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Summary Anatomy Item Literature (14672) Expression Attributions Wiki
XB-ANAT-213

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GABA and glycine modify the balance of rod and cone inputs to horizontal cells in the Xenopus retina., Witkovsky P., Exp Biol. January 1, 1987; 47 (1): 13-22.


Center-surround organization of Xenopus horizontal cells and its modification by gamma-aminobutyric acid and strontium., Stone S., Exp Biol. January 1, 1987; 47 (1): 1-12.


Differentiation of neural crest cells of Xenopus laevis in clonal culture., Akira E., Pigment Cell Res. January 1, 1987; 1 (1): 28-36.


Development of presynaptic specializations induced by basic polypeptide-coated latex beads in spinal cord cultures., Peng HB., Synapse. January 1, 1987; 1 (1): 10-9.


The distribution of motoneurons supplying hind limb muscles in the clawed toad, Xenopus laevis., Hulshof JB., Acta Morphol Neerl Scand. January 1, 1987; 25 (1): 1-16.


The trochlear nerve of amphibians and its relation to proprioceptive fibers: a qualitative and quantitative HRP study., Fritzsch B., Anat Embryol (Berl). January 1, 1987; 177 (2): 105-14.


The histone H1(0)/H5 variant and terminal differentiation of cells during development of Xenopus laevis., Moorman AF., Differentiation. January 1, 1987; 35 (2): 100-7.            


Segregation of mitochondria in the cytoplasm of Xenopus vitellogenic oocytes., Mignotte F., Biol Cell. January 1, 1987; 60 (2): 97-102.


Primary muscle cells cultivated in medium conditioned by spinal cord cells show changes in messenger RNA as detected by translation in ovo accompanied by synthesis of extracellular matrix components., Schmid DW., Biol Cell. January 1, 1987; 59 (1): 55-60.


Biosynthesis of the neurofilament heavy subunit in Xenopus oocytes microinjected with rat brain poly(A)+ RNA., Cross D., Mol Biol Rep. January 1, 1987; 12 (4): 265-71.


Nucleoplasmin cDNA sequence reveals polyglutamic acid tracts and a cluster of sequences homologous to putative nuclear localization signals., Dingwall C., EMBO J. January 1, 1987; 6 (1): 69-74.


The use of Xenopus oocytes for the study of ion channels., Dascal N., CRC Crit Rev Biochem. January 1, 1987; 22 (4): 317-87.


Expression of rat brain excitatory amino acid receptors in Xenopus oocytes., Lampe RA., Adv Exp Med Biol. January 1, 1987; 221 201-10.


Changes in axonal transport and glial proteins during optic nerve regeneration in Xenopus laevis., Szaro BG., Curr Top Dev Biol. January 1, 1987; 21 217-54.


Structure and function of sodium channel., Noda M., J Recept Res. January 1, 1987; 7 (1-4): 467-97.


Neurotensin and acetylcholine evoke common responses in frog oocytes injected with rat brain messenger ribonucleic acid., Hirono C., J Physiol. January 1, 1987; 382 523-35.


Patch clamp characterization of sodium channels expressed from rat brain cDNA., Stühmer W., Eur Biophys J. January 1, 1987; 14 (3): 131-8.


The capped U6 small nuclear RNA is transcribed by RNA polymerase III., Reddy R., J Biol Chem. January 5, 1987; 262 (1): 75-81.


Disassembly of the nucleus in mitotic extracts: membrane vesicularization, lamin disassembly, and chromosome condensation are independent processes., Newport J., Cell. January 30, 1987; 48 (2): 219-30.


Inhibition of in vitro nuclear transport by a lectin that binds to nuclear pores., Finlay DR., J Cell Biol. February 1, 1987; 104 (2): 189-200.


Fates of the blastomeres of the 16-cell stage Xenopus embryo., Moody SA., Dev Biol. February 1, 1987; 119 (2): 560-78.        


Neural cell adhesion molecule expression in Xenopus embryos., Balak K., Dev Biol. February 1, 1987; 119 (2): 540-50.              


Signal processing technique to extract neuronal activity from noise., Chung SH., J Neurosci Methods. February 1, 1987; 19 (2): 125-39.


The midblastula cell cycle transition and the character of mesoderm in u.v.-induced nonaxial Xenopus development., Cooke J., Development. February 1, 1987; 99 (2): 197-210.              


Fungal small nuclear ribonucleoproteins share properties with plant and vertebrate U-snRNPs., Tollervey D., EMBO J. February 1, 1987; 6 (2): 469-76.


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.


Oscillatory chloride current evoked by temperature jumps during muscarinic and serotonergic activation in Xenopus oocyte., Miledi R., J Physiol. February 1, 1987; 383 213-29.


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 new type of glutamate receptor linked to inositol phospholipid metabolism., Sugiyama H., Nature. February 5, 1987; 325 (6104): 531-3.


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


Fibre organization and reorganization in the retinotectal projection of Xenopus., Taylor JS., Development. March 1, 1987; 99 (3): 393-410.


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.                


Infection of a poikilothermic cell line (XL-2) with eastern equine encephalitis and western equine encephalitis viruses., Morier L., J Med Virol. March 1, 1987; 21 (3): 277-81.


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.                  


Ca channels induced in Xenopus oocytes by rat brain mRNA., Leonard JP., J Neurosci. March 1, 1987; 7 (3): 875-81.


Xenopus oocytes injected with rat uterine RNA express very slowly activating potassium currents., Boyle MB., Science. March 6, 1987; 235 (4793): 1221-4.


Melatonin and rhythmic photoreceptor metabolism: melatonin-induced cone elongation is blocked at high light intensity., Pierce ME., Dev Biol. March 10, 1987; 405 (2): 400-4.    


Single-unit study of lateral line cells in the optic tectum of Xenopus laevis: evidence for bimodal lateral line/optic units., Lowe DA., J Comp Neurol. March 15, 1987; 257 (3): 396-404.


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


Fate map for the 32-cell stage of Xenopus laevis., Dale L., Development. April 1, 1987; 99 (4): 527-51.                


Expression of the Ca2+-binding protein, parvalbumin, during embryonic development of the frog, Xenopus laevis., Kay BK., J Cell Biol. April 1, 1987; 104 (4): 841-7.              


Induction of meiotic maturation in Xenopus oocytes by 12-O-tetradecanoylphorbol 13-acetate., Stith BJ., Exp Cell Res. April 1, 1987; 169 (2): 514-23.


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.


Rat brain 5-HT1C receptors are encoded by a 5-6 kbase mRNA size class and are functionally expressed in injected Xenopus oocytes., Lübbert H., J Neurosci. April 1, 1987; 7 (4): 1159-65.


Cell-type-specific expression of epidermal cytokeratin genes during gastrulation of Xenopus laevis., Jamrich M., Genes Dev. April 1, 1987; 1 (2): 124-32.                


GABA receptors induced in Xenopus oocytes by chick brain mRNA: evaluation of TBPS as a use-dependent channel-blocker., Van Renterghem C., Dev Biol. April 1, 1987; 388 (1): 21-31.


Effect of tetraploidy on dendritic branching in neurons and glial cells of the frog, Xenopus laevis., Szaro BG., J Comp Neurol. April 8, 1987; 258 (2): 304-16.


Membrane turnover in rod photoreceptors: ensheathment and phagocytosis of outer segment distal tips by pseudopodia of the retinal pigment epithelium., Matsumoto B., Proc R Soc Lond B Biol Sci. April 22, 1987; 230 (1260): 339-54.


The distribution of GABA and glycine response in the mouse brain using Xenopus oocytes., Asanuma A., Neurosci Lett. April 23, 1987; 76 (1): 87-90.

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