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Summary Anatomy Item Literature (1011) Expression Attributions Wiki
XB-ANAT-4076

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Repulsive guidance of axons of spinal sensory neurons in Xenopus laevis embryos: roles of Contactin and notochord-derived chondroitin sulfate proteoglycans., Fujita N., Dev Growth Differ. September 1, 2005; 47 (7): 445-56.


Multiple signaling pathways regulate FGF-2-induced retinal ganglion cell neurite extension and growth cone guidance., Webber CA., Mol Cell Neurosci. September 1, 2005; 30 (1): 37-47.


Reduced U snRNP assembly causes motor axon degeneration in an animal model for spinal muscular atrophy., Winkler C., Genes Dev. October 1, 2005; 19 (19): 2320-30.  


SFRP1 regulates the growth of retinal ganglion cell axons through the Fz2 receptor., Rodriguez J., Nat Neurosci. October 1, 2005; 8 (10): 1301-9.


Agrin regulates growth cone turning of Xenopus spinal motoneurons., Xu X., Development. October 1, 2005; 132 (19): 4309-16.


BDNF stabilizes synapses and maintains the structural complexity of optic axons in vivo., Hu B., Development. October 1, 2005; 132 (19): 4285-98.


The Optimedin gene is a downstream target of Pax6., Grinchuk O., J Biol Chem. October 21, 2005; 280 (42): 35228-37.


Local calcium transients contribute to disappearance of pFAK, focal complex removal and deadhesion of neuronal growth cones and fibroblasts., Conklin MW., Dev Biol. November 1, 2005; 287 (1): 201-12.                


NGF and IL-1beta are co-localized in the developing nervous system of the frog, Xenopus laevis., Jelaso AM., Int J Dev Neurosci. November 1, 2005; 23 (7): 575-86.


The transcription factor Engrailed-2 guides retinal axons., Brunet I., Nature. November 3, 2005; 438 (7064): 94-8.


Adjacent pioneer commissural interneuron growth cones switch from contact avoidance to axon fasciculation after midline crossing., Moon MS., Dev Biol. December 15, 2005; 288 (2): 474-86.                  


ATP activates both receptor and sustentacular supporting cells in the olfactory epithelium of Xenopus laevis tadpoles., Czesnik D., Eur J Neurosci. January 1, 2006; 23 (1): 119-28.          


Mislocalized rhodopsin does not require activation to cause retinal degeneration and neurite outgrowth in Xenopus laevis., Tam BM., J Neurosci. January 4, 2006; 26 (1): 203-9.              


Signaling mechanisms underlying Slit2-induced collapse of Xenopus retinal growth cones., Piper M., Neuron. January 19, 2006; 49 (2): 215-28.


Rac1 and RhoA promote neurite outgrowth through formation and stabilization of growth cone point contacts., Woo S., J Neurosci. February 1, 2006; 26 (5): 1418-28.


The inner tegument promotes herpes simplex virus capsid motility along microtubules in vitro., Wolfstein A., Traffic. February 1, 2006; 7 (2): 227-37.


Quantitative evaluation of the mode of microtubule transport in Xenopus neurons., Kim T., Mol Cells. February 28, 2006; 21 (1): 76-81.


Role of X-Delta-2 in the early neural development of Xenopus laevis., Peres JN., Dev Dyn. March 1, 2006; 235 (3): 802-10.                                              


A role for fibronectin-leucine-rich transmembrane cell-surface proteins in homotypic cell adhesion., Karaulanov EE., EMBO Rep. March 1, 2006; 7 (3): 283-90.


Stabilization of axon branch dynamics by synaptic maturation., Ruthazer ES., J Neurosci. March 29, 2006; 26 (13): 3594-603.


Messages diffuse faster than messengers., Pando B., Proc Natl Acad Sci U S A. April 4, 2006; 103 (14): 5338-42.


Xenopus embryos lacking specific isoforms of the corepressor SMRT develop abnormal heads., Malartre M., Dev Biol. April 15, 2006; 292 (2): 333-43.                    


Aquaporin-11: a channel protein lacking apparent transport function expressed in brain., Gorelick DA., BMC Biochem. May 1, 2006; 7 14.              


Temporally and spatially coordinated roles for Rho, Rac, Cdc42 and their effectors in growth cone guidance by a physiological electric field., Rajnicek AM., J Cell Sci. May 1, 2006; 119 (Pt 9): 1723-35.


Growth cone steering by a physiological electric field requires dynamic microtubules, microfilaments and Rac-mediated filopodial asymmetry., Rajnicek AM., J Cell Sci. May 1, 2006; 119 (Pt 9): 1736-45.


Mitochondrial clustering at the vertebrate neuromuscular junction during presynaptic differentiation., Lee CW., J Neurobiol. May 1, 2006; 66 (6): 522-36.


Regeneration of descending projections in Xenopus laevis tadpole spinal cord demonstrated by retrograde double labeling., Gibbs KM., Dev Biol. May 9, 2006; 1088 (1): 68-72.


Ca2+ influx through mechanosensitive channels inhibits neurite outgrowth in opposition to other influx pathways and release from intracellular stores., Jacques-Fricke BT., J Neurosci. May 24, 2006; 26 (21): 5656-64.


[Molecular mechanism of axon guidance]., Goshima Y., Nihon Shinkei Seishin Yakurigaku Zasshi. June 1, 2006; 26 (3): 135-40.


Brain-derived neurotrophic factor in the brain of Xenopus laevis may act as a pituitary neurohormone together with mesotocin., Calle M., J Neuroendocrinol. June 1, 2006; 18 (6): 454-65.


Metazoan Scc4 homologs link sister chromatid cohesion to cell and axon migration guidance., Seitan VC., PLoS Biol. July 1, 2006; 4 (8): e242.                


BDNF increases synapse density in dendrites of developing tectal neurons in vivo., Sanchez AL., Development. July 1, 2006; 133 (13): 2477-86.                  


Bi-directional control of motor neuron dendrite remodeling by the calcium permeability of AMPA receptors., Jeong GB., Mol Cell Neurosci. July 1, 2006; 32 (3): 299-314.


Analysis of mouse EphA knockins and knockouts suggests that retinal axons programme target cells to form ordered retinotopic maps., Willshaw D., Development. July 1, 2006; 133 (14): 2705-17.  


Neurofilament content is correlated with branch length in developing collateral branches of Xenopus spinal cord neurons., Smith A., Neurosci Lett. August 7, 2006; 403 (3): 283-7.


AMPA receptors regulate experience-dependent dendritic arbor growth in vivo., Haas K., Proc Natl Acad Sci U S A. August 8, 2006; 103 (32): 12127-31.


Neogenin interacts with RGMa and netrin-1 to guide axons within the embryonic vertebrate forebrain., Wilson NH., Dev Biol. August 15, 2006; 296 (2): 485-98.                      


The endocrine-disrupting compound, nonylphenol, inhibits neurotrophin-dependent neurite outgrowth., Bevan CL., Endocrinology. September 1, 2006; 147 (9): 4192-204.


An essential role for beta-actin mRNA localization and translation in Ca2+-dependent growth cone guidance., Yao J., Nat Neurosci. October 1, 2006; 9 (10): 1265-73.


Asymmetrical beta-actin mRNA translation in growth cones mediates attractive turning to netrin-1., Leung KM., Nat Neurosci. October 1, 2006; 9 (10): 1247-56.


Focal adhesion kinase signaling at sites of integrin-mediated adhesion controls axon pathfinding., Robles E., Nat Neurosci. October 1, 2006; 9 (10): 1274-83.


Developmental and regional expression of NADPH-diaphorase/nitric oxide synthase in spinal cord neurons correlates with the emergence of limb motor networks in metamorphosing Xenopus laevis., Ramanathan S., Eur J Neurosci. October 1, 2006; 24 (7): 1907-22.                  


Involvement of p120 catenin in myopodial assembly and nerve-muscle synapse formation., Madhavan R., J Neurobiol. November 1, 2006; 66 (13): 1511-27.                


Formation of actin-ADF/cofilin rods transiently retards decline of mitochondrial potential and ATP in stressed neurons., Bernstein BW., Am J Physiol Cell Physiol. November 1, 2006; 291 (5): C828-39.


Neurotrophin 3 induces structural and functional modification of synapses through distinct molecular mechanisms., Je HS., J Cell Biol. December 18, 2006; 175 (6): 1029-42.                  


Spatial targeting of type II protein kinase A to filopodia mediates the regulation of growth cone guidance by cAMP., Han J., J Cell Biol. January 1, 2007; 176 (1): 101-11.                  


Expression and regulation of Xenopus CRMP-4 in the developing nervous system., Souopgui J., Int J Dev Biol. January 1, 2007; 51 (4): 339-43.        


Analysis of tubulin transport in nerve processes., Tsvetkov A., Methods Mol Med. January 1, 2007; 137 161-73.


Embryonic zebrafish neuronal growth is not affected by an applied electric field in vitro., Cormie P., Neurosci Lett. January 10, 2007; 411 (2): 128-32.


Neogenin and repulsive guidance molecule signaling in the central nervous system., Yamashita T., Curr Opin Neurobiol. February 1, 2007; 17 (1): 29-34.

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