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

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Three-dimensional visualization of the route of protein import: the role of nuclear pore complex substructures., Rutherford SA., Exp Cell Res. April 10, 1997; 232 (1): 146-60.


Cloning and functional expression of a brain peptide/histidine transporter., Yamashita T., J Biol Chem. April 11, 1997; 272 (15): 10205-11.


Degradation of retinoblastoma protein in tumor necrosis factor- and CD95-induced cell death., Tan X., J Biol Chem. April 11, 1997; 272 (15): 9613-6.


A 100 amino acid region in the GABA rho 1 subunit confers robust homo-oligomeric expression., Hackam AS., Neuroreport. April 14, 1997; 8 (6): 1425-30.


Excitatory amino acid transporter 5, a retinal glutamate transporter coupled to a chloride conductance., Arriza JL., Proc Natl Acad Sci U S A. April 15, 1997; 94 (8): 4155-60.


Expression of mutated Nck SH2/SH3 adaptor respecifies mesodermal cell fate in Xenopus laevis development., Tanaka M., Proc Natl Acad Sci U S A. April 29, 1997; 94 (9): 4493-8.        


Inductive capacity of living eye tissues from adult frogs., Lopashov GV., Differentiation. May 1, 1997; 61 (4): 237-42.        


A role for Xenopus Gli-type zinc finger proteins in the early embryonic patterning of mesoderm and neuroectoderm., Marine JC., Mech Dev. May 1, 1997; 63 (2): 211-25.              


Xwnt-2b is a novel axis-inducing Xenopus Wnt, which is expressed in embryonic brain., Landesman Y., Mech Dev. May 1, 1997; 63 (2): 199-209.            


Lens induction by Pax-6 in Xenopus laevis., Altmann CR., Dev Biol. May 1, 1997; 185 (1): 119-23.          


Activation of the Wnt signaling pathway: a molecular mechanism for lithium action., Hedgepeth CM., Dev Biol. May 1, 1997; 185 (1): 82-91.          


A vegetally localized T-box transcription factor in Xenopus eggs specifies mesoderm and endoderm and is essential for embryonic mesoderm formation., Horb ME., Development. May 1, 1997; 124 (9): 1689-98.                    


Intrinsic voltage dependence and Ca2+ regulation of mslo large conductance Ca-activated K+ channels., Cui J., J Gen Physiol. May 1, 1997; 109 (5): 647-73.                                      


Identification of XLerk, an Eph family ligand regulated during mesoderm induction and neurogenesis in Xenopus laevis., Jones TL., Oncogene. May 8, 1997; 14 (18): 2159-66.


Activation of Met tyrosine kinase by hepatocyte growth factor is essential for internal organogenesis in Xenopus embryo., Aoki S., Biochem Biophys Res Commun. May 8, 1997; 234 (1): 8-14.        


The N-terminal domain of human GABA receptor rho1 subunits contains signals for homooligomeric and heterooligomeric interaction., Hackam AS., J Biol Chem. May 23, 1997; 272 (21): 13750-7.


Essential role of heparan sulfates in axon navigation and targeting in the developing visual system., Walz A., Development. June 1, 1997; 124 (12): 2421-30.        


The role of cyclin-dependent kinase 5 and a novel regulatory subunit in regulating muscle differentiation and patterning., Philpott A., Genes Dev. June 1, 1997; 11 (11): 1409-21.                  


Xwnt-8 and lithium can act upon either dorsal mesodermal or neurectodermal cells to cause a loss of forebrain in Xenopus embryos., Fredieu JR., Dev Biol. June 1, 1997; 186 (1): 100-14.                


Analysis of competence and of Brachyury autoinduction by use of hormone-inducible Xbra., Tada M., Development. June 1, 1997; 124 (11): 2225-34.                      


Xenopus LIM motif-containing protein kinase, Xlimk1, is expressed in the developing head structure of the embryo., Takahashi T., Dev Dyn. June 1, 1997; 209 (2): 196-205.              


Dependence of photoreceptor glutamate release on a dihydropyridine-sensitive calcium channel., Schmitz Y., Neuroscience. June 1, 1997; 78 (4): 1209-16.


The Rx homeobox gene is essential for vertebrate eye development., Mathers PH., Nature. June 5, 1997; 387 (6633): 603-7.


Isolation and expression of homeobox genes from the embryonic chicken eye., Dhawan RR., Mol Vis. June 11, 1997; 3 7.


Water and glycerol permeabilities of aquaporins 1-5 and MIP determined quantitatively by expression of epitope-tagged constructs in Xenopus oocytes., Yang B., J Biol Chem. June 27, 1997; 272 (26): 16140-6.


Hedgehog and patched gene expression in adult ocular tissues., Takabatake T., FEBS Lett. June 30, 1997; 410 (2-3): 485-9.


Nuclear envelope assembly in Xenopus extracts visualized by scanning EM reveals a transport-dependent 'envelope smoothing' event., Wiese C., J Cell Sci. July 1, 1997; 110 ( Pt 13) 1489-502.


Lens regeneration in larval Xenopus laevis: experimental analysis of the decline in the regenerative capacity during development., Filoni S., Dev Biol. July 1, 1997; 187 (1): 13-24.


Cloning and developmental expression of 5-HT1A receptor gene in Xenopus laevis., Marracci S., Brain Res Mol Brain Res. July 1, 1997; 47 (1-2): 67-77.          


Xmsx-1 modifies mesodermal tissue pattern along dorsoventral axis in Xenopus laevis embryo., Maeda R., Development. July 1, 1997; 124 (13): 2553-60.                  


Gli1 is a target of Sonic hedgehog that induces ventral neural tube development., Lee J., Development. July 1, 1997; 124 (13): 2537-52.                  


Both high- and low voltage-activated calcium currents contribute to the light-evoked responses of luminosity horizontal cells in the Xenopus retina., Akopian A., Dev Biol. July 11, 1997; 762 (1-2): 121-30.


Dorsal-ventral patterning during neural induction in Xenopus: assessment of spinal cord regionalization with xHB9, a marker for the motor neuron region., Saha MS., Dev Biol. July 15, 1997; 187 (2): 209-23.            


Ets-1 and Ets-2 proto-oncogenes exhibit differential and restricted expression patterns during Xenopus laevis oogenesis and embryogenesis., Meyer D., Int J Dev Biol. August 1, 1997; 41 (4): 607-20.                                      


Basic fibroblast growth factor (FGF-2) induced transdifferentiation of retinal pigment epithelium: generation of retinal neurons and glia., Sakaguchi DS., Dev Dyn. August 1, 1997; 209 (4): 387-98.          


Characterization of single inward rectifier potassium channels from embryonic Xenopus laevis myocytes., Chauhan-Patel R., J Membr Biol. August 1, 1997; 158 (3): 265-74.


Characterization of focal adhesion assembly in XR1 glial cells., Folsom TD., Glia. August 1, 1997; 20 (4): 348-64.


The EphA4 and EphB1 receptor tyrosine kinases and ephrin-B2 ligand regulate targeted migration of branchial neural crest cells., Smith A., Curr Biol. August 1, 1997; 7 (8): 561-70.            


Nuclear pore complex structure in birds., Goldberg MW, Goldberg MW., J Struct Biol. August 1, 1997; 119 (3): 284-94.


Synaptic transmission in the pineal eye of young Xenopus laevis tadpoles: a role for NMDA and non-NMDA glutamate and non-glutaminergic receptors?, Jamieson D., J Comp Physiol A. August 1, 1997; 181 (2): 177-86.


A retinoid-binding lipocalin, Xlcpl1, relevant for embryonic pattern formation is expressed in the nervous system of Xenopus laevis., Lepperdinger G., Dev Genes Evol. August 1, 1997; 207 (3): 177-185.  


[Significance of the surface membrane of the embryonic eye for lens induction]., Zemchikhina VN., Dokl Akad Nauk. September 1, 1997; 356 (3): 409-11.


Comparison of the water transporting properties of MIP and AQP1., Chandy G., J Membr Biol. September 1, 1997; 159 (1): 29-39.


Macromolecular substructure in nuclear pore complexes by in-lens field-emission scanning electron microscopy., Allen TD., Scanning. September 1, 1997; 19 (6): 403-10.


Neovascularization of the Xenopus embryo., Cleaver O., Dev Dyn. September 1, 1997; 210 (1): 66-77.        


Cell viability and probe-cell membrane interactions of XR1 glial cells imaged by atomic force microscopy., Schaus SS., Biophys J. September 1, 1997; 73 (3): 1205-14.


Allosteric gating of a large conductance Ca-activated K+ channel., Cox DH., J Gen Physiol. September 1, 1997; 110 (3): 257-81.                            


Isolation of a cDNA encoding a photoreceptor cell-specific actin-bundling protein: retinal fascin., Saishin Y., FEBS Lett. September 8, 1997; 414 (2): 381-6.


Brain-derived neurotrophic factor/neurotrophin-4 receptor TrkB is localized on ganglion cells and dopaminergic amacrine cells in the vertebrate retina., Cellerino A., J Comp Neurol. September 15, 1997; 386 (1): 149-60.


Calx, a Na-Ca exchanger gene of Drosophila melanogaster., Schwarz EM., Proc Natl Acad Sci U S A. September 16, 1997; 94 (19): 10249-54.

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