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Summary Anatomy Item Literature (1946) Expression Attributions Wiki
XB-ANAT-487

Papers associated with neuron (and dcc)

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A New Technical Approach for Cross-species Examination of Neuronal Wiring and Adult Neuron-glia Functions., Edwards-Faret G., Neuroscience. January 1, 2023; 508 40-51.


Receptor-specific interactome as a hub for rapid cue-induced selective translation in axons., Koppers M., Elife. November 20, 2019; 8                       


An intrinsic compartmentalization code for peripheral membrane proteins in photoreceptor neurons., Maza NA., J Cell Biol. November 4, 2019; 218 (11): 3753-3772.                      


ESCRT-II controls retinal axon growth by regulating DCC receptor levels and local protein synthesis., Konopacki FA., Open Biol. April 1, 2016; 6 (4): 150218.                  


Netrin-1 directs dendritic growth and connectivity of vertebrate central neurons in vivo., Nagel AN., Neural Dev. June 10, 2015; 10 14.                          


Netrin-1 promotes excitatory synaptogenesis between cortical neurons by initiating synapse assembly., Goldman JS., J Neurosci. October 30, 2013; 33 (44): 17278-89.


Dynamic responses of Xenopus retinal ganglion cell axon growth cones to netrin-1 as they innervate their in vivo target., Shirkey NJ., Dev Neurobiol. April 1, 2012; 72 (4): 628-48.                  


Spatial and temporal second messenger codes for growth cone turning., Nicol X., Proc Natl Acad Sci U S A. August 16, 2011; 108 (33): 13776-81.    


Peptidyl-prolyl isomerase FKBP52 controls chemotropic guidance of neuronal growth cones via regulation of TRPC1 channel opening., Shim S., Neuron. November 25, 2009; 64 (4): 471-83.


Netrin participates in the development of retinotectal synaptic connectivity by modulating axon arborization and synapse formation in the developing brain., Manitt C., J Neurosci. September 9, 2009; 29 (36): 11065-77.              


DSCAM is a netrin receptor that collaborates with DCC in mediating turning responses to netrin-1., Ly A., Cell. June 27, 2008; 133 (7): 1241-54.


Independent functions of Slit-Robo repulsion and Netrin-Frazzled attraction regulate axon crossing at the midline in Drosophila., Garbe DS., J Neurosci. March 28, 2007; 27 (13): 3584-92.


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.                  


Activation of FAK and Src are receptor-proximal events required for netrin signaling., Li W., Nat Neurosci. November 1, 2004; 7 (11): 1213-21.


Cyclic AMP/GMP-dependent modulation of Ca2+ channels sets the polarity of nerve growth-cone turning., Nishiyama M., Nature. June 26, 2003; 423 (6943): 990-5.


Metalloproteases and guidance of retinal axons in the developing visual system., Webber CA., J Neurosci. September 15, 2002; 22 (18): 8091-100.                  


Netrin-1-mediated axon outgrowth requires deleted in colorectal cancer-dependent MAPK activation., Forcet C., Nature. May 23, 2002; 417 (6887): 443-7.


Interaction of Myc-associated zinc finger protein with DCC, the product of a tumor-suppressor gene, during the neural differentiation of P19 EC cells., Ugai H., Biochem Biophys Res Commun. September 7, 2001; 286 (5): 1087-97.


Binding of DCC by netrin-1 to mediate axon guidance independent of adenosine A2B receptor activation., Stein E., Science. March 9, 2001; 291 (5510): 1976-82.


RETRACTED: Hierarchical organization of guidance receptors: silencing of netrin attraction by slit through a Robo/DCC receptor complex., Stein E., Science. March 9, 2001; 291 (5510): 1928-38.


DCC plays a role in navigation of forebrain axons across the ventral midbrain commissure in embryonic xenopus., Anderson RB., Dev Biol. January 15, 2000; 217 (2): 244-53.          


A ligand-gated association between cytoplasmic domains of UNC5 and DCC family receptors converts netrin-induced growth cone attraction to repulsion., Hong K., Cell. June 25, 1999; 97 (7): 927-41.


Turning of retinal growth cones in a netrin-1 gradient mediated by the netrin receptor DCC., de la Torre JR., Neuron. December 1, 1997; 19 (6): 1211-24.

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