Milton P. Charlton

Affiliations: 
University of Toronto, Toronto, ON, Canada 
Area:
synaptic transmission
Google:
"Milton Charlton"
Mean distance: 14.35 (cluster 6)
 
SNBCP
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Publications

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Barszczyk A, Sun HS, Quan Y, et al. (2015) Differential roles of the mevalonate pathway in the development and survival of mouse Purkinje cells in culture. Molecular Neurobiology. 51: 1116-29
Dason JS, Charlton MP. (2014) A novel extraction protocol to probe the role of cholesterol in synaptic vesicle recycling. Methods in Molecular Biology (Clifton, N.J.). 1174: 361-73
Prashad RC, Charlton MP. (2014) SNARE zippering and synaptic strength. Plos One. 9: e95130
Dason JS, Smith AJ, Marin L, et al. (2014) Cholesterol and F-actin are required for clustering of recycling synaptic vesicle proteins in the presynaptic plasma membrane. The Journal of Physiology. 592: 621-33
Silverman-Gavrila LB, Praver M, Mykles DL, et al. (2013) Calcium, calpain, and calcineurin in low-frequency depression of transmitter release. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 1975-90
Silverman-Gavrila LB, Senzel AG, Charlton MP, et al. (2011) Expression, phosphorylation, and glycosylation of CNS proteins in aversive operant conditioning associated memory in Lymnaea stagnalis. Neuroscience. 186: 94-109
Silverman-Gavrila R, Silverman-Gavrila L, Hou G, et al. (2011) Rear polarization of the microtubule-organizing center in neointimal smooth muscle cells depends on PKCα, ARPC5, and RHAMM American Journal of Pathology. 178: 895-910
Dason JS, Smith AJ, Marin L, et al. (2010) Vesicular sterols are essential for synaptic vesicle cycling. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 15856-65
Smith AJ, Sugita S, Charlton MP. (2010) Cholesterol-dependent kinase activity regulates transmitter release from cerebellar synapses. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 6116-21
Knight D, Harvey PJ, Iliadi KG, et al. (2010) Equilibrative nucleoside transporter 2 regulates associative learning and synaptic function in Drosophila. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 5047-57
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