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Summary Anatomy Item Literature (6783) Expression Attributions Wiki
XB-ANAT-730

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Lens regeneration in Xenopus is not a mere repeat of lens development, with respect to crystallin gene expression., Mizuno N., Differentiation. March 1, 1999; 64 (3): 143-9.          


The putative melatonin receptor antagonist GR128107 is a partial agonist on Xenopus laevis melanophores., Teh MT., Br J Pharmacol. March 1, 1999; 126 (5): 1237-45.


Modulation of desensitization at glutamate receptors in isolated crucian carp horizontal cells by concanavalin A, cyclothiazide, aniracetam and PEPA., Shen Y., Neuroscience. March 1, 1999; 89 (3): 979-90.


Maternal transcripts of mitotic checkpoint gene, Xbub3, are accumulated in the animal blastomeres of Xenopus early embryo., Goto T., DNA Cell Biol. March 1, 1999; 18 (3): 227-34.


Hyaluronan synthase expression in bovine eyes., Usui T., Invest Ophthalmol Vis Sci. March 1, 1999; 40 (3): 563-7.


Neuronal differentiation and patterning in Xenopus: the role of cdk5 and a novel activator xp35.2., Philpott A., Dev Biol. March 1, 1999; 207 (1): 119-32.                      


Molecular characterization and developmentally regulated expression of Xenopus lamina-associated polypeptide 2 (XLAP2)., Lang C., J Cell Sci. March 1, 1999; 112 ( Pt 5) 749-59.                


Expression of retinoic acid 4-hydroxylase (CYP26) during mouse and Xenopus laevis embryogenesis., de Roos K., Mech Dev. April 1, 1999; 82 (1-2): 205-11.    


A new secreted protein that binds to Wnt proteins and inhibits their activities., Hsieh JC., Nature. April 1, 1999; 398 (6726): 431-6.    


Interphotoreceptor retinoid-binding protein (IRBP) is rapidly cleared from the Xenopus interphotoreceptor matrix., Cunningham LL., Exp Eye Res. April 1, 1999; 68 (4): 399-410.              


Activation of the endothelin receptor inhibits the G protein-coupled inwardly rectifying potassium channel by a phospholipase A2-mediated mechanism., Rogalski SL., J Neurochem. April 1, 1999; 72 (4): 1409-16.


Tbx5 is essential for heart development., Horb ME., Development. April 1, 1999; 126 (8): 1739-51.              


A developmental pathway controlling outgrowth of the Xenopus tail bud., Beck CW., Development. April 1, 1999; 126 (8): 1611-20.                


Cloning and characterization of a secreted frizzled-related protein that is expressed by the retinal pigment epithelium., Chang JT., Hum Mol Genet. April 1, 1999; 8 (4): 575-83.


derrière: a TGF-beta family member required for posterior development in Xenopus., Sun BI., Development. April 1, 1999; 126 (7): 1467-82.                    


Calcium-mediated structural changes of native nuclear pore complexes monitored by time-lapse atomic force microscopy., Stoffler D., J Mol Biol. April 9, 1999; 287 (4): 741-52.


Regulation of DNA binding activity and nuclear transport of B-Myb in Xenopus oocytes., Humbert-Lan G., J Biol Chem. April 9, 1999; 274 (15): 10293-300.                


Identification of two Smad4 proteins in Xenopus. Their common and distinct properties., Masuyama N., J Biol Chem. April 23, 1999; 274 (17): 12163-70.                


Cloning of a new mouse two-P domain channel subunit and a human homologue with a unique pore structure., Salinas M., J Biol Chem. April 23, 1999; 274 (17): 11751-60.


Dishevelled: at the crossroads of divergent intracellular signaling pathways., Boutros M., Mech Dev. May 1, 1999; 83 (1-2): 27-37.  


Expression of the Vax family homeobox genes suggests multiple roles in eye development., Ohsaki K., Genes Cells. May 1, 1999; 4 (5): 267-76.


Expression of the medaka (Oryzias latipes) Ol-Rx3 paired-like gene in two diencephalic derivatives, the eye and the hypothalamus., Deschet K., Mech Dev. May 1, 1999; 83 (1-2): 179-82.


A family of mammalian Na+-dependent L-ascorbic acid transporters., Tsukaguchi H., Nature. May 6, 1999; 399 (6731): 70-5.


Molecular cloning and characterization of a new multispecific organic anion transporter from rat brain., Kusuhara H., J Biol Chem. May 7, 1999; 274 (19): 13675-80.


Elucidating the origins of the vascular system: a fate map of the vascular endothelial and red blood cell lineages in Xenopus laevis., Mills KR., Dev Biol. May 15, 1999; 209 (2): 352-68.                


beta-Trcp couples beta-catenin phosphorylation-degradation and regulates Xenopus axis formation., Liu C., Proc Natl Acad Sci U S A. May 25, 1999; 96 (11): 6273-8.            


Immediate upstream sequence of arrestin directs rod-specific expression in Xenopus., Mani SS., J Biol Chem. May 28, 1999; 274 (22): 15590-7.              


Xenopus elav-like genes are differentially expressed during neurogenesis., Perron M., Mech Dev. June 1, 1999; 84 (1-2): 139-42.    


Xenopus nodal-related signaling is essential for mesendodermal patterning during early embryogenesis., Osada SI., Development. June 1, 1999; 126 (14): 3229-40.                


XCtBP is a XTcf-3 co-repressor with roles throughout Xenopus development., Brannon M., Development. June 1, 1999; 126 (14): 3159-70.                  


Alternative splicing and embryonic expression of the Xenopus mad4 bHLH gene., Newman CS., Dev Dyn. June 1, 1999; 215 (2): 170-8.            


Mutations in the homeodomain of the human SIX3 gene cause holoprosencephaly., Wallis DE., Nat Genet. June 1, 1999; 22 (2): 196-8.


Opening mechanism of a cyclic nucleotide-gated channel based on analysis of single channels locked in each liganded state., Ruiz M., J Gen Physiol. June 1, 1999; 113 (6): 873-95.                          


Functional characteristics of skate connexin35, a member of the gamma subfamily of connexins expressed in the vertebrate retina., White TW., Eur J Neurosci. June 1, 1999; 11 (6): 1883-90.


Role of Xrx1 in Xenopus eye and anterior brain development., Andreazzoli M., Development. June 1, 1999; 126 (11): 2451-60.            


Amphibian embryos as a model system for organ engineering: in vitro induction and rescue of the heart anlage., Grunz H., Int J Dev Biol. July 1, 1999; 43 (4): 361-4.        


Misexpression of cNSCL1 disrupts retinal development., Li CM., Mol Cell Neurosci. July 1, 1999; 14 (1): 17-27.


Cloning and expression of mouse Cadherin-7, a type-II cadherin isolated from the developing eye., Faulkner-Jones BE., Mol Cell Neurosci. July 1, 1999; 14 (1): 1-16.


Identification of chick rax/rx genes with overlapping patterns of expression during early eye and brain development., Ohuchi H., Mech Dev. July 1, 1999; 85 (1-2): 193-5.


Antagonist activity of DWnt-4 and wingless in the Drosophila embryonic ventral ectoderm and in heterologous Xenopus assays., Gieseler K., Mech Dev. July 1, 1999; 85 (1-2): 123-31.    


Functional anatomy of the photoreceptor and second-order cell mosaics in the retina of Xenopus laevis., Wilhelm M., Cell Tissue Res. July 1, 1999; 297 (1): 35-46.


Conserved and divergent expression patterns of the proteolipid protein gene family in the amphibian central nervous system., Yoshida M., J Neurosci Res. July 1, 1999; 57 (1): 13-22.


Retinoic acid biosynthetic enzyme ALDH1 localizes in a subset of retinoid-dependent tissues during xenopus development., Ang HL., Dev Dyn. July 1, 1999; 215 (3): 264-72.


Analysis of chicken Wnt-13 expression demonstrates coincidence with cell division in the developing eye and is consistent with a role in induction., Jasoni C., Dev Dyn. July 1, 1999; 215 (3): 215-24.


Endothelial nitric oxide synthase (eNOS) is localized to Müller cells in all vertebrate retinas., Haverkamp S., Vision Res. July 1, 1999; 39 (14): 2299-303.


Regulation of lens fiber cell differentiation by transcription factor c-Maf., Kawauchi S., J Biol Chem. July 2, 1999; 274 (27): 19254-60.


Diurnal rhythms of tryptophan hydroxylase activity in Xenopus laevis retina: opposing phases in photoreceptors and inner retinal neurons., Valenciano AI., Neuroreport. July 13, 1999; 10 (10): 2131-5.


cDNA cloning of a stage-specific gene expressed during HCG-induced spermatogenesis in the Japanese eel., Miura C., Dev Growth Differ. August 1, 1999; 41 (4): 463-71.  


A calcium-binding motif in SPARC/osteonectin inhibits chordomesoderm cell migration during Xenopus laevis gastrulation: evidence of counter-adhesive activity in vivo., Huynh MH., Dev Growth Differ. August 1, 1999; 41 (4): 407-18.          


Two novel Xenopus frizzled genes expressed in developing heart and brain., Wheeler GN., Mech Dev. August 1, 1999; 86 (1-2): 203-7.    

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