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Summary Anatomy Item Literature (10513) Expression Attributions Wiki
XB-ANAT-661

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Mitogenic effects of phorbol myristate acetate (PMA) on amphibian cells., Hsu E., Ann Inst Pasteur Immunol (1985). January 1, 1985; 136D (2): 105-18.


[Structure of the vestibular apparatus and ionic composition of the body of Xenopus laevis larvae as affected by weightlessness]., Lychakov DV., Kosm Biol Aviakosm Med. January 1, 1985; 19 (3): 48-52.


Development and ciliation of the palate in two frogs, Bombina and Xenopus; a comparative study., LeCluyse EL., Tissue Cell. January 1, 1985; 17 (6): 853-64.


Structure of the lung of the clawed toad (Xenopus laevis Daudin)., Pohunková H., Folia Morphol (Praha). January 1, 1985; 33 (4): 385-90.


Translation of messenger RNA from a renal tumor into a product with the biological properties of erythropoietin., Saito T., Exp Hematol. January 1, 1985; 13 (1): 23-8.


Alteration of the anterior-posterior embryonic axis: the pattern of gastrulation in macrocephalic frog embryos., Kao KR., Dev Biol. January 1, 1985; 107 (1): 239-51.


Response of nerve growth cone to focal electric currents., Patel NB., J Neurosci Res. January 1, 1985; 13 (1-2): 245-56.


Protein accumulation in the cell nucleus., Dingwall C., Biochem Soc Symp. January 1, 1985; 50 193-204.


Recombinant interleukin 2 induces immunoglobulin secretion in Staphylococcus aureus Cowan strain I activated human B-cells., Devos R., Immunol Lett. January 1, 1985; 11 (2): 101-5.


In vitro induction of anti-SRBC response in dissociated spleen cells of Xenopus laevis., Obara N., Dev Comp Immunol. January 1, 1985; 9 (4): 739-44.


Anti-immunoglobulin M induces both B-lymphocyte proliferation and differentiation in Xenopus laevis., Schwager J., Differentiation. January 1, 1985; 30 (1): 29-34.


Electron probe x-ray microanalysis studies on the ionic environment of nuclei and the maintenance of chromatin structure., Cameron IL., Prog Clin Biol Res. January 1, 1985; 196 223-39.


Lectin effects on thymic suppression of hemagglutinin production in vitro by spleen fragments from Xenopus laevis, the South African clawed toad., Ruben LN., Thymus. January 1, 1985; 7 (3): 161-8.


All components required for the eventual activation of muscle-specific actin genes are localized in the subequatorial region of an uncleaved amphibian egg., Gurdon JB., Proc Natl Acad Sci U S A. January 1, 1985; 82 (1): 139-43.


Suppression in Xenopus laevis: thymus inducer, spleen effector cells., Ruben LN., Immunology. January 1, 1985; 54 (1): 65-70.


Constancy of DNA organization of polymorphic and nonpolymorphic genes during development in Xenopus., Okada A., Differentiation. January 1, 1985; 29 (1): 14-9.


Specific binding sites for ovine prolactin in three amphibian cell lines., Dunand M., Am J Physiol. January 1, 1985; 248 (1 Pt 1): C80-7.


Isolation, partial characterization and translation of mRNAs for chymosin and pepsin, the two main aspartyl proteinases of bovine stomach., Lipoldová M., Folia Biol (Praha). January 1, 1985; 31 (2): 71-80.


Microtubules during germinal vesicle breakdown (GVBD) of Xenopus oocytes: effect of Ca2+ ionophore A-23187 and taxol., Huchon D., Reprod Nutr Dev. January 1, 1985; 25 (2): 465-79.


Nuclear segregation of U2 snRNA requires binding of specific snRNP proteins., Mattaj IW., Cell. January 1, 1985; 40 (1): 111-8.


Vitellogenin genes and their products in closely and distantly related species of Xenopus., Baker BS., Comp Biochem Physiol B. January 1, 1985; 82 (3): 497-505.


Subcellular flux of potassium and rubidium in amphibian oocytes., Cameron IL., Physiol Chem Phys Med NMR. January 1, 1985; 17 (2): 173-81.


In vitro translation of messenger RNA in a rabbit reticulocyte lysate cell-free system., Oliver CL., Methods Mol Biol. January 1, 1985; 2 145-55.


Development of early brainstem projections to the tail spinal cord of Xenopus., Nordlander RH., J Comp Neurol. January 22, 1985; 231 (4): 519-29.


Co-existence of two different types of soluble histone complexes in nuclei of Xenopus laevis oocytes., Kleinschmidt JA., J Biol Chem. January 25, 1985; 260 (2): 1166-76.


The expression of creatine kinase isozymes in Xenopus tropicalis, Xenopus laevis laevis, and their viable hybrid., Bürki E., Biochem Genet. February 1, 1985; 23 (1-2): 73-88.


Motor hypoactivity induced by neurotensin and related peptides in mice., Meisenberg G., Pharmacol Biochem Behav. February 1, 1985; 22 (2): 189-93.


Effects of hypophysectomy and substitution with growth hormone, prolactin, and thyroxine on growth and deposition in juvenile frogs, Xenopus laevis., Nybroe O., Gen Comp Endocrinol. February 1, 1985; 57 (2): 257-65.


Nuclear-cytoplasmic interactions affecting DNA synthesis during induced cardiac muscle growth in the rat., Bugaisky LB., Cardiovasc Res. February 1, 1985; 19 (2): 89-94.


The development of the nucleus isthmi in Xenopus laevis. I. Cell genesis and the formation of connections with the tectum., Udin SB., J Comp Neurol. February 1, 1985; 232 (1): 25-35.


Fertilization potential and electrical properties of the Xenopus laevis egg., Webb DJ., Dev Biol. February 1, 1985; 107 (2): 395-406.


Deinduction of transcription of Xenopus 74-kDa albumin genes and destabilization of mRNA by estrogen in vivo and in hepatocyte cultures., Wolffe AP., Eur J Biochem. February 1, 1985; 146 (3): 489-96.


Secretion of ceruloplasmin by a human clear cell carcinoma maintained in nude mice., Saito K., Biochem Med. February 1, 1985; 33 (1): 45-52.


Coordinate estrogen induction of vitellogenin and a small serum protein mRNA in Xenopus laevis liver., Hayward MA., Mol Cell Endocrinol. February 1, 1985; 39 (2): 91-8.


Membrane morphogenesis in retinal rod outer segments: inhibition by tunicamycin., Fliesler SJ., J Cell Biol. February 1, 1985; 100 (2): 574-87.


The tissue-specific chicken histone H5 gene is transcribed with fidelity in Xenopus laevis oocytes., Wigley PL., J Mol Biol. February 5, 1985; 181 (3): 449-52.


Synthesis of bunyavirus-specific proteins in a continuous cell line (XTC-2) derived from Xenopus laevis., Watret GE., J Gen Virol. March 1, 1985; 66 ( Pt 3) 473-82.


Occurrence of a species-specific nuclear antigen in the germ line of Xenopus and its expression from paternal genes in hybrid frogs., Wedlich D., Dev Biol. March 1, 1985; 108 (1): 220-34.                


Identification of the sequence responsible for the nuclear accumulation of the influenza virus nucleoprotein in Xenopus oocytes., Davey J., Cell. March 1, 1985; 40 (3): 667-75.


The ac field patterns about living cells., Rivera H., Cell Biophys. March 1, 1985; 7 (1): 43-55.


Monoclonal antibodies prepared against the major Drosophila nuclear Matrix-pore complex-lamina glycoprotein bind specifically to the nuclear envelope in situ., Filson AJ., J Biol Chem. March 10, 1985; 260 (5): 3164-72.


Growth and death of cells of the mesencephalic fifth nucleus in Xenopus laevis larvae., Kollros JJ., J Comp Neurol. March 22, 1985; 233 (4): 481-9.


Complete nucleotide sequence of mRNA for caerulein precursor from Xenopus skin: the mRNA contains an unusual repetitive structure., Wakabayashi T., Nucleic Acids Res. March 25, 1985; 13 (6): 1817-28.


Estrogen-dependent DNA synthesis and parenchymal cell proliferation in the liver of adult male Xenopus frogs., Spolski RJ., Dev Biol. April 1, 1985; 108 (2): 332-40.


Immunohistochemical distribution of the histone H1(0)/H5 variant in various tissues of adult Xenopus laevis., Moorman AF., Cell Differ. April 1, 1985; 16 (2): 109-17.


Human Z alpha 1-antitrypsin accumulates intracellularly and stimulates lysosomal activity when synthesised in the Xenopus oocyte., Bathurst IC., FEBS Lett. April 22, 1985; 183 (2): 304-8.


Post-transcriptional regulation of albumin gene expression in Xenopus liver., Kazmaier M., EMBO J. May 1, 1985; 4 (5): 1261-6.


Cell type-specific expression of nuclear lamina proteins during development of Xenopus laevis., Benavente R., Cell. May 1, 1985; 41 (1): 177-90.                      


Inhibition by estradiol of binding and mitogenic effect of epidermal growth factor in primary cultures of Xenopus hepatocytes., Wolffe AP., Mol Cell Endocrinol. May 1, 1985; 40 (2-3): 167-73.


Dynamics of tubulin structures in Xenopus laevis oogenesis., Palecek J., J Embryol Exp Morphol. June 1, 1985; 87 75-86.        

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