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Summary Anatomy Item Literature (2435) Expression Attributions Wiki
XB-ANAT-63

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Transgenic Xenopus laevis strain expressing cre recombinase in muscle cells., Waldner C., Dev Dyn. August 1, 2006; 235 (8): 2220-8.          


ACE2 orthologues in non-mammalian vertebrates (Danio, Gallus, Fugu, Tetraodon and Xenopus)., Chou CF., Gene. August 1, 2006; 377 46-55.          


Heading in a new direction: implications of the revised fate map for understanding Xenopus laevis development., Lane MC., Dev Biol. August 1, 2006; 296 (1): 12-28.                


Functional and clinical characterization of a mutation in KCNJ2 associated with Andersen-Tawil syndrome., Lu CW., J Med Genet. August 1, 2006; 43 (8): 653-9.


A novel gene, Ami is expressed in vascular tissue in Xenopus laevis., Inui M., Gene Expr Patterns. August 1, 2006; 6 (6): 613-9.        


FGF-4 signaling is involved in mir-206 expression in developing somites of chicken embryos., Sweetman D., Dev Dyn. August 1, 2006; 235 (8): 2185-91.  


KCNE3 is an inhibitory subunit of the Kv4.3 potassium channel., Lundby A., Biochem Biophys Res Commun. August 4, 2006; 346 (3): 958-67.


Blockade of HERG human K+ channel and IKr of guinea pig cardiomyocytes by prochlorperazine., Kim MD., Eur J Pharmacol. August 21, 2006; 544 (1-3): 82-90.


Mode shifts in the voltage gating of the mouse and human HCN2 and HCN4 channels., Elinder F., J Physiol. September 1, 2006; 575 (Pt 2): 417-31.


Distribution and functional characterization of equilibrative nucleoside transporter-4, a novel cardiac adenosine transporter activated at acidic pH., Barnes K., Circ Res. September 1, 2006; 99 (5): 510-9.


Wild-type and mutant HCN channels in a tandem biological-electronic cardiac pacemaker., Bucchi A., Circulation. September 5, 2006; 114 (10): 992-9.


SALL4 is directly activated by TCF/LEF in the canonical Wnt signaling pathway., Böhm J., Biochem Biophys Res Commun. September 29, 2006; 348 (3): 898-907.


Expression analysis of IGFBP-rP10, IGFBP-like and Mig30 in early Xenopus development., Kuerner KM., Dev Dyn. October 1, 2006; 235 (10): 2861-7.                                          


Xapelin and Xmsr are required for cardiovascular development in Xenopus laevis., Inui M., Dev Biol. October 1, 2006; 298 (1): 188-200.                


Biophysical characterization of the new human ether-a-go-go-related gene channel opener NS3623 [N-(4-bromo-2-(1H-tetrazol-5-yl)-phenyl)-N'-(3'-trifluoromethylphenyl)urea]., Hansen RS., Mol Pharmacol. October 1, 2006; 70 (4): 1319-29.


Subtilisin-like proprotein convertase activity is necessary for left-right axis determination in Xenopus neurula embryos., Toyoizumi R., Dev Genes Evol. October 1, 2006; 216 (10): 607-22.


Avian stanniocalcin-2 is expressed in developing striated muscle and joints., Mittapalli VR., Anat Embryol (Berl). October 1, 2006; 211 (5): 519-23.


Characterization of myeloid cells derived from the anterior ventral mesoderm in the Xenopus laevis embryo., Tashiro S., Dev Growth Differ. October 1, 2006; 48 (8): 499-512.                    


A role for GATA factors in Xenopus gastrulation movements., Fletcher G., Mech Dev. October 1, 2006; 123 (10): 730-45.    


Reduction of XNkx2-10 expression leads to anterior defects and malformation of the embryonic heart., Allen BG., Mech Dev. October 1, 2006; 123 (10): 719-29.          


Xtn3 is a developmentally expressed cardiac and skeletal muscle-specific novex-3 titin isoform., Brown DD., Gene Expr Patterns. October 1, 2006; 6 (8): 913-8.          


Spatial and temporal expression of the Grainyhead-like transcription factor family during murine development., Auden A., Gene Expr Patterns. October 1, 2006; 6 (8): 964-70.          


Enhanced sensitivity and stability in two-color in situ hybridization by means of a novel chromagenic substrate combination., Hurtado R., Dev Dyn. October 1, 2006; 235 (10): 2811-6.          


Embryonic heart induction., Foley AC., Ann N Y Acad Sci. October 1, 2006; 1080 85-96.


Mutant analysis of the Shal (Kv4) voltage-gated fast transient K+ channel in Caenorhabditis elegans., Fawcett GL., J Biol Chem. October 13, 2006; 281 (41): 30725-35.


New roles for a key glycine and its neighboring residue in potassium channel gating., Rosenhouse-Dantsker A., Biophys J. October 15, 2006; 91 (8): 2860-73.


Differential expression of tropomyosin during segmental heart development in Mexican axolotl., Zajdel RW., J Cell Biochem. October 15, 2006; 99 (3): 952-65.


Ancillary subunits and stimulation frequency determine the potency of chromanol 293B block of the KCNQ1 potassium channel., Bett GC., J Physiol. November 1, 2006; 576 (Pt 3): 755-67.


The Kruppel-like transcription factor KLF13 is a novel regulator of heart development., Lavallée G., EMBO J. November 1, 2006; 25 (21): 5201-13.  


Intrinsic chiral properties of the Xenopus egg cortex: an early indicator of left-right asymmetry?, Danilchik MV., Development. November 1, 2006; 133 (22): 4517-26.                        


Inhibition of G protein-activated inwardly rectifying K+ channels by the antidepressant paroxetine., Kobayashi T., J Pharmacol Sci. November 1, 2006; 102 (3): 278-87.


RGS3 and RGS4 differentially associate with G protein-coupled receptor-Kir3 channel signaling complexes revealing two modes of RGS modulation. Precoupling and collision coupling., Jaén C., J Biol Chem. November 10, 2006; 281 (45): 34549-60.


ADMP2 is essential for primitive blood and heart development in Xenopus., Kumano G., Dev Biol. November 15, 2006; 299 (2): 411-23.                


The immunoglobulin-like domain is involved in interaction of Neuregulin1 with ErbB., Eto K., Biochem Biophys Res Commun. November 17, 2006; 350 (2): 263-71.        


Skipping of Exon 1 in the KCNQ1 gene causes Jervell and Lange-Nielsen syndrome., Zehelein J., J Biol Chem. November 17, 2006; 281 (46): 35397-403.


Expression and promoter analysis of Xenopus DMRT1 and functional characterization of the transactivation property of its protein., Yoshimoto S., Dev Growth Differ. December 1, 2006; 48 (9): 597-603.        


KCNE2 is colocalized with KCNQ1 and KCNE1 in cardiac myocytes and may function as a negative modulator of I(Ks) current amplitude in the heart., Wu DM., Heart Rhythm. December 1, 2006; 3 (12): 1469-80.


Identification and developmental expression of Xenopus hmga2beta., Benini F., Biochem Biophys Res Commun. December 15, 2006; 351 (2): 392-7.        


Developmental origin of a bipotential myocardial and smooth muscle cell precursor in the mammalian heart., Wu SM., Cell. December 15, 2006; 127 (6): 1137-50.


Pacemaking by HCN channels requires interaction with phosphoinositides., Zolles G., Neuron. December 21, 2006; 52 (6): 1027-36.


Solution structure and functional characterization of jingzhaotoxin-XI: a novel gating modifier of both potassium and sodium channels., Liao Z., Biochemistry. December 26, 2006; 45 (51): 15591-600.


Lung specific developmental expression of the Xenopus laevis surfactant protein C and B genes., Hyatt BA., Gene Expr Patterns. January 1, 2007; 7 (1-2): 8-14.      


The effect of high extracellular potassium on IKr inhibition by anti-arrhythmic agents., Lin C., Cardiology. January 1, 2007; 108 (1): 18-27.


Comparison of ACE activity in amphibian tissues: Rana esculenta and Xenopus laevis., Quassinti L., Comp Biochem Physiol A Mol Integr Physiol. January 1, 2007; 146 (1): 119-23.


Craniofacial, skeletal, and cardiac defects associated with altered embryonic murine Zic3 expression following targeted insertion of a PGK-NEO cassette., Zhu L., Front Biosci. January 1, 2007; 12 1680-90.


Expression of Bmp ligands and receptors in the developing Xenopus retina., Hocking JC., Int J Dev Biol. January 1, 2007; 51 (2): 161-5.        


Structural basis for modulation of Kv4 K+ channels by auxiliary KChIP subunits., Wang H., Nat Neurosci. January 1, 2007; 10 (1): 32-9.


Aromatase, steroid-5-alpha-reductase type 1 and type 2 mRNA expression in gonads and in brain of Xenopus laevis during ontogeny., Urbatzka R., Gen Comp Endocrinol. January 1, 2007; 153 (1-3): 280-8.            


Myoskeletin, a factor related to Myocardin, is expressed in somites and required for hypaxial muscle formation in Xenopus., Zhao H., Int J Dev Biol. January 1, 2007; 51 (4): 315-20.              


Differential expression of two TEF-1 (TEAD) genes during Xenopus laevis development and in response to inducing factors., Naye F., Int J Dev Biol. January 1, 2007; 51 (8): 745-52.                  

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