 1988; 254 (2): 415-20.


The distribution of nucleoplasmin in early development and organogenesis of Xenopus laevis., Wedlich D., Cell Tissue Res. November 1, 1988; 254 (2): 295-300.


Post-transcriptional regulation by insulin of Xenopus ribosomal protein S6 kinase., Stefanovic D., Exp Cell Res. November 1, 1988; 179 (1): 104-14.


Effect of tunicamycin on the expression of functional brain neurotransmitter receptors and voltage-operated channels in Xenopus oocytes., Sumikawa K., Dev Biol. November 1, 1988; 464 (3): 191-9.


Activity of a cloned Xenopus albumin gene promoter in the homologous frog oocyte system., Old RW., Biochim Biophys Acta. November 10, 1988; 951 (1): 220-5.


Alpha-sarcin causes a specific cut in 28 S rRNA when microinjected into Xenopus oocytes., Ackerman EJ., J Biol Chem. November 15, 1988; 263 (32): 17076-83.


The presence of fibroblast growth factor in the frog egg: its role as a natural mesoderm inducer., Kimelman D., Science. November 18, 1988; 242 (4881): 1053-6.


Kinetics of histone gene expression during early development of Xenopus laevis., Koster JG., J Theor Biol. November 21, 1988; 135 (2): 139-67.


Hemispheric asymmetry of rapid chloride responses to inositol trisphosphate and calcium in Xenopus oocytes., Lupu-Meiri M., FEBS Lett. November 21, 1988; 240 (1-2): 83-7.


Expression of size-selected messenger RNA encoding the brain and adrenal gland angiotensin-II receptor in Xenopus laevis oocytes., Inestrosa NC., Arch Biol Med Exp. December 1, 1988; 21 (3-4): 423-8.


Positionally exact initiation is required for the formation of a stable RNA polymerase II transcription complex in vivo., Tebb G., EMBO J. December 1, 1988; 7 (12): 3785-92.


Localization of c-myc expression during oogenesis and embryonic development in Xenopus laevis., Hourdry J., Development. December 1, 1988; 104 (4): 631-41.          


Expression of neurotransmitter transport from rat brain mRNA in Xenopus laevis oocytes., Blakely RD., Proc Natl Acad Sci U S A. December 1, 1988; 85 (24): 9846-50.


Isolation and characterization of a Xenopus laevis C protein cDNA: structure and expression of a heterogeneous nuclear ribonucleoprotein core protein., Preugschat F., Proc Natl Acad Sci U S A. December 1, 1988; 85 (24): 9669-73.


Beta gamma subunits of GTP-binding proteins inhibit muscarinic receptor stimulation of phospholipase C., Moriarty TM., Proc Natl Acad Sci U S A. December 1, 1988; 85 (23): 8865-9.


Insulin and progesterone activate a common synthetic ribosomal protein S6 peptide kinase in Xenopus oocytes., Cicirelli MF., FEBS Lett. December 5, 1988; 241 (1-2): 195-201.


The material mRNA Vg1 is correctly localized following injection into Xenopus oocytes., Yisraeli JK., Nature. December 8, 1988; 336 (6199): 592-5.


Identification of a translation inhibitory element (TIE) in the 3' untranslated region of the human interferon-beta mRNA., Kruys VI., Gene. December 10, 1988; 72 (1-2): 191-200.


Differential expression of glutamate receptors in Xenopus oocytes injected with messenger RNA from lobster muscle., Kawai N., Neurosci Lett. December 19, 1988; 95 (1-3): 203-7.


[Intragenomic polymorphism of the primary structure of 5S rRNA gene variants of the loach (Misgurnus fossilis L.). Determination of the transcriptional activity]., Sedman IuE., Mol Biol (Mosk). January 1, 1989; 23 (5): 1295-308.


Gene-specific labeling of chromatin for electron microscopy., Brantley JD., Gene Anal Tech. January 1, 1989; 6 (4): 75-8.


Use of Xenopus oocytes to study the expression of cloned genes and translation of mRNA., Heikkila JJ., Biotechnol Adv. January 1, 1989; 7 (1): 47-59.


A step in embryonic axis specification in Xenopus laevis is simulated by cytoplasmic displacements elicited by gravity and centrifugal force., Black SD., Adv Space Res. January 1, 1989; 9 (11): 159-68.

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