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Summary Anatomy Item Literature (7321) Expression Attributions Wiki
XB-ANAT-489

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The organization of mesodermal pattern in Xenopus laevis: experiments using a Xenopus mesoderm-inducing factor., Cooke J., Development. December 1, 1987; 101 (4): 893-908.            


Maturation of the catalytic alpha-subunit of Na,K-ATPase during intracellular transport., Geering K., J Cell Biol. December 1, 1987; 105 (6 Pt 1): 2613-9.


[mRNA for the plasminogen activator of the urokinase type: translation in oocytes of Xenopus laevis]., Goriunova LE., Mol Biol (Mosk). January 1, 1988; 22 (2): 549-55.


The restrictive effect of early exposure to lithium upon body pattern in Xenopus development, studied by quantitative anatomy and immunofluorescence., Cooke J., Development. January 1, 1988; 102 (1): 85-99.          


Comparative studies of the haemagglutination of adult and umbilical cord erythrocytes by animal lectins., Nitta K., Comp Biochem Physiol B. January 1, 1988; 91 (4): 657-61.


Purified interleukin 5 supports the terminal differentiation and proliferation of murine eosinophilic precursors., Yamaguchi Y., J Exp Med. January 1, 1988; 167 (1): 43-56.


DNA cloning and amino acid sequence determination of a major constituent protein of mammalian nucleoli. Correspondence of the nucleoplasmin-related protein NO38 to mammalian protein B23., Schmidt-Zachmann MS., Chromosoma. January 1, 1988; 96 (6): 417-26.


Synthesis and secretion of rat pancreatic proteins by Xenopus laevis oocytes., Moessner J., Pancreas. January 1, 1988; 3 (5): 499-507.


Cytoskeletal actin gene families of Xenopus borealis and Xenopus laevis., Cross GS., J Mol Evol. January 1, 1988; 27 (1): 17-28.


Somitomeres: mesodermal segments of vertebrate embryos., Jacobson AG., Development. January 1, 1988; 104 Suppl 209-20.  


Expression and segregation of nucleoplasmin during development in Xenopus., Litvin J., Development. January 1, 1988; 102 (1): 9-21.                    


Progesterone decreases DNA binding factor activity and the expression in Xenopus oocytes of a cAMP responsive gene from rat liver., Williams JA., Second Messengers Phosphoproteins. January 1, 1988; 12 (5-6): 261-70.


[Changes in corticosterone and aldosterone concentrations in various tissues of Xenopus laevis tadpoles during the metamorphosis]., Leloup-Hatey J., C R Seances Soc Biol Fil. January 1, 1988; 182 (4): 354-60.


Development of a metabolic activation system for the frog embryo teratogenesis assay: Xenopus (FETAX)., Fort DJ., Teratog Carcinog Mutagen. January 1, 1988; 8 (5): 251-63.


Long-term starvation in Xenopus laevis Daudin--II. Effects on several organs., Merkle S., Comp Biochem Physiol A Comp Physiol. January 1, 1988; 90 (3): 491-5.


Freeze-fracture investigations of membranes of flask cells in the kidney and of parietal cells in the stomach of claw-frog (Xenopus laevis)., Jonas L., Anat Anz. January 1, 1988; 165 (1): 23-33.


The distribution of tenascin coincides with pathways of neural crest cell migration., Mackie EJ., Development. January 1, 1988; 102 (1): 237-50.              


Purification and characterization of a casein-kinase-II-type enzyme from Xenopus laevis ovary. Biological effects on the meiotic cell division of full-grown oocyte., Mulner-Lorillon O., Eur J Biochem. January 15, 1988; 171 (1-2): 107-17.


A steady-state model of maximal oxygen and carbon dioxide transport in anuran amphibians., Withers PC., J Appl Physiol (1985). February 1, 1988; 64 (2): 860-8.


Thymosin beta 4Xen: a new thymosin beta 4-like peptide in oocytes of Xenopus laevis., Hannappel E., Arch Biochem Biophys. February 1, 1988; 260 (2): 546-51.


Gonadotropin action on androgen synthesis in short-term incubation of explants and dispersed cells of the testis of Xenopus laevis., Lecouteux A., J Exp Zool. February 1, 1988; 245 (2): 187-93.


Isolation and expression of a new mouse homeobox gene., Sharpe PT., Development. February 1, 1988; 102 (2): 397-407.


Induction of mesodermal tissues by acidic and basic heparin binding growth factors., Grunz H., Cell Differ. February 1, 1988; 22 (3): 183-9.


Receptors for neuropeptides are induced by exogenous poly(A)+ RNA in oocytes from Xenopus laevis., Meyerhof W., Proc Natl Acad Sci U S A. February 1, 1988; 85 (3): 714-7.


Regulation of human lung fibroblast glycosaminoglycan production by recombinant interferons, tumor necrosis factor, and lymphotoxin., Elias JA., J Clin Invest. February 1, 1988; 81 (2): 325-33.


Molecular properties and regulation of mRNA expression for murine T cell-replacing factor/IL-5., Tominaga A., J Immunol. February 15, 1988; 140 (4): 1175-81.


Comparison of benzo[a]pyrene-diol-epoxide binding to histone H2A with different carboxy-terminal regions., Kurokawa M., Carcinogenesis. March 1, 1988; 9 (3): 419-25.


Tissue and species conservation of the vertebrate and arthropod forms of the low molecular weight (16-18000) proteins of gap junctions., Buultjens TE., Cell Tissue Res. March 1, 1988; 251 (3): 571-80.


Estrogen-dependent in vitro transcription from the vitellogenin promoter in liver nuclear extracts., Corthésy B., Science. March 4, 1988; 239 (4844): 1137-9.


Persistent estrogen induction of hepatic Xenopus laevis serum retinol binding protein mRNA., McKearin DM., J Biol Chem. March 5, 1988; 263 (7): 3261-5.


Monoclonal antibodies against larval nervous system of Xenopus laevis: their specificities and application to analysis of neural development., Mitani S., Neuroscience. April 1, 1988; 25 (1): 291-305.


Enolase isoenzymes in adult and developing Xenopus laevis and characterization of a cloned enolase sequence., Segil N., Biochem J. April 1, 1988; 251 (1): 31-9.


The development of acetylcholinesterase activity in the embryonic nervous system of the frog, Xenopus laevis., Moody SA., Dev Biol. April 1, 1988; 467 (2): 225-32.


Dorsal and ventral cells of cleavage-stage Xenopus embryos show the same ability to induce notochord and somite formation., Pierce KE., Dev Biol. April 1, 1988; 126 (2): 228-32.


Formation of flagella during interphase in secondary spermatocytes from Xenopus laevis in vitro., Abé S., J Exp Zool. April 1, 1988; 246 (1): 65-70.


Increase of cytosolic calcium results in formation of F-actin aggregates in endothelial cells., Stolz B., Cell Biol Int Rep. April 1, 1988; 12 (4): 321-9.


In vitro analysis of germ cell genotoxicity in testis explant cultures: spermatid micronucleus assays., Risley MS., Mutat Res. April 1, 1988; 203 (2): 125-33.


Unmyelinated cutaneous afferent neurons activate two types of excitatory amino acid receptor in the spinal cord of Xenopus laevis embryos., Sillar KT., J Neurosci. April 1, 1988; 8 (4): 1350-60.


Structure, chromosome location, and expression of the human gamma-actin gene: differential evolution, location, and expression of the cytoskeletal beta- and gamma-actin genes., Erba HP., Mol Cell Biol. April 1, 1988; 8 (4): 1775-89.


Human cellular retinol-binding protein gene organization and chromosomal location., Nilsson MH., Eur J Biochem. April 5, 1988; 173 (1): 35-44.


Cloning and expression of the rat prolactin receptor, a member of the growth hormone/prolactin receptor gene family., Boutin JM., Cell. April 8, 1988; 53 (1): 69-77.


Tissue-specificity of liver gene expression: a common liver-specific promoter element., Kugler W., Nucleic Acids Res. April 25, 1988; 16 (8): 3165-74.


Monoclonal autoantibodies recognizing histone variants., van Hemert FJ., Immunol Invest. May 1, 1988; 17 (3): 195-215.


ATP-dependent association of nuclear proteins with isolated rat liver nuclei., Imamoto-Sonobe N., Proc Natl Acad Sci U S A. May 1, 1988; 85 (10): 3426-30.


The entire mesodermal mantle behaves as Spemann's organizer in dorsoanterior enhanced Xenopus laevis embryos., Kao KR., Dev Biol. May 1, 1988; 127 (1): 64-77.                      


Mapping of neural crest pathways in Xenopus laevis using inter- and intra-specific cell markers., Krotoski DM., Dev Biol. May 1, 1988; 127 (1): 119-32.


Effect of anti-ER antibodies within the ER lumen of living cells., Valle G., Exp Cell Res. June 1, 1988; 176 (2): 221-33.


Vimentin expression in oocytes, eggs and early embryos of Xenopus laevis., Tang P., Development. June 1, 1988; 103 (2): 279-87.              


The finger motif defines a multigene family represented in the maternal mRNA of Xenopus laevis oocytes., Köster M., EMBO J. June 1, 1988; 7 (6): 1735-41.


Comparison of a carboxypeptidase E-like enzyme in human, bovine, mouse, Xenopus, shark and Aplysia neural tissue., Fricker LD., Dev Biol. June 21, 1988; 453 (1-2): 281-6.

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