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Summary Anatomy Item Literature (6695) Expression Attributions Wiki
XB-ANAT-177

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Anterior structural defects by misexpression of Xgbx-2 in early Xenopus embryos are associated with altered expression of cell adhesion molecules., King MW, King MW., Dev Dyn. August 1, 1998; 212 (4): 563-79.


Toxicity and Pathogenicity Testing of the Insect Pest Control Fungus Metarhizium anisopliae, Genthner FJ., Arch Environ Contam Toxicol. August 1, 1998; 35 (2): 317-24.


Development of transgenic Xenopus laevis with a high C-src gene expression., Takác M., Mol Reprod Dev. August 1, 1998; 50 (4): 410-9.


Cloning and expression of an alpha-2,8-polysialyltransferase (STX) from Xenopus laevis., Kudo M., Glycobiology. August 1, 1998; 8 (8): 771-7.


Effects of Zn2+ on wild and mutant neuronal alpha7 nicotinic receptors., Palma E., Proc Natl Acad Sci U S A. August 18, 1998; 95 (17): 10246-50.


beta-TrCP is a negative regulator of Wnt/beta-catenin signaling pathway and dorsal axis formation in Xenopus embryos., Marikawa Y., Mech Dev. September 1, 1998; 77 (1): 75-80.    


TCF-4 binds beta-catenin and is expressed in distinct regions of the embryonic brain and limbs., Cho EA., Mech Dev. September 1, 1998; 77 (1): 9-18.


The expression of XIF3 in undifferentiated anterior neuroectoderm, but not in primary neurons, is induced by the neuralizing agent noggin., Goldstone K., Int J Dev Biol. September 1, 1998; 42 (6): 757-62.          


Gene activation during early stages of lens induction in Xenopus., Zygar CA., Development. September 1, 1998; 125 (17): 3509-19.


From genes to behavior in the vestibular system., Baker R., Otolaryngol Head Neck Surg. September 1, 1998; 119 (3): 263-75.


Dopamine D2 receptor-mediated modulation of rod-cone coupling in the Xenopus retina., Krizaj D., J Comp Neurol. September 7, 1998; 398 (4): 529-38.


Expression and localization in the fish retina of a homologue of the Alzheimer's related PS1 gene., Archer S., Neuroreport. September 14, 1998; 9 (13): 3115-22.


In vivo video rate optical coherence tomography., Rollins A., Opt Express. September 14, 1998; 3 (6): 219-29.


Physical and functional interaction of murine and Xenopus Smad7 with bone morphogenetic protein receptors and transforming growth factor-beta receptors., Souchelnytskyi S., J Biol Chem. September 25, 1998; 273 (39): 25364-70.        


Cloning and expression of a P2y purinoceptor from the adult bovine corpus callosum., Deng G., Neurobiol Dis. October 1, 1998; 5 (4): 259-70.


Gene expression screening in Xenopus identifies molecular pathways, predicts gene function and provides a global view of embryonic patterning., Gawantka V., Mech Dev. October 1, 1998; 77 (2): 95-141.                                                            


Cloning and expression of two related connexins from the perch retina define a distinct subgroup of the connexin family., O'Brien J., J Neurosci. October 1, 1998; 18 (19): 7625-37.


A role for the fibroblast growth factor receptor in cell fate decisions in the developing vertebrate retina., McFarlane S., Development. October 1, 1998; 125 (20): 3967-75.


Molecular cloning of XNLRR-1, a Xenopus homolog of mouse neuronal leucine-rich repeat protein expressed in the developing Xenopus nervous system., Hayata T., Gene. October 9, 1998; 221 (1): 159-66.          


Chondroitin sulfates modulate axon guidance in embryonic Xenopus brain., Anderson RB., Dev Biol. October 15, 1998; 202 (2): 235-43.        


Circadian expression of tryptophan hydroxylase mRNA in the chicken retina., Chong NW., Brain Res Mol Brain Res. October 30, 1998; 61 (1-2): 243-50.


Complex history of a chromosomal paralogy region: insights from amphioxus aromatic amino acid hydroxylase genes and insulin-related genes., Patton SJ., Mol Biol Evol. November 1, 1998; 15 (11): 1373-80.


Expression and functions of FGF-3 in Xenopus development., Lombardo A., Int J Dev Biol. November 1, 1998; 42 (8): 1101-7.      


Differential expression of non-muscle myosin heavy chain genes during Xenopus embryogenesis., Bhatia-Dey N., Mech Dev. November 1, 1998; 78 (1-2): 33-6.


Programmed cell death during Xenopus development: a spatio-temporal analysis., Hensey C., Dev Biol. November 1, 1998; 203 (1): 36-48.              


The epithelial inward rectifier channel Kir7.1 displays unusual K+ permeation properties., Döring F., J Neurosci. November 1, 1998; 18 (21): 8625-36.


Molecular and pharmacological properties of GABA-rho subunits from white perch retina., Qian H., J Neurobiol. November 5, 1998; 37 (2): 305-20.


GATA-1 inhibits the formation of notochord and neural tissue in Xenopus embryo., Shibata K., Biochem Biophys Res Commun. November 9, 1998; 252 (1): 241-8.            


Retinoic acid X receptor in the diploblast, Tripedalia cystophora., Kostrouch Z., Proc Natl Acad Sci U S A. November 10, 1998; 95 (23): 13442-7.


Anteroposterior patterning and organogenesis of Xenopus laevis require a correct dose of germ cell nuclear factor (xGCNF)., David R., Mech Dev. December 1, 1998; 79 (1-2): 137-52.


Fourth module of Xenopus interphotoreceptor retinoid-binding protein: activity in retinoid transfer between the retinal pigment epithelium and rod photoreceptors., Gonzalez-Fernandez F., Curr Eye Res. December 1, 1998; 17 (12): 1150-7.


Voltage-dependent gating of single wild-type and S4 mutant KAT1 inward rectifier potassium channels., Zei PC., J Gen Physiol. December 1, 1998; 112 (6): 679-713.                                                              


Math5 encodes a murine basic helix-loop-helix transcription factor expressed during early stages of retinal neurogenesis., Brown NL., Development. December 1, 1998; 125 (23): 4821-33.    


Functional and biochemical interactions of Wnts with FrzA, a secreted Wnt antagonist., Xu Q., Development. December 1, 1998; 125 (23): 4767-76.  


Cloning and tissue distribution of novel splice variants of the rat GABAB receptor., Isomoto S., Biochem Biophys Res Commun. December 9, 1998; 253 (1): 10-5.


Follistatin and noggin are excluded from the zebrafish organizer., Bauer H., Dev Biol. December 15, 1998; 204 (2): 488-507.


Arginine to glutamine substitutions in the fourth module of Xenopus interphotoreceptor retinoid-binding protein., Baer CA., Mol Vis. December 30, 1998; 4 30.


Anteroposterior patterning by mutual repression of orthodenticle and caudal-type transcription factors., Isaacs HV., Evol Dev. January 1, 1999; 1 (3): 143-52.


Immune response to "self" lens in Xenopus laevis enucleated during larval life., Enomoto T., Dev Immunol. January 1, 1999; 7 (1): 23-32.


Spatial pattern of constitutive and heat shock-induced expression of the small heat shock protein gene family, Hsp30, in Xenopus laevis tailbud embryos., Lang L., Dev Genet. January 1, 1999; 25 (4): 365-74.                  


Distinct functions for Aldh1 and Raldh2 in the control of ligand production for embryonic retinoid signaling pathways., Haselbeck RJ., Dev Genet. January 1, 1999; 25 (4): 353-64.


[Morphogenesis of Mauthner neurons of Xenopus laevis tadpoles following early unilateral eye enucleation]., Bezgina EN., Morfologiia. January 1, 1999; 115 (3): 49-52.


Constitutive and stress-inducible expression of the endoplasmic reticulum heat shock protein 70 gene family member, immunoglobulin-binding protein (BiP), during Xenopus laevis early development., Miskovic D., Dev Genet. January 1, 1999; 25 (1): 31-9.          


Effects of choline and other nicotinic agonists on the tectum of juvenile and adult Xenopus frogs: a patch-clamp study., Titmus MJ., Neuroscience. January 1, 1999; 91 (2): 753-69.


Differential nuclear localization of ER1 protein during embryonic development in Xenopus laevis., Luchman HA., Mech Dev. January 1, 1999; 80 (1): 111-4.          


The RNA-binding protein gene, hermes, is expressed at high levels in the developing heart., Gerber WV., Mech Dev. January 1, 1999; 80 (1): 77-86.    


Characterization of the Ets-type protein ER81 in Xenopus embryos., Chen Y, Chen Y., Mech Dev. January 1, 1999; 80 (1): 67-76.                    


The Xenopus Ets transcription factor XER81 is a target of the FGF signaling pathway., Münchberg SR., Mech Dev. January 1, 1999; 80 (1): 53-65.            


Xenopus brain factor-2 controls mesoderm, forebrain and neural crest development., Gómez-Skarmeta JL., Mech Dev. January 1, 1999; 80 (1): 15-27.              


Neural induction. A bird's eye view., Streit A., Trends Genet. January 1, 1999; 15 (1): 20-4.

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