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Structural studies on site-directed mutants of domain 3 of Xenopus laevis oocyte 5 S ribosomal RNA. , de Stevenson IL., J Mol Biol. May 20, 1991; 219 (2): 243-55.
The insulin-like growth factor 1 ( IGF-1) receptor is responsible for mediating the effects of insulin, IGF-1, and IGF-2 in Xenopus laevis oocytes. , Janicot M., J Biol Chem. May 25, 1991; 266 (15): 9382-91.
Expression of Madin-Darby canine kidney cell Na(+)-and Cl(-)-dependent taurine transporter in Xenopus laevis oocytes. , Uchida S., J Biol Chem. May 25, 1991; 266 (15): 9605-9.
Stimulation of protein synthesis by internalized insulin. , Miller DS., J Cell Physiol. June 1, 1991; 147 (3): 487-94.
Regulation of the Xenopus laevis transcription factor IIIA gene during oogenesis and early embryogenesis: negative elements repress the O- TFIIIA promoter in embryonic cells. , Pfaff SL., Dev Biol. June 1, 1991; 145 (2): 241-54.
A possible Na/Ca exchange in the follicle cells of Xenopus oocyte. , Supplisson S., Dev Biol. June 1, 1991; 145 (2): 231-40.
Characterization of recombination intermediates from DNA injected into Xenopus laevis oocytes: evidence for a nonconservative mechanism of homologous recombination. , Maryon E., Mol Cell Biol. June 1, 1991; 11 (6): 3278-87.
Involvement of single-stranded tails in homologous recombination of DNA injected into Xenopus laevis oocyte nuclei. , Maryon E., Mol Cell Biol. June 1, 1991; 11 (6): 3268-77.
Bovine inhibin immediately inhibits the electrophysiological response to chorionic gonadotrophin in ovarian follicles of Xenopus laevis. , Murray-McIntosh RP., Endocrinology. June 1, 1991; 128 (6): 3310-2.
Silencing and trans-activation of the mouse IL-2 gene in Xenopus oocytes by proteins from resting and mitogen-induced primary T-lymphocytes. , Mouzaki A., EMBO J. June 1, 1991; 10 (6): 1399-406.
Preribosomal RNA processing in Xenopus oocytes does not include cleavage within the external transcribed spacer as an early step. , Savino R., Biochimie. June 1, 1991; 73 (6): 805-12.
Single-channel properties of mouse-Torpedo acetylcholine receptor hybrids expressed in Xenopus oocytes. , Yu L., Brain Res Mol Brain Res. June 1, 1991; 10 (3): 203-11.
Functional expression of P2Y purinoceptor in Xenopus oocyte injected with brain mRNA. , Honoré E., Pflugers Arch. June 1, 1991; 418 (5): 447-52.
Distinct mechanisms for the activation of the RSK kinases/ MAP2 kinase/pp90rsk and pp70-S6 kinase signaling systems are indicated by inhibition of protein synthesis. , Blenis J., Cell Growth Differ. June 1, 1991; 2 (6): 279-85.
The involvement of mitochondria in carbon metabolism in cleavingXenopus embryos. , Dworkin MB., Rouxs Arch Dev Biol. June 1, 1991; 200 (1): 51-57.
The low density lipoprotein receptor in Xenopus laevis. I. Five domains that resemble the human receptor. , Mehta KD., J Biol Chem. June 5, 1991; 266 (16): 10406-14.
Neuronal nicotinic acetylcholine receptors expressed in Xenopus oocytes have a pentameric quaternary structure. , Anand R., J Biol Chem. June 15, 1991; 266 (17): 11192-8.
Activated alpha subunit of Go protein induces oocyte maturation. , Kroll SD., Proc Natl Acad Sci U S A. June 15, 1991; 88 (12): 5182-6.
Effects of several cerebroprotective drugs on NMDA channel function: evaluation using Xenopus oocytes and [3H]MK-801 binding. , Kaneko S., Eur J Pharmacol. June 19, 1991; 207 (2): 119-28.
Maturation-promoting factor and p34cdc2 kinase during oocyte maturation of the Japanese quail. , Mori M., Dev Biol. July 1, 1991; 146 (1): 246-9.
A chicken red cell inhibitor of transcription associated with the terminally differentiated state. , Walmsley ME., J Cell Biol. July 1, 1991; 114 (1): 9-19.
A characterization of cytostatic factor activity from Xenopus eggs and c- mos-transformed cells. , Daar I ., J Cell Biol. July 1, 1991; 114 (2): 329-35.
Coordinate inactivation of class III genes during the Gastrula- Neurula Transition in Xenopus. , Andrews MT., Dev Biol. July 1, 1991; 146 (1): 250-4.
Antibodies to phosphotyrosine injected in Xenopus laevis oocytes modulate maturation induced by insulin/ IGF-I. , Hainaut P., Exp Cell Res. July 1, 1991; 195 (1): 129-36.
Progression from meiosis I to meiosis II in Xenopus oocytes requires de novo translation of the mosxe protooncogene. , Kanki JP., Proc Natl Acad Sci U S A. July 1, 1991; 88 (13): 5794-8.
The 165-kDa DNA topoisomerase I from Xenopus laevis oocytes is a tissue-specific variant. , Richard RE., Dev Biol. July 1, 1991; 146 (1): 4-11.
The ras oncoprotein and M-phase activity. , Daar I ., Science. July 5, 1991; 253 (5015): 74-6.
Membrane currents elicited by the epileptogenic drug pentylenetetrazole in the native oocyte of Xenopus laevis. , Madeja M., Dev Biol. July 5, 1991; 553 (1): 27-32.
Functional expression of the human formyl peptide receptor in Xenopus oocytes requires a complementary human factor. , Murphy PM., J Biol Chem. July 5, 1991; 266 (19): 12560-7.
Genes encoding receptors for insulin and insulin-like growth factor I are expressed in Xenopus oocytes and embryos. , Scavo L., Proc Natl Acad Sci U S A. July 15, 1991; 88 (14): 6214-8.
Developmental and regional expression of thyroid hormone receptor genes during Xenopus metamorphosis. , Kawahara A., Development. August 1, 1991; 112 (4): 933-43.
Structure and expression of the nerve growth factor gene in Xenopus oocytes and embryos. , Carriero F., Mol Reprod Dev. August 1, 1991; 29 (4): 313-22.
Patterns of internal and external tetraethylammonium block in four homologous K+ channels. , Taglialatela M., Mol Pharmacol. August 1, 1991; 40 (2): 299-307.
Isolation and functional expression of a mammalian prohormone processing enzyme, murine prohormone convertase 1. , Korner J., Proc Natl Acad Sci U S A. August 1, 1991; 88 (15): 6834-8.
On the synthesis and destruction of A- and B-type cyclins during oogenesis and meiotic maturation in Xenopus laevis. , Kobayashi H., J Cell Biol. August 1, 1991; 114 (4): 755-65.
Recording of voltage and Ca(2+)-dependent currents in Xenopus oocytes using an intracellular perfusion method. , Dascal N ., J Neurosci Methods. August 1, 1991; 39 (1): 29-38.
Expression of renal Na(+)-Ca2+ exchange activity in Xenopus laevis oocytes. , Milovanovic S., Am J Physiol. August 1, 1991; 261 (2 Pt 2): F207-12.
Cytokeratin phosphorylation, cytokeratin filament severing and the solubilization of the maternal mRNA Vg1. , Klymkowsky MW ., J Cell Biol. August 1, 1991; 114 (4): 787-97.
The polarized distribution of poly(A+)-mRNA-induced functional ion channels in the Xenopus oocyte plasma membrane is prevented by anticytoskeletal drugs. , Peter AB., J Cell Biol. August 1, 1991; 114 (3): 455-64.
Xenopus oocyte maturation does not require new cyclin synthesis. , Minshull J., J Cell Biol. August 1, 1991; 114 (4): 767-72.
Phosphorylation of Xenopus cyclins B1 and B2 is not required for cell cycle transitions. , Izumi T., Mol Cell Biol. August 1, 1991; 11 (8): 3860-7.
Localization and functional expression of alternatively spliced forms of the GABA(A) receptor gamma(2) subunit. , Sikela JM., Mol Cell Neurosci. August 1, 1991; 2 (4): 338-43.
Inhibitory effects of KN-62, a specific inhibitor of Ca/calmodulin-dependent protein kinase II, on serotonin-evoked C1-current and 36-C1-efflux in Xenopus oocytes. , Tohda M., Neurosci Lett. August 5, 1991; 129 (1): 47-50.
Internal deletions in human interleukin-6: structure-function analysis. , Fontaine V., Gene. August 15, 1991; 104 (2): 227-34.
Concentration jump studies of intracellularly dialysed Xenopus oocytes show desensitization of kainate receptors. , Arvanov VL., Neurosci Lett. August 19, 1991; 129 (2): 201-4.
Reinvestigation of DNA ligase I in axolotl and Pleurodeles development. , Aoufouchi S., Nucleic Acids Res. August 25, 1991; 19 (16): 4395-8.
Two forms of elongation factor 1 alpha ( EF-1 alpha O and 42Sp50), present in oocytes, but absent in somatic cells of Xenopus laevis. , Deschamps S., J Cell Biol. September 1, 1991; 114 (6): 1109-11.
Insulin receptors on Xenopus laevis oocytes: effects of injection of ob/ob mouse liver mRNA. , Diss DA., J Cell Sci. September 1, 1991; 100 ( Pt 1) 167-71.
Isolation and characterization of a monosialosylgangliopentaosyl ceramide from Xenopus laevis oocyte. , Hidari K., J Biochem. September 1, 1991; 110 (3): 412-6.
Evidence for the involvement of microtubules, ER, and kinesin in the cortical rotation of fertilized frog eggs. , Houliston E ., J Cell Biol. September 1, 1991; 114 (5): 1017-28.