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Summary Anatomy Item Literature (12667) Expression Attributions Wiki
XB-ANAT-175

Papers associated with nervous system (and tff3.7)

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Gene expression analysis of developing cell groups in the pretectal region of Xenopus laevis., Morona R., J Comp Neurol. March 1, 2017; 525 (4): 715-752.                                            


SPARC triggers a cell-autonomous program of synapse elimination., López-Murcia FJ., Proc Natl Acad Sci U S A. October 27, 2015; 112 (43): 13366-71.              


Abelson phosphorylation of CLASP2 modulates its association with microtubules and actin., Engel U., Cytoskeleton (Hoboken). March 1, 2014; 71 (3): 195-209.                


Myb promotes centriole amplification and later steps of the multiciliogenesis program., Tan FE., Development. October 1, 2013; 140 (20): 4277-86.                


Retinoic acid-activated Ndrg1a represses Wnt/β-catenin signaling to allow Xenopus pancreas, oesophagus, stomach, and duodenum specification., Zhang T., PLoS One. May 15, 2013; 8 (5): e65058.                  


Pattern of calbindin-D28k and calretinin immunoreactivity in the brain of Xenopus laevis during embryonic and larval development., Morona R., J Comp Neurol. January 1, 2013; 521 (1): 79-108.                  


Cloning and functional characterization of novel variants and tissue-specific expression of alternative amino and carboxyl termini of products of slc4a10., Liu Y., PLoS One. January 1, 2013; 8 (2): e55974.                      


Cloning and characterization of a P2X receptor expressed in the central nervous system of Lymnaea stagnalis., Bavan S., PLoS One. January 1, 2012; 7 (11): e50487.                


pTransgenesis: a cross-species, modular transgenesis resource., Love NR., Development. December 1, 2011; 138 (24): 5451-8.              


Ontogenetic distribution of the transcription factor nkx2.2 in the developing forebrain of Xenopus laevis., Domínguez L., Front Neuroanat. March 2, 2011; 5 11.            


Identification and characterization of alternative promoters of zebrafish Rtn-4/Nogo genes in cultured cells and zebrafish embryos., Chen YC., Nucleic Acids Res. August 1, 2010; 38 (14): 4635-50.              


A synthetic snRNA m3G-CAP enhances nuclear delivery of exogenous proteins and nucleic acids., Moreno PM., Nucleic Acids Res. April 1, 2009; 37 (6): 1925-35.                


Evidences for tangential migrations in Xenopus telencephalon: developmental patterns and cell tracking experiments., Moreno N., Dev Neurobiol. March 1, 2008; 68 (4): 504-20.                  


The adaptor molecule FADD from Xenopus laevis demonstrates evolutionary conservation of its pro-apoptotic activity., Sakamaki K., Genes Cells. December 1, 2004; 9 (12): 1249-64.                


Phosphorylation of DCC by Fyn mediates Netrin-1 signaling in growth cone guidance., Meriane M., J Cell Biol. November 22, 2004; 167 (4): 687-98.                  


Cell type specific expression of secretory TFF peptides: colocalization with mucins and synthesis in the brain., Hoffmann W., Int Rev Cytol. January 1, 2002; 213 147-81.


Block of Kcnk3 by protons. Evidence that 2-P-domain potassium channel subunits function as homodimers., Lopes CM., J Biol Chem. July 6, 2001; 276 (27): 24449-52.


Patterns of calretinin, calbindin, and tyrosine-hydroxylase expression are consistent with the prosomeric map of the frog diencephalon., Milán FJ., J Comp Neurol. March 27, 2000; 419 (1): 96-121.                  


mini spindles: A gene encoding a conserved microtubule-associated protein required for the integrity of the mitotic spindle in Drosophila., Cullen CF., J Cell Biol. September 6, 1999; 146 (5): 1005-18.                  


Interactions between multiple phosphorylation sites in the inactivation particle of a K+ channel. Insights into the molecular mechanism of protein kinase C action., Beck EJ., J Gen Physiol. July 1, 1998; 112 (1): 71-84.            


Mitogen-activated protein kinase and cyclin B/Cdc2 phosphorylate Xenopus nuclear factor 7 (xnf7) in extracts from mature oocytes. Implications for regulation of xnf7 subcellular localization., El-Hodiri HM., J Biol Chem. August 15, 1997; 272 (33): 20463-70.


Single-channel kinetics, inactivation, and spatial distribution of inositol trisphosphate (IP3) receptors in Xenopus oocyte nucleus., Mak DO., J Gen Physiol. May 1, 1997; 109 (5): 571-87.                          


Regulation of acetylcholine release by presynaptic nicotinic receptors at developing neuromuscular synapses., Fu WM., Mol Pharmacol. March 1, 1997; 51 (3): 390-8.


Selectivity and activity of adenine dinucleotides at recombinant P2X2 and P2Y1 purinoceptors., Pintor J., Br J Pharmacol. November 1, 1996; 119 (5): 1006-12.


P2 purinoceptors in rat cortical astrocytes: expression, calcium-imaging and signalling studies., King BF., Neuroscience. October 1, 1996; 74 (4): 1187-96.


P2Y1 purinergic receptors in sensory neurons: contribution to touch-induced impulse generation., Nakamura F., Proc Natl Acad Sci U S A. September 17, 1996; 93 (19): 10465-70.


A novel G protein-coupled P2 purinoceptor (P2Y3) activated preferentially by nucleoside diphosphates., Webb TE., Mol Pharmacol. August 1, 1996; 50 (2): 258-65.


Growth cone neurotransmitter receptor activation modulates electric field-guided nerve growth., Erskine L., Dev Biol. October 1, 1995; 171 (2): 330-9.


Cloning of rat and mouse P2Y purinoceptors., Tokuyama Y., Biochem Biophys Res Commun. June 6, 1995; 211 (1): 211-8.


Potentiation by ATP of the postsynaptic acetylcholine response at developing neuromuscular synapses in Xenopus cell cultures., Fu WM., J Physiol. June 15, 1994; 477 ( Pt 3) 449-58.


Transient expression of the recombinant chick brain P2y1 purinoceptor and localization of the corresponding mRNA., Webb TE., Cell Mol Biol (Noisy-le-grand). May 1, 1994; 40 (3): 437-42.


Potentiation by endogenously released ATP of spontaneous transmitter secretion at developing neuromuscular synapses in Xenopus cell cultures., Fu WM., Br J Pharmacol. March 1, 1994; 111 (3): 880-6.


The LIM domain-containing homeo box gene Xlim-1 is expressed specifically in the organizer region of Xenopus gastrula embryos., Taira M., Genes Dev. March 1, 1992; 6 (3): 356-66.              


Distinct distribution of vimentin and cytokeratin in Xenopus oocytes and early embryos., Torpey NP., J Cell Sci. January 1, 1992; 101 ( Pt 1) 151-60.                


Ins(1,4,5)P3 formation and fluctuating chloride current response induced by external ATP in Xenopus oocytes injected with embryonic guinea pig brain mRNA., Fournier F., FEBS Lett. December 17, 1990; 277 (1-2): 205-8.

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