Neil Magoski, Ph.D.

Affiliations: 
Physiology Queen's University, Kingston, ON, Canada 
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"Neil Magoski"
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Publications

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Chauhan-Puri AK, Lee KH, Magoski NS. (2021) Hydrogen peroxide and phosphoinositide metabolites synergistically regulate a cation current to influence neuroendocrine cell bursting. The Journal of Physiology. 599: 5281-5300
Chauhan AK, Magoski NS. (2019) Hydrogen peroxide gates a voltage-dependent cation current in neuroendocrine cells. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Sturgeon RM, Magoski NS. (2018) A closely-associated phospholipase C regulates cation channel function through phosphoinositide hydrolysis. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Sturgeon RM, Magoski NS. (2018) A closely-associated phospholipase C regulates cation channel function through phosphoinositide hydrolysis. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Beekharry CC, Gu Y, Magoski NS. (2018) Protein kinase C enhances electrical synaptic transmission by acting on junctional and postsynaptic Cacurrents. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
White SH, Sturgeon RM, Gu Y, et al. (2018) Tyrosine phosphorylation determines afterdischarge initiation by regulating an ionotropic cholinergic receptor. Neuroscience
Sturgeon RM, Magoski NS. (2016) Diacylglycerol-mediated regulation of Aplysia bag cell neuron excitability requires protein kinase C. The Journal of Physiology
White SH, Sturgeon RM, Magoski NS. (2016) Nicotine inhibits potassium currents in Aplysia bag cell neurons. Journal of Neurophysiology. jn.00816.2015
Groten CJ, Rebane JT, Hodgson HM, et al. (2016) Ca2+ removal by the plasma membrane Ca2+-ATPase influences the contribution of mitochondria to activity-dependent Ca2+ dynamics in Aplysia neuroendocrine cells. Journal of Neurophysiology. jn.00494.2015
Groten CJ, Magoski NS. (2015) PKC enhances the capacity for secretion by rapidly recruiting covert voltage-gated Ca2+ channels to the membrane. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 2747-65
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