Giselle Cheung

Affiliations: 
Physiology University of Edinburgh, Edinburgh, Scotland, United Kingdom 
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"Giselle Cheung"
Mean distance: 18.56 (cluster 31)
 
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Publications

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Cheung G, Cousin MA. (2019) Synaptic vesicle generation from activity-dependent bulk endosomes requires a dephosphorylation-dependent dynamin-syndapin interaction. Journal of Neurochemistry
Ghézali G, Vasile F, Curry N, et al. (2019) Neuronal Activity Drives Astroglial Connexin 30 in Perisynaptic Processes and Shapes Its Functions. Cerebral Cortex (New York, N.Y. : 1991)
Cheung G, Sibille J, Zapata J, et al. (2015) Activity-Dependent Plasticity of Astroglial Potassium and Glutamate Clearance. Neural Plasticity. 2015: 109106
Cheung G, Cousin MA. (2013) Synaptic vesicle generation from activity-dependent bulk endosomes requires calcium and calcineurin. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 3370-9
Cheung G, Cousin MA. (2012) Adaptor protein complexes 1 and 3 are essential for generation of synaptic vesicles from activity-dependent bulk endosomes. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 6014-23
Cheung G, Cousin MA. (2011) Quantitative analysis of synaptic vesicle pool replenishment in cultured cerebellar granule neurons using FM dyes. Journal of Visualized Experiments : Jove
Kronenberg G, Gertz K, Cheung G, et al. (2010) Modulation of fate determinants Olig2 and Pax6 in resident glia evokes spiking neuroblasts in a model of mild brain ischemia. Stroke; a Journal of Cerebral Circulation. 41: 2944-9
Cheung G, Jupp OJ, Cousin MA. (2010) Activity-dependent bulk endocytosis and clathrin-dependent endocytosis replenish specific synaptic vesicle pools in central nerve terminals. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 30: 8151-61
Clayton EL, Sue N, Smillie KJ, et al. (2010) Dynamin I phosphorylation by GSK3 controls activity-dependent bulk endocytosis of synaptic vesicles. Nature Neuroscience. 13: 845-51
Färber K, Cheung G, Mitchell D, et al. (2009) C1q, the recognition subcomponent of the classical pathway of complement, drives microglial activation. Journal of Neuroscience Research. 87: 644-52
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