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

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Immunocytochemical localization and spatial relation to the adenohypophysis of a somatostatin-like and a corticotropin-releasing factor-like peptide in the brain of four amphibian species., Olivereau M., Cell Tissue Res. February 1, 1987; 247 (2): 317-24.


Antipain microinjection prevents progesterone to inhibit adenyl cyclase in Xenopus oocytes., Picard A., Cell Biol Int Rep. February 1, 1987; 11 (2): 81-8.


A 5 S rRNA-like secondary structure in the 7 SL RNA may define a ribosomal binding site of the signal recognition particle., Boehm S., FEBS Lett. February 9, 1987; 212 (1): 15-20.


Recombination of DNAs in Xenopus oocytes based on short homologous overlaps., Grzesiuk E., Nucleic Acids Res. February 11, 1987; 15 (3): 971-85.


pBR322 DNA inhibits simian virus 40 gene expression in Xenopus laevis oocytes., Michaeli T., Nucleic Acids Res. February 25, 1987; 15 (4): 1579-94.


Developmental and molecular analysis of Deformed; a homeotic gene controlling Drosophila head development., Regulski M., EMBO J. March 1, 1987; 6 (3): 767-77.


Action potential fatigue in single skeletal muscle fibres of Xenopus., Lännergren J., Acta Physiol Scand. March 1, 1987; 129 (3): 311-8.


The distribution of F-actin in cells isolated from vertebrate retinas., Vaughan DK., Exp Eye Res. March 1, 1987; 44 (3): 393-406.      


Cloning of nucleoplasmin from Xenopus laevis oocytes and analysis of its developmental expression., Bürglin TR., Genes Dev. March 1, 1987; 1 (1): 97-107.                


Import of frog prepropeptide GLa into microsomes requires ATP but does not involve docking protein or ribosomes., Schlenstedt G., EMBO J. March 1, 1987; 6 (3): 699-703.


Expression of Xenopus N-CAM RNA in ectoderm is an early response to neural induction., Kintner CR., Development. March 1, 1987; 99 (3): 311-25.                  


Neurogenesis in the vocalization pathway of Xenopus laevis., Gorlick DL., J Comp Neurol. March 22, 1987; 257 (4): 614-27.


Sequestration of iontophoretically injected calcium by living endothelial cells., Stolz B., Cell Calcium. April 1, 1987; 8 (2): 103-21.


Loss of functional sperm entry into Xenopus eggs after activation correlates with a reduction in surface adhesivity., Stewart-Savage J., Dev Biol. April 1, 1987; 120 (2): 434-46.


Intracellular pH and buffer power of type 1 and 2 fibres from skeletal muscle of Xenopus laevis., Curtin NA., Pflugers Arch. April 1, 1987; 408 (4): 386-9.


Induction of muscarinic acetylcholine, serotonin and substance P receptors in Xenopus oocytes injected with mRNA prepared from the small intestine of rats., Aoshima H., Dev Biol. April 1, 1987; 388 (1): 15-20.


Differential induction of hepatic estrogen receptor and vitellogenin gene transcription in Xenopus laevis., Riegel AT., Endocrinology. April 1, 1987; 120 (4): 1283-90.


Electron microscopic studies of giant nucleus-like structure formed by lambda DNA introduced into the cytoplasm of Xenopus laevis fertilized eggs and embryos., Shiokawa K., Cell Differ. April 1, 1987; 20 (4): 253-61.


DNAase I sensitivities in chromatin of the Xenopus laevis somatic and oocyte 5 S DNAs., Hoyle HD., Biochim Biophys Acta. April 29, 1987; 908 (3): 224-30.


Visual experience and the maturation of the ipsilateral visuotectal projection in Xenopus laevis., Keating MJ., Neuroscience. May 1, 1987; 21 (2): 519-27.


Thymocyte/stromal cell chimaerism in allothymus-grafted Xenopus: developmental studies using the X. borealis fluorescence marker., Horton JD., Development. May 1, 1987; 100 (1): 107-17.


A projection from the mesencephalic tegmentum to the nucleus isthmi in the frogs, Rana pipiens and Acris crepitans., Udin SB., Neuroscience. May 1, 1987; 21 (2): 631-7.


The Xenopus laevis estrogen receptor: sequence homology with human and avian receptors and identification of multiple estrogen receptor messenger ribonucleic acids., Weiler IJ., Mol Endocrinol. May 1, 1987; 1 (5): 355-62.


Localization of Xenopus homoeo-box gene transcripts during embryogenesis and in the adult nervous system., Carrasco AE., Dev Biol. May 1, 1987; 121 (1): 69-81.              


Monoclonal antibodies identify a group of nuclear pore complex glycoproteins., Snow CM., J Cell Biol. May 1, 1987; 104 (5): 1143-56.


A monoclonal antibody recognizes a human nuclear protein resembling Xenopus oocyte nucleoplasmin., Lord J., J Cell Sci. June 1, 1987; 87 ( Pt 5) 713-22.


Levels of microtubules during the meiotic maturation of the Xenopus oocyte., Jessus C., J Cell Sci. June 1, 1987; 87 ( Pt 5) 705-12.


Electron microscopic visualization of protein-DNA interactions at the estrogen responsive element and in the first intron of the Xenopus laevis vitellogenin gene., ten Heggeler-Bordier B., EMBO J. June 1, 1987; 6 (6): 1715-20.


Liver parenchymal cell proliferation during secondary induction with estradiol-17 beta in Xenopus., Spolski RJ., Dev Biol. June 1, 1987; 121 (2): 301-5.


Detection of nuclear lamin B epitopes in oocyte nuclei from mice, sea urchins, and clams using a human autoimmune serum., Maul GG., Dev Biol. June 1, 1987; 121 (2): 368-75.


Expression of functional cell-cell channels from cloned rat liver gap junction complementary DNA., Dahl G., Science. June 5, 1987; 236 (4806): 1290-3.


The development of the amphibian trochlear nucleus. An HRP study., Sonntag R., Neurosci Lett. June 15, 1987; 77 (2): 143-8.


Neurotensin receptors on the rat liver plasma membranes., Muraki K., Biochem Biophys Res Commun. June 30, 1987; 145 (3): 1071-9.


Transcript levels and translational control of hsp70 synthesis in Xenopus oocytes., Horrell A., Genes Dev. July 1, 1987; 1 (5): 433-44.


Autoantibodies in hypertrophic cardiomyopathy and their clinical significance., Gregor P., Eur Heart J. July 1, 1987; 8 (7): 773-8.


Nuclei act as independent and integrated units of replication in a Xenopus cell-free DNA replication system., Blow JJ., EMBO J. July 1, 1987; 6 (7): 1997-2002.


A processed gene coding for a sarcomeric actin in Xenopus laevis and Xenopus tropicalis., Stutz F., EMBO J. July 1, 1987; 6 (7): 1989-95.


Specific cell surface labels in the visual centers of Xenopus laevis tadpole identified using monoclonal antibodies., Takagi S., Dev Biol. July 1, 1987; 122 (1): 90-100.                    


A change of the hepatocyte population is responsible for the progressive increase of vitellogenin synthetic capacity at and after metamorphosis of Xenopus laevis., Kawahara A., Dev Biol. July 1, 1987; 122 (1): 139-45.


The processing and secretion of rat serum albumin by oocytes from Xenopus laevis., Foreman RC., FEBS Lett. July 13, 1987; 219 (1): 75-8.


Kinetic and electrophoretic analysis of transmethylation reactions in intact Xenopus laevis oocytes., O'Connor CM., J Biol Chem. July 25, 1987; 262 (21): 10404-11.


Regulation and subcellular distribution of a protein methyltransferase and its damaged aspartyl substrate sites in developing Xenopus oocytes., O'Connor CM., J Biol Chem. July 25, 1987; 262 (21): 10398-403.


Fates of the blastomeres of the 32-cell-stage Xenopus embryo., Moody SA., Dev Biol. August 1, 1987; 122 (2): 300-19.      


[Mechanism for acetylcholine receptor localization at nerve-muscle synapse]., Kuromi H., Nihon Yakurigaku Zasshi. August 1, 1987; 90 (2): 73-81.


Hormonal regulation of hepatic glycogenolysis in the toad, Xenopus laevis, is mediated by cyclic AMP and not Ca2+., Janssens PA., Gen Comp Endocrinol. August 1, 1987; 67 (2): 227-33.


Neuroactive substances in inner ear extracts., Sewell WF., J Neurosci. August 1, 1987; 7 (8): 2465-75.


Enhancement of mRNA nuclear transport by promoter elements., de la Peña P., Cell. August 14, 1987; 50 (4): 613-9.


Hormonal regulation of RNA synthesis and specific gene expression in Xenopus oviduct cells in primary culture., Marsh J., Mol Cell Endocrinol. September 1, 1987; 53 (1-2): 141-8.


The nuclear migration signal of Xenopus laevis nucleoplasmin., Bürglin TR., EMBO J. September 1, 1987; 6 (9): 2617-25.


Adenovirus E1A requires synthesis of a cellular protein to establish a stable transcription complex in injected Xenopus laevis oocytes., Richter JD., Mol Cell Biol. September 1, 1987; 7 (9): 3049-56.

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