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Summary Anatomy Item Literature (11049) Expression Attributions Wiki
XB-ANAT-717

Papers associated with anatomical direction

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Expression of truncated Sek-1 receptor tyrosine kinase disrupts the segmental restriction of gene expression in the Xenopus and zebrafish hindbrain., Xu Q., Development. December 1, 1995; 121 (12): 4005-16.    


Specific modulation of ectodermal cell fates in Xenopus embryos by glycogen synthase kinase., Itoh K., Development. December 1, 1995; 121 (12): 3979-88.              


Cloning and characterization of a rat H+/peptide cotransporter mediating absorption of beta-lactam antibiotics in the intestine and kidney., Saito H., J Pharmacol Exp Ther. December 1, 1995; 275 (3): 1631-7.


Disruption of BMP signals in embryonic Xenopus ectoderm leads to direct neural induction., Hawley SH., Genes Dev. December 1, 1995; 9 (23): 2923-35.                


Evolutionarily conserved alternative pre-mRNA splicing regulates structure and function of the spectrin-actin binding domain of erythroid protein 4.1., Winardi R., Blood. December 1, 1995; 86 (11): 4315-22.


Molecular characteristics of Na(+)-coupled glucose transporters in adult and embryonic rat kidney., You G., J Biol Chem. December 8, 1995; 270 (49): 29365-71.


Anuran dorsal column nucleus: organization, immunohistochemical characterization, and fiber connections in Rana perezi and Xenopus laevis., Muñoz A., J Comp Neurol. December 11, 1995; 363 (2): 197-220.


Antagonizing the Spemann organizer: role of the homeobox gene Xvent-1., Gawantka V., EMBO J. December 15, 1995; 14 (24): 6268-79.


Molecular mechanisms of Spemann's organizer formation: conserved growth factor synergy between Xenopus and mouse., Watabe T., Genes Dev. December 15, 1995; 9 (24): 3038-50.


Competition between noggin and bone morphogenetic protein 4 activities may regulate dorsalization during Xenopus development., Re'em-Kalma Y., Proc Natl Acad Sci U S A. December 19, 1995; 92 (26): 12141-5.


Cloning and functional expression of rat CLC-5, a chloride channel related to kidney disease., Steinmeyer K., J Biol Chem. December 29, 1995; 270 (52): 31172-7.


A model for human situs determination., Wilson GN., Laterality. January 1, 1996; 1 (4): 315-29.


Gravitational effects on the rearrangement of cytoplasmic components during axial formation in amphibian development., Phillips CR., Adv Space Res. January 1, 1996; 17 (6-7): 225-35.


Immunodetection of cytoskeletal structures and the Eg5 motor protein on deep-etch replicas of Xenopus egg cortices isolated during the cortical rotation., Chang P., Biol Cell. January 1, 1996; 88 (3): 89-98.


Neuroanatomical and histochemical evidence for the presence of common lateral line and inner ear efferents and of efferents to the basilar papilla in a frog, Xenopus laevis., Hellmann B., Brain Behav Evol. January 1, 1996; 47 (4): 185-94.


The role of an agrin-growth factor interaction in ACh receptor clustering., Daggett DF., Mol Cell Neurosci. January 1, 1996; 8 (4): 272-85.


[Molecular and functional diversity of NA,K-ATPase and renal H,K-ATPases]., Jaisser F., Nephrologie. January 1, 1996; 17 (7): 401-8.


Modulation of GABAA receptor function by G protein-coupled 5-HT2C receptors., Huidobro-Toro JP., Neuropharmacology. January 1, 1996; 35 (9-10): 1355-63.


A functional comparison of the antagonists bicuculline and picrotoxin at recombinant GABAA receptors., Krishek BJ., Neuropharmacology. January 1, 1996; 35 (9-10): 1289-98.


The aquaporin family of water channels in kidney., Agre P., Nephrologie. January 1, 1996; 17 (7): 409-15.


Larval development of tectal efferents and afferents in Xenopus laevis (Amphibia Anura)., Chahoud BH., J Hirnforsch. January 1, 1996; 37 (4): 519-35.


Regulation of dorsal-ventral axis formation in Xenopus by intercellular and intracellular signalling., Kimelman D., Biochem Soc Symp. January 1, 1996; 62 13-23.


The role of fibroblast growth factors in early Xenopus development., Slack JM., Biochem Soc Symp. January 1, 1996; 62 1-12.


Xenopus poly (A) binding protein maternal RNA is localized during oogenesis and associated with large complexes in blastula., Schroeder KE., Dev Genet. January 1, 1996; 19 (3): 268-76.          


Activin-like signal activates dorsal-specific maternal RNA between 8- and 16-cell stages of Xenopus., Hainski AM., Dev Genet. January 1, 1996; 19 (3): 210-21.


Identification of new localized RNAs in the Xenopus oocyte by differential display PCR., Hudson JW., Dev Genet. January 1, 1996; 19 (3): 190-8.                


The molecules of proximal tubular transport: insights from electrophysiology., Busch AE., Nephron. January 1, 1996; 72 (1): 1-8.


Molecular cloning, chromosomal mapping, and characterization of the human cardiac-specific homeobox gene hCsx., Turbay D., Mol Med. January 1, 1996; 2 (1): 86-96.


Activation of the cardiac alpha-actin promoter depends upon serum response factor, Tinman homologue, Nkx-2.5, and intact serum response elements., Chen CY., Dev Genet. January 1, 1996; 19 (2): 119-30.


Function and dysfunction of renal transport molecules: lessons from electrophysiology., Waldegger S., Kidney Blood Press Res. January 1, 1996; 19 (3-4): 155-9.


Microfilament-membrane interactions in Xenopus myocytes., Samuelsson SJ., Cell Motil Cytoskeleton. January 1, 1996; 35 (1): 68-80.


Innervation patterns of the lateral line stitches of the clawed frog, Xenopus laevis, and their reorganization during metamorphosis., Mohr C., Brain Behav Evol. January 1, 1996; 48 (2): 55-69.


Full-length agrin isoform activities and binding site distributions on cultured Xenopus muscle cells., Daggett DF., Mol Cell Neurosci. January 1, 1996; 7 (1): 75-88.


Dominant negative expression of a cytoplasmically deleted mutant of XB/U-cadherin disturbs mesoderm migration during gastrulation in Xenopus laevis., Kühl M., Mech Dev. January 1, 1996; 54 (1): 71-82.


Transcriptional hierarchy in Xenopus embryogenesis: HNF4 a maternal factor involved in the developmental activation of the gene encoding the tissue specific transcription factor HNF1 alpha (LFB1)., Holewa B., Mech Dev. January 1, 1996; 54 (1): 45-57.            


The Xenopus homologue of hepatocyte growth factor-like protein is specifically expressed in the presumptive neural plate during gastrulation., Aberger F., Mech Dev. January 1, 1996; 54 (1): 23-37.                    


Coexpression and stimulation of parathyroid hormone receptor positively regulates slowly activating IsK channels expressed in Xenopus oocytes., Waldegger S., Kidney Int. January 1, 1996; 49 (1): 112-6.


Endogenous retinoids in the zebrafish embryo and adult., Costaridis P., Dev Dyn. January 1, 1996; 205 (1): 41-51.


Homologous genetic recombination in Xenopus: mechanism and implications for gene manipulation., Carroll D., Prog Nucleic Acid Res Mol Biol. January 1, 1996; 54 101-25.


Development of the olfactory epithelium and vomeronasal organ in the Japanese reddish frog, Rana japonica., Taniguchi K., J Vet Med Sci. January 1, 1996; 58 (1): 7-15.


BMP-like signals are required after the midblastula transition for blood cell development., Zhang C., Dev Genet. January 1, 1996; 18 (3): 267-78.            


cDNA cloning, sequencing and chromosomal assignment of the gene for mouse complement factor I (C3b/C4b inactivator): identification of a species specific divergent segment in factor I., Minta JO., Mol Immunol. January 1, 1996; 33 (1): 101-12.


A novel P1 purinoceptor activates an outward K+ current in follicular oocytes of Xenopus laevis., King BF., J Pharmacol Exp Ther. January 1, 1996; 276 (1): 93-100.


Retinoic acid establishes ventral retinal characteristics., Hyatt GA., Development. January 1, 1996; 122 (1): 195-204.


Early regionalized expression of a novel Xenopus fibroblast growth factor receptor in neuroepithelium., Riou JF., Biochem Biophys Res Commun. January 5, 1996; 218 (1): 198-204.          


Developmental expression of a neuron-specific beta-tubulin in frog (Xenopus laevis): a marker for growing axons during the embryonic period., Moody SA., J Comp Neurol. January 8, 1996; 364 (2): 219-30.            


Analysis of Wnt/Engrailed signaling in Xenopus embryos using biolistics., Koster JG., Dev Biol. January 10, 1996; 173 (1): 348-52.  


Analysis of the binding of Xenopus transcription factor IIIA to oocyte 5 S rRNA and to the 5 S rRNA gene., Rawlings SL., J Biol Chem. January 12, 1996; 271 (2): 868-77.


Selected cysteine point mutations confer mercurial sensitivity to the mercurial-insensitive water channel MIWC/AQP-4., Shi LB., Biochemistry. January 16, 1996; 35 (2): 538-44.


Involvement of Ras/Raf/AP-1 in BMP-4 signaling during Xenopus embryonic development., Xu RH., Proc Natl Acad Sci U S A. January 23, 1996; 93 (2): 834-8.          

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