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

Papers associated with oocyte

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Sodium-glucose cotransporters display sodium- and phlorizin-dependent water permeability., Loike JD., Am J Physiol. November 1, 1996; 271 (5 Pt 1): C1774-9.


Connexin 32/38 chimeras suggest a role for the second half of inner loop in gap junction gating by low pH., Wang XG., Am J Physiol. November 1, 1996; 271 (5 Pt 1): C1743-9.


Replication of poliovirus in Xenopus oocytes requires two human factors., Gamarnik AV., EMBO J. November 1, 1996; 15 (21): 5988-98.


Remodeling somatic nuclei in Xenopus laevis egg extracts: molecular mechanisms for the selective release of histones H1 and H1(0) from chromatin and the acquisition of transcriptional competence., Dimitrov S., EMBO J. November 1, 1996; 15 (21): 5897-906.


Fast voltage clamp discloses a new component of presteady-state currents from the Na(+)-glucose cotransporter., Chen XZ., Biophys J. November 1, 1996; 71 (5): 2544-52.


Positive feedback between MAP kinase and Mos during Xenopus oocyte maturation., Matten WT., Dev Biol. November 1, 1996; 179 (2): 485-92.


Expression of native GABAA receptors in Xenopus oocytes injected with rat brain synaptosomes., Sanna E., J Neurochem. November 1, 1996; 67 (5): 2212-4.


Functional interactions between isolated SH2 domains and insulin/Ras signaling pathways of Xenopus oocytes: opposite effects of the carboxy- and amino-terminal SH2 domains of p85 PI 3-kinase., Aroca P., Oncogene. November 7, 1996; 13 (9): 1839-46.


Mutant of insulin receptor substrate-1 incapable of activating phosphatidylinositol 3-kinase did not mediate insulin-stimulated maturation of Xenopus laevis oocytes., Yamamoto-Honda R., J Biol Chem. November 8, 1996; 271 (45): 28677-81.


NADPH-oxidase and a hydrogen peroxide-sensitive K+ channel may function as an oxygen sensor complex in airway chemoreceptors and small cell lung carcinoma cell lines., Wang D., Proc Natl Acad Sci U S A. November 12, 1996; 93 (23): 13182-7.


Rapid chemical kinetic techniques for investigations of neurotransmitter receptors expressed in Xenopus oocytes., Niu L., Proc Natl Acad Sci U S A. November 12, 1996; 93 (23): 12964-8.


A guanine nucleotide-independent inwardly rectifying cation permeability is associated with P2Y1 receptor expression in Xenopus oocytes., O'Grady SM., J Biol Chem. November 15, 1996; 271 (46): 29080-7.


Elaboration of the messenger transport organizer pathway for localization of RNA to the vegetal cortex of Xenopus oocytes., Kloc M., Dev Biol. November 25, 1996; 180 (1): 119-30.                  


A kinesin-like protein is required for germ plasm aggregation in Xenopus., Robb DL., Cell. November 29, 1996; 87 (5): 823-31.              


Masking and unmasking maternal mRNA. The role of polyadenylation, transcription, splicing, and nuclear history., Meric F., J Biol Chem. November 29, 1996; 271 (48): 30804-10.


The dominant negative effects of H-Ras harboring a Gly to Ala mutation at position 60., Sung YJ., J Biol Chem. November 29, 1996; 271 (48): 30537-43.


The Xenopus T-box gene, Antipodean, encodes a vegetally localised maternal mRNA and can trigger mesoderm formation., Stennard F., Development. December 1, 1996; 122 (12): 4179-88.      


Xenopus VegT RNA is localized to the vegetal cortex during oogenesis and encodes a novel T-box transcription factor involved in mesodermal patterning., Zhang J., Development. December 1, 1996; 122 (12): 4119-29.                  


Expression cloning of a Xenopus T-related gene (Xombi) involved in mesodermal patterning and blastopore lip formation., Lustig KD., Development. December 1, 1996; 122 (12): 4001-12.                  


Isolation and expression of a Xenopus laevis DNA methyltransferase cDNA., Kimura H., J Biochem. December 1, 1996; 120 (6): 1182-9.


Functional differentiation of the human red blood cell and kidney urea transporters., Martial S., Am J Physiol. December 1, 1996; 271 (6 Pt 2): F1264-8.


PCR, Southern blotting and oocyte expression to assess the efficacy of subtractive hybridization., Silverstein DM., Biotechniques. December 1, 1996; 21 (6): 994-6.


Concentration and pH dependence of skeletal muscle chloride channel ClC-1., Rychkov GY., J Physiol. December 1, 1996; 497 ( Pt 2) 423-35.


Changes in nuclear localization of An3, a RNA helicase, during oogenesis and embryogenesis in Xenopus laevis., Longo FJ., Mol Reprod Dev. December 1, 1996; 45 (4): 491-502.


Meiotic abnormalities of c-mos knockout mouse oocytes: activation after first meiosis or entrance into third meiotic metaphase., Araki K., Biol Reprod. December 1, 1996; 55 (6): 1315-24.


Potential role of mitogen-activated protein kinase during meiosis resumption in bovine oocytes., Fissore RA., Biol Reprod. December 1, 1996; 55 (6): 1261-70.


A role for nucleoporin FG repeat domains in export of human immunodeficiency virus type 1 Rev protein and RNA from the nucleus., Stutz F., Mol Cell Biol. December 1, 1996; 16 (12): 7144-50.


A Drosophila receptor-type tyrosine kinase (DFR1) acts as a fibroblast growth factor receptor in Xenopus embryos., Yoshioka H., Dev Growth Differ. December 1, 1996; 38 (6): 617-624.


Complex formation between stage-specific oocyte factors and a Xenopus mRNA localization element., Mowry KL., Proc Natl Acad Sci U S A. December 10, 1996; 93 (25): 14608-13.


Mouse cytoplasmic polyadenylylation element binding protein: an evolutionarily conserved protein that interacts with the cytoplasmic polyadenylylation elements of c-mos mRNA., Gebauer F., Proc Natl Acad Sci U S A. December 10, 1996; 93 (25): 14602-7.


A small nucleolar RNA requirement for site-specific ribose methylation of rRNA in Xenopus., Tycowski KT., Proc Natl Acad Sci U S A. December 10, 1996; 93 (25): 14480-5.


Differential kinetics of transcription complex assembly distinguish oocyte and somatic 5S RNA genes of Xenopus., McBryant SJ., Gene Expr. January 1, 1997; 6 (6): 387-99.


Inheritance defects of the sperm centrosome in humans and its possible role in male infertility., Hewitson L., Int J Androl. January 1, 1997; 20 Suppl 3 35-43.


Selective inhibition of oncogenic ras-p21 in vivo by agents that block its interaction with jun-N-kinase (JNK) and jun proteins. Implications for the design of selective chemotherapeutic agents., Amar S., Cancer Chemother Pharmacol. January 1, 1997; 41 (1): 79-85.


Characterisation of alpha 1A Ba2+, Sr2+ and Ca2+ currents recorded with the ancillary beta 1-4 subunits., Mangoni ME., Recept Channels. January 1, 1997; 5 (1): 1-14.


Mechanisms of Xenopus oocyte maturation., Murakami MS., Methods Enzymol. January 1, 1997; 283 584-600.


The implications of a paternally derived centrosome during human fertilization: consequences for reproduction and the treatment of male factor infertility., Navara CS., Am J Reprod Immunol. January 1, 1997; 37 (1): 39-49.


Insulin-induced maturation of Xenopus oocytes is inhibited by microinjection of a Brassica napus cDNA clone with high similarity to a mammalian receptor for activated protein kinase C., Kwak JM., Planta. January 1, 1997; 201 (3): 245-51.


Dynamic changes in the tubulin cytoskeleton during oogenesis and early development in the anuran amphibian Xenopus laevis (Daudin)., Palecek J., Folia Histochem Cytobiol. January 1, 1997; 35 (1): 3-18.


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


Regulation of Na+/glucose cotransporters., Wright EM., J Exp Biol. January 1, 1997; 200 (Pt 2): 287-93.


Secondary regulatory volume increase conferred on Xenopus oocytes by expression of AE2 anion exchanger., Jiang L., Am J Physiol. January 1, 1997; 272 (1 Pt 1): C191-202.


Properties of cloned ATP-sensitive K+ currents expressed in Xenopus oocytes., Gribble FM., J Physiol. January 1, 1997; 498 ( Pt 1) 87-98.


Distinct stress-inducible and developmentally regulated heat shock transcription factors in Xenopus oocytes., Gordon S., Dev Biol. January 1, 1997; 181 (1): 47-63.


Synthesis and function of Mos: the control switch of vertebrate oocyte meiosis., Gebauer F., Bioessays. January 1, 1997; 19 (1): 23-8.


What does Mos do in oocytes and somatic cells?, Sagata N., Bioessays. January 1, 1997; 19 (1): 13-21.


The Ca2+-inactivated Cl- channel at work: selectivity, blocker kinetics and transport visualization., Reifarth FW., J Membr Biol. January 1, 1997; 155 (1): 95-104.


Temperature dependence of fast and slow gating relaxations of ClC-0 chloride channels., Pusch M., J Gen Physiol. January 1, 1997; 109 (1): 105-16.                    


Identification of amino acid residues in the alpha, beta, and gamma subunits of the epithelial sodium channel (ENaC) involved in amiloride block and ion permeation., Schild L., J Gen Physiol. January 1, 1997; 109 (1): 15-26.                  


The activity of the scs and scs' insulator elements is not dependent on chromosomal context., Dunaway M., Mol Cell Biol. January 1, 1997; 17 (1): 182-9.

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