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Summary Anatomy Item Literature (14960) Expression Attributions Wiki
XB-ANAT-468

Papers associated with whole organism

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Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorphosis., Levi G., Development. April 1, 1990; 108 (4): 681-92.                


Cloning and expression of the delayed-rectifier IsK channel from neonatal rat heart and diethylstilbestrol-primed rat uterus., Folander K., Proc Natl Acad Sci U S A. April 1, 1990; 87 (8): 2975-9.


The Xenopus MyoD gene: an unlocalised maternal mRNA predates lineage-restricted expression in the early embryo., Harvey RP., Development. April 1, 1990; 108 (4): 669-80.


Regulation of Na+ channels in frog lung epithelium: a target tissue for aldosterone action., Fischer H., Pflugers Arch. April 1, 1990; 416 (1-2): 62-7.


Plasmid and bacteriophage lambda-DNA show differential replication characteristics following injection into fertilized eggs of Xenopus laevis: dependence on period and site of injection., Hofmann A., Cell Differ Dev. April 1, 1990; 30 (1): 77-85.


RTA, a candidate G protein-coupled receptor: cloning, sequencing, and tissue distribution., Ross PC., Proc Natl Acad Sci U S A. April 1, 1990; 87 (8): 3052-6.


Neural expression of the Xenopus homeobox gene Xhox3: evidence for a patterning neural signal that spreads through the ectoderm., Ruiz i Altaba A., Development. April 1, 1990; 108 (4): 595-604.


Vaults. II. Ribonucleoprotein structures are highly conserved among higher and lower eukaryotes., Kedersha NL., J Cell Biol. April 1, 1990; 110 (4): 895-901.


Two distinct Xenopus genes with homology to MyoD1 are expressed before somite formation in early embryogenesis., Scales JB., Mol Cell Biol. April 1, 1990; 10 (4): 1516-24.


Spreading of trypsinized cells: cytoskeletal dynamics and energy requirements., Bereiter-Hahn J., J Cell Sci. May 1, 1990; 96 ( Pt 1) 171-88.


Evolution of the MHC: antigenicity and unusual tissue distribution of Xenopus (frog) class II molecules., Flajnik MF., Mol Immunol. May 1, 1990; 27 (5): 451-62.


Fully differentiated Xenopus eye fragments regenerate to form pattern-duplicated visuo-tectal projections., Wunsh LM., J Exp Zool. May 1, 1990; 254 (2): 192-201.


Characterization and expression of a Xenopus ras during oogenesis and development., Andéol Y., Dev Biol. May 1, 1990; 139 (1): 24-34.


Conservation of a cytoplasmic carboxy-terminal domain of connexin 43, a gap junctional protein, in mammal heart and brain., el Aoumari A., J Membr Biol. May 1, 1990; 115 (3): 229-40.


Optical measurement of conduction in single demyelinated axons., Shrager P., J Gen Physiol. May 1, 1990; 95 (5): 867-89.


Selenocysteine tRNA[Ser]Sec gene is ubiquitous within the animal kingdom., Lee BJ., Mol Cell Biol. May 1, 1990; 10 (5): 1940-9.


The Xenopus XIHbox 6 homeo protein, a marker of posterior neural induction, is expressed in proliferating neurons., Wright CV., Development. May 1, 1990; 109 (1): 225-34.                


Enhanced c-myc gene expression during forelimb regenerative outgrowth in the young Xenopus laevis., Géraudie J., Proc Natl Acad Sci U S A. May 1, 1990; 87 (10): 3797-801.        


Rat brain expresses a heterogeneous family of calcium channels., Snutch TP., Proc Natl Acad Sci U S A. May 1, 1990; 87 (9): 3391-5.


Olfactory neurons express a unique glycosylated form of the neural cell adhesion molecule (N-CAM)., Key B., J Cell Biol. May 1, 1990; 110 (5): 1729-43.                  


Organization of hindbrain segments in the zebrafish embryo., Trevarrow B., Neuron. May 1, 1990; 4 (5): 669-79.


Hensen's node, but not other biological signallers, can induce supernumerary digits in the developing chick limb bud., Stocker KM., Rouxs Arch Dev Biol. May 1, 1990; 198 (7): 371-381.


Morphological evidence for a monosynaptic connection between cerebellar Purkinje cells and vestibulospinal tract neurons in the larval clawed toad, Xenopus laevis., van der Linden JA., Neurosci Lett. May 4, 1990; 112 (2-3): 121-6.


Metabolism of the biologically active inositol phosphates Ins(1,4,5)P3 and Ins(1,3,4,5)P4 by ovarian follicles of Xenopus laevis., McIntosh RP., Biochem J. May 15, 1990; 268 (1): 141-5.


Fibroblast growth factor during mesoderm induction in the early chick embryo., Mitrani E., Development. June 1, 1990; 109 (2): 387-93.


The anterior extent of dorsal development of the Xenopus embryonic axis depends on the quantity of organizer in the late blastula., Stewart RM., Development. June 1, 1990; 109 (2): 363-72.


A delayed rectifier potassium current in Xenopus oocytes., Lu L., Biophys J. June 1, 1990; 57 (6): 1117-23.


Determination of the sensitive stages for gonadal sex-reversal in Xenopus laevis tadpoles., Villalpando I., Int J Dev Biol. June 1, 1990; 34 (2): 281-5.


Cloning and expression of cDNA and genomic clones encoding three delayed rectifier potassium channels in rat brain., Swanson R., Neuron. June 1, 1990; 4 (6): 929-39.


Molecular biology of mammalian amino acid receptors., Dingledine R., FASEB J. June 1, 1990; 4 (9): 2636-45.


An abundant and ubiquitous homo-oligomeric ring-shaped ATPase particle related to the putative vesicle fusion proteins Sec18p and NSF., Peters JM., EMBO J. June 1, 1990; 9 (6): 1757-67.


Characterisation of xenopsin immunoreactivity derived from pepsinised human skin and possible mechanism of in vivo generation., Eedy DJ., Regul Pept. June 1, 1990; 29 (1): 13-21.


A protein homologous to the Torpedo postsynaptic 58K protein is present at the myotendinous junction., Chen Q., J Cell Biol. June 1, 1990; 110 (6): 2061-71.


Mouse Hox-3.4: homeobox sequence and embryonic expression patterns compared with other members of the Hox gene network., Gaunt SJ., Development. June 1, 1990; 109 (2): 329-39.


A murine even-skipped homologue, Evx 1, is expressed during early embryogenesis and neurogenesis in a biphasic manner., Bastian H., EMBO J. June 1, 1990; 9 (6): 1839-52.


A developmentally regulated, nervous system-specific gene in Xenopus encodes a putative RNA-binding protein., Richter K., New Biol. June 1, 1990; 2 (6): 556-65.


Changes in kinetics of acetylcholine receptor channels after initial expression in Xenopus myocyte culture., Rohrbough J., J Physiol. June 1, 1990; 425 245-69.


Acetylcholine receptor channels in Xenopus myocyte culture; brief openings, brief closures and slow desensitization., Kidokoro Y., J Physiol. June 1, 1990; 425 227-44.


Neuropeptide Y- and substance P-like immunoreactive amacrine cells in the retina of the developing Xenopus laevis., Hiscock J., Brain Res Dev Brain Res. June 1, 1990; 54 (1): 105-13.


The 5'-flanking sequence of the loach oocyte 5S rRNA gene contains a signal for effective transcription., Felgenhauer P., Gene. June 15, 1990; 90 (2): 243-8.


Characterization and functional expression of a rat genomic DNA clone encoding a lymphocyte potassium channel., Douglass J., J Immunol. June 15, 1990; 144 (12): 4841-50.


Identification of a potent Xenopus mesoderm-inducing factor as a homologue of activin A., Smith JC., Nature. June 21, 1990; 345 (6277): 729-31.


Alteration of potassium channel gating: molecular analysis of the Drosophila Sh5 mutation., Gautam M., Neuron. July 1, 1990; 5 (1): 67-73.


The influence of AChR clustering stimuli on the formation and maintenance of AChR clusters induced by polycation-coated beads in Xenopus muscle cells., Rochlin MW., Dev Biol. July 1, 1990; 140 (1): 27-40.


Poly(A) metabolism and polysomal recruitment of maternal mRNAs during early Xenopus development., Paris J., Dev Biol. July 1, 1990; 140 (1): 221-4.


Tissue-specific trans-activation of the rabbit beta-globin promoter in Xenopus oocytes., Rungger D., Differentiation. July 1, 1990; 44 (1): 8-17.


Active Na+ transport across Xenopus lung alveolar epithelium., Kim KJ., Respir Physiol. July 1, 1990; 81 (1): 29-39.


Developmental and thyroid hormone-dependent regulation of pancreatic genes in Xenopus laevis., Shi YB, Shi YB., Genes Dev. July 1, 1990; 4 (7): 1107-13.                


Characterization of a maternal type VI collagen in Xenopus embryos suggests a role for collagen in gastrulation., Otte AP., J Cell Biol. July 1, 1990; 111 (1): 271-8.            


Morphology of the pars intermedia and the melanophore-stimulating cells in Xenopus laevis in relation to background adaptation., de Rijk EP., Gen Comp Endocrinol. July 1, 1990; 79 (1): 74-82.

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